Wednesday, August 10, 2011
2010 Nobel Prize in Physics-Graphene
Graphene is an allotrope of carbon, whose structure is one-atom-thick planar sheets of sp2-bonded carbon atoms that are densely packed in a honeycomb crystal lattice. The term graphene was coined as a combination of graphite and the suffix -ene by Hanns-Peter Boehm, who described single-layer carbon foils in 1962. Graphene is most easily visualized as an atomic-scale chicken wire made of carbon atoms and their bonds. The crystalline or "flake" form of graphite consists of many graphene sheets stacked together.
The carbon-carbon bond length in graphene is about 0.142 nanometers. Graphene sheets stack to form graphite with an interplanar spacing of 0.335 nm, which means that a stack of three million sheets would be only one millimeter thick. Graphene is the basic structural element of some carbon allotropes including graphite, charcoal, carbon nanotubes and fullerenes. It can also be considered as an indefinitely large aromatic molecule, the limiting case of the family of flat polycyclic aromatic hydrocarbons.
The Nobel Prize in Physics for 2010 was awarded to Andre Geim and Konstantin Novoselov "for groundbreaking experiments regarding the two-dimensional material graphene"
Wednesday, August 03, 2011
Right to Service Act to be extended to Universities.
This year’s Independence Day, is an auspicious occasion not because it is the usual August 15 but it is the day for states like Punjab, Bihar, Kerala etc to implement the Right to Service Act. With this Act government officials who do not perform the common man’s jobs within a stipulated timeframe will face a fine that can go up to Rs.5000. With the implementation of the Right to Service Act, people will no longer have to run around government offices to get their work done, it is learnt. The officials who do not do common the man’s work within a stipulated timeframe should be punished.
This move to hasten the delivery of services should not be restricted only in government offices but to be extended to corporations, boards, colleges and universities etc where salary is paid from government coffers. For instance, I have to point out that in establishments like Mahatma Gandhi University, Kottayam, it takes a year or more for approving the posts of assistant professors duly recruited by statutory boards constituted by affiliated colleges for the purpose. The candidate and his/her parents have to run pillar to post to get the post approved by the University Syndicate. The Syndicate is often ruled by some academics with political sponsorship and those privileged ones with political backing get their jobs done by the Syndicate immediately. And those with no political support have to go finally to judicial forums for get the job done. The cases lost by the University and now pending in the High Court are indications of the callous act of the University Syndicate. There is none to pin down the corrupt officials and one hopes that the Right to Service Act possesses adequate teeth to contain the corrupt. And in that case amount of fine should be enhanced from Rs 5000 along with sending the corrupt officials to prison.
I hope the Right to Service Act would be a big relief to people who run from pillar to post and are forced to pay bribes to get their work done in government offices.
K A Solaman
Thursday, July 28, 2011
Sunday, July 24, 2011
How To Be the Best Teacher
Teaching may sound like an easy task but it is as daunting as any job. Having taught for several years, I have tried a bit of everything of how it is to be a teacher.
There are different strokes for different folks. That is true. For the many students and their levels that I have taught, I found special kids to be the most challenging of all. However, each student is different. There are even talented kids who could be more difficult. Coming from different backgrounds, and culture, a child’s personality is formed into something unique and complex. It is a great challenge for the teachers then to uncover the child’s strengths provided by these circumstances.
So, how do we become the best teacher there is? No, this is not a popularity contest. This is about performing on the job and giving justice to your profession. As we struggle to trudge along that path, we find ourselves building guide posts so that the next time we stumble into a crossroad so similar, we know which road to take. By building these posts, we do not aim to be recognized, but simply to satisfy ourselves. Seeing our products – our students – excel and succeed or simply hand over a comment of thanks is more than enough satisfaction for us.
This is an article devoted to teachers like me – beginners and pros alike – who are on their way to self-discovery, to greatness and to understanding the real essence of being who we are today.
The following points would be guide posts I have stood in my seven years of teaching. These posts remind me to become the teacher I wished I had once upon a time.
1) Make your class rules and goals clear.
Do this at the beginning of the year. By pointing out which you expect them to do and not do, you run into less trouble of encountering these situations in the future. My class rules, however, are not so strict. These include a U-shape seating arrangement where I can see everyone, and a 'talk to me' policy once a week; I need to hear a student talk in the form of recitation or question. It is also a must that students talk to me in Malayalam since that is what I teach. Right before the major exams are conducted, I also ask students which lessons they are confident about. I tally the majority and set up free classes at the end of the week where anybody who feels they need to hear it one more time can attend.
2) Understand what you are teaching.
Teaching is not just going in front and mimicking the book. My first rule is to never teach what I do not know or understand, or I will be in danger of misinforming my students. You also avoid running into risks like answering questions you are not sure how to reply to. I also try to explain concepts in my own words and let students do the same. Also, it is easier to check if they understand the lesson or not.
3) Get savvy with the Internet.
If you are not, now is the time! A modern teacher should be knowledgeable about using computers and the Internet. You are missing out on a lot of information that could help you improve your teaching if you are not. I get most of my articles from the web. I get interactive activities from various sites to implement in my classes, which they enjoy very much.
4) Listen to students when they talk.
Be it a complaint, an answer to a recitation, an impolite question about the subject topic or something not related to the subject matter, just listen! These are ways that students communicate with you and an opportunity to find out more about them. I never tell a student that he/she’s got the wrong answer. And I never get irritated when they say they don’t understand my lesson. I see all of these as a room for improvement for both of us. Students also seem more open to you when you do this. If a student and a teacher have a comfortable relationship, more learning takes place.
5) Do not insult students.
I had been insulted by my teachers many times when I was in school and all of these instances have never helped me become a better individual. Instead, I developed a fear of humiliation. I had good use of this experience though -- I never try insulting students. A quick, sharp look is so much better than discriminating words. You would be amazed how a smile could even obligate children to focus. These and other strategies which are not demeaning are good ways to demand discipline. Also, you are not held responsible for instilling a low self-esteem in them. Reverse psychology works best especially with problem kids. You should try it. It worked well for me!
6)Evaluate your class’ strengths and weaknesses.
Assess your class by their performance and determine the gray areas that you need to tap into once in a while. My students are particularly having a difficult time in grammar and once a week, I make sure I have tiny, short lessons meant for it. A whole straight week of grammar could be boring. So, I try to stretch it into pieces. I make interactive activities to help them absorb it. There are many helpful materials online that you can use. You just need to find them.
7) Make great tests.
To define a test in my manner of understanding would be difficult. It would probably take another How To article to discuss it fully. But to characterize a great test would be easy! It should not only prompt students to recall details such as names, dates and processes, but also it should move them to discriminate possible answers. This exercises their ability to analyze.
While some would say that giving an essay question is being lazy, if the question is carefully concocted, it would actually be a good occasion for the student to organize his thoughts and write! As a teacher, I am often unpredictable. I give objective tests and essays. In so doing, I have seen how my students improved in their writing and way of thinking. I am also fond of injecting recitation into my strategies. Students fear it at first, but as time goes by, they have learnt to deal with this fear and turn it into something constructive. Later, I see more hands raised up in the air when I throw them a question, and even more guts to ask me questions when I am discussing.
Also, never duplicate exams. This happens mostly when a teacher is teaching the same subject to several sections. By doing this, we are encouraging our students to cheat!
8) Recognize talents and efforts.
It is very easy to recognize talents of children who are gifted. Also, the school gives them honors for being smart every end of each semester. But the real hard work and what we as teachers must be concerned about is to really recognize talents in problem kids. My strategy is to always notice troublesome kids. I believe that smart students would perform anyway even if you leave them alone. So, I put much effort into children needing my attention. You would be surprised at how much talent and skills they have. And provided they are recognized, they will start to listen to you more.
Recognition could be in the form of talking with them once in awhile.
I talk to these kids everyday. I give them roles and leadership obligations once in awhile and I do not take no for answer! I always see them trying, hoping not to disappoint me. I make sure that I communicate to them the trust I have for them and that they can do what I am passing on to them. Mind you, I have seen several kids improve on this strategy alone. And when tasks are done, I give benefits when they deserve it.
9) Take careful note of students' progress and let them know about it.
Before I return a major exam’s test papers, I always jot something below addressed to the student. It’s like “Dear Pete, you did wonderfully in Test 1. I knew you could do it! But maybe you should study more so you could answer essay questions better! Maybe, just listen more to me during class because that’s where you find most of the answers!” My children become very excited when I give them back the test papers. They know I would always have my ‘love note’ for them. Yes, it takes more time that it should, but the results are worth it!
10) Talk with parents.
For sure, a teacher cannot successfully teach a child without a parent’s cooperation. It is therefore important to establish a good relationship with your student’s parents. You could do so in PTA meetings. Or simply give them a call if their child performs well in school and not just because they misbehaved. I have come to learn this very important aspect of teaching children when I started to teach special kids. These children develop knowledge by routine and experience. A child only spends a few hours in school, thus, without a parent’s help, the kids will never learn.
- K A Solaman
Dr K S Sibi Ph D
Dr K S Sibi. He has been awarded Ph D in Physics by the University of Kerala in May 2011. Dr Sibi was a Senior Research Fellow in the Department of Electron Microscopy, NIIST(CSIR), Thiruvananthapuram. Presently he is working as Assistant Professor, Govt College of Engineering,Thiruvananthapuram
Best teacher -National Award 2011 Winner- Smt M Vijayamma
Best teacher -National Award 2011 Winner- Smt M Vijayamma, with Sri M A Baby, former Minister of Education, Kerala. Smt Vijayamma is presently working as HM, Govt School, Konattussery, Cherthala, Alappuzha Dt.
Friday, July 22, 2011
മഹാത്മാ ഗാന്ധി സര്വകലശാല വക ജനിക്കും മുമ്പേ ജാതകം
No Ac1/S/4711/Faculty/2005, M G University notification, Dated 9-2-2010
Amendment to the Mahatma Gandhi University Statutes, 1997
ഇത് കോട്ടയം മഹാത്മാ ഗാന്ധി സര്വകലശാലയുടെ ഒരു ഉത്തരവ് . ഇത് പ്രകാരം സര്വകലശാലയുടെ കീഴില് അഫീലിയറ്റു ചെയ്തിട്ടുള്ള ഐടെഡ് കോളേജുകളില് അധ്യാപക നിയമനത്തിന് മിനിമം പ്രായം 23. സര്ക്കാരു കണക്കില് 22 മതി. 9-2 -2010 -ല് ഇറക്കിയ ഉത്തരവിന് 1 -1 -2006 മുതല് മുന്കാല പ്രാബല്യവും ഉണ്ട്.
കുട്ടി ജനിക്കും മുമ്പേ ജാതകം എങ്ങനെ എഴുതാമെന്നു ഈ അമേണ്ട്മെന്റ്റ് നമുക്ക് കാട്ടിത്തരുന്നു.
ജുഡീഷ്യല് റീവ്യൂവില് നിലനില്ക്കുന്നതല്ല ഈ ഓര്ഡര് എന്ന് ഹയെര് എജുക്കേഷന് സെക്രട്ടറി ഉത്തരവ് നല്കിയിട്ടുപോലും നിയമനം കിട്ടിയ ആള് കോടതിയില് പോട്ടെ എന്നാ നിലപാടിലാണ് സര്വകലശാല.
- കെ എ സോളമന്
Wednesday, July 13, 2011
Redefining hydrogen bond-The Unique bond
What’s in a bond? Everything, if it’s the amazing hydrogen bond which raises water’s boiling point high enough for a cuppa or binds the DNA into a double helix. Interestingly, the bond has been redefined and a new explanation of why hydrogen atoms build or break bridges with other atoms that has been arrived at could open up new avenues in production of drugs and fabrication of material among other things. Researchers are also looking forward to many more spin-offs with advances in this technology.
The changed definition of the hydrogen bond stems from research and analysis carried out by a team led by Prof Elangannan Arunan of the Department of Inorganic and Physical Chemistry, Indian Institute of Science and has been accepted by the International Union of Pure and Applied Chemistry (IUPAC). It will soon make its way into the Gold Book, the encyclopaedia of chemical nomenclature.
The Indian team's path breaking acheivement, which coincides with the International Year of Chemistry being observed by the United Nations General Assembly and the centenary of Marie Curie winning the Nobel prize for Chemistry in 1911, signals an end to the controversy over hydrogen bonding which was debated for decades after it was spelt out by Nobel laureate Linus Pauling in 1931. A number of previous efforts by task forces across the world were rejected because they either lacked experimental evidence or could not answer questions raised by the community of chemistists. “I had to pour over several research papers and scores of records on earlier definitions to be able to answer this controversial question. But at this point, it’s difficult to predict the upshot of our definition,” says Prof Arunan.
The breakthrough came at the end of five years of research which included building a microwave spectrometer to decipher why hydrogen builds bridges with other atoms or breaks them. “When we started our work, some were pessimistic that we would not be able to give a new definition because we had to refer to a 100 year-old history and scores of papers on the hydrogen bond,” recalls the professsor. Previously, the definition suggested that hydrogen bonds were ‘electrostatic interactions’ and that the hydrogen atoms bore a slightly positive charge that was attracted by a slightly negatively-charged bonding partner. The new definition, however, allows for an element of covalent bonding, where electrons are formally shared between the atoms.
Deccan Chronicle Dated July 13, 2011
Thursday, July 07, 2011
മഹാത്മാഗാന്ധി സര്വകലാശാല ചുവപ്പുനാടയുടെ പിടിയില് !
കോട്ടയത്തെ മഹാത്മാഗാന്ധി സര്വകലാശാല ചുവപ്പു നാടയുടെ കലശലായ പിടുത്തത്തില് ആണെന്ന് കരുതണം. വിദേശത്ത് എഞ്ചിനീയറിംഗ് കോളേജ് സ്ഥാപിക്കാനുള്ള തത്രപ്പാടില് ഇവിടെ കാര്യങ്ങള് അല്പം മന്ദഗതിയിലാണ്. ഇങ്ങനെ പറയാനുള്ള കാരണം, ഈ സര്വകാല ശാലയുടെ കീഴിലുള്ള അഫിലീഎട്ടെദ് കോളേ ജുകളില് നടത്തിയ നിയമനങ്ങള് ഒന്നും തന്നെ സര്വകലാശാല അങ്ഗികരിച്ചു കൊടുക്കുന്നില്ല. " ലക്ഷങ്ങള് കൊടുത്തല്ലേ കേറുന്നത് പിന്നെ ഒന്നോ രണ്ടോ ലക്ഷങ്ങള് ഞങ്ങള്ക്ക് കൂടി തന്നലെന്ത്? '' , എന്നൊക്കെ ഉദ്യോഗസ്ഥര് ചോദിച്ചതായി തെളിയിക്കാന് ഇമ്മിണി പ്രയാസമുണ്ട്.
ഏറണാകുളം സെന്റ് തെരേസാസ് കോളേജില് കഴിഞ്ഞ സെപ്റെമ്ബറില് നടത്തിയ നിയമനങ്ങള് ഇതുവരെ അങ്ഗീകരിച്ചു കൊടുത്തില്ല. എനിക്ക് എത്രയും പ്രിയപ്പെട്ട ഒരു കുട്ടിയുടെ നിയമനം തടഞ്ഞു വെക്കാന് സര്വകലാശാല കണ്ടു പിടിച്ച കാരണം കുട്ടിക്ക് പ്രായപൂര്ത്തി ആയില്ലെന്നതാണ്. പ്രായപൂര്ത്തി ആകാത്ത പെണ്കുട്ടികളുടെ കാര്യത്തില് ചാനലുകള്ക്കും, നാട്ടു കാര്ക്കും സര്ക്കാരിനും ഉള്ള ഉത്കന്ഠ സര്വകലാശാലയെയും പിടി കൂടിയിരിക്കുന്നു!
സര്വകലാശാല നിയമം പ്രകാരം അസിസ്റ്റന്റ് പ്രൊഫസര് ആയി നിയമനം ലഭിക്കാന് 18 വയസ്സ് മതി. 2009 -ല് നിയമനം ലഭിച്ചപ്പോള് കുട്ടിക്ക് 22 കഴിഞ്ഞിരുന്നു, പക്ഷെ 23 ആയിരുന്നില്ല. 2010 - ല് സര്വകലാശാലക്ക് ഒരു നിയമ ഭേദഗതി ഉണ്ടത്രേ, മിനിമം പ്രായം വേണ്ടത് 23 എന്ന് . സര്ക്കാര് കോളേജുകളില് മിനിമം വയസ്സ് 22 മതി എന്ന് നിര്കര്ഷിക്കുംപോളാണ് സര്വകലാശാല 23 വയസ്സ് വേണമെന്ന ന്യായം പറഞ്ഞു അന്ഗീകാരത്തിനുള്ള അപേക്ഷ നിരസിച്ചത്. മാത്രവുമല്ല , നിയമനുസരണമായി 2009 -ല് നിയമനം നടത്തിയ മാനേജ്മന്റ് 2010 -ല് സര്വകലാശാല വക ഇറങ്ങാനിരിക്കുന്ന ഉത്തരവിനെ കുറിച്ച് എന്ത് കൊണ്ട് ആലോചിച്ചില്ല എന്നാ വാദവും നിരത്തുന്നു. നിയമനം നടത്തുന്ന മാനേജുമെന്റും നിയമനം തേടുന്ന ഉദ്യോഗാര്ഥി കളുംആദ്യം കാണേണ്ടത് ജോത്സ്യന് മാരെയാണ് - സര്വകലാശാലയിലെ ചില ഉദ്യോഗസ്ഥര് കരുതുന്നു .
ഡിഗ്രിയും പോസ്റ്റ് ഗ്രാജുഎഷനും ഒന്നാം റാങ്കോടെ പാസ്സയിടുള്ള കുട്ടി സി എസ് ഐ ആര് ഫെല്ലോഷിപ്പോട് കൂടിയുള്ള ഒരു വര്ഷത്തെ ഗവേഷണ പരിചയവും ഉപേക്ഷിച്ചാണ് കോളേജില് ചേര്ന്നത്. കോളജധ്യപികയുടെ ജോലി ലഭിച്ചതിനാല് സ്റ്റേറ്റ് ബാങ്ക് ഓഫ് ഇന്ത്യയില് ലഭിച്ച അസിസ്റ്റന്റ് മാനേജര് ജോലിയും ഉപേക്ഷിച്ചു .ഗേറ്റ് പരീക്ഷയില് ഉണ്ടായിരുന്ന ഉയര്ന്ന സ്കോറും പ്രയോജനപ്പെടുത്താന് കഴിഞ്ഞില്ല. ഇപ്പോള് കുട്ടി കണ്ണീരിലാണ്. പെണ്കുട്ടികുളുടെ കണ്ണീര് ഒരു തുള്ളി പോലുംവീഴാന് യാതൊരു കാരണവശാലും അനുവദിച്ചു കൂടെന്നു പത്രത്തില് വരി എഴുതുന്ന വൈസ് ചന്സേല്ലര്ക്ക് കുട്ടിയും പിതാവും അപേക്ഷകള് അയച്ചിട്ടും പ്രയോജനമുണ്ടായില്ല.
അതിവേഗം തീര്പ്പാക്കാന് ബെഹു. മുഖ്യമന്ത്രിക്ക് കുട്ടിയുടെ പിതാവ് അയച്ച ഈ-മെയില് അപേക്ഷ വൈറസ് ആക്രമണത്തില് നഷ്ടപ്പെട്ട മട്ടാണ്. എങ്കിലും അതിവേഗം ബഹുദൂരം എന്ന് വിശ്വസിക്കുന്ന മുഖ്യമന്ത്രിയും വിദ്യാഭ്യാസ മന്ത്രിയും മഹാത്മാ ഗാന്ധി സര്വകലാശാല യിലെ കാര്യങ്ങള് കൂടി അല്പം വേഗത്തില് ആക്കാന് നിര്ദേശിക്കണം . പ്രൈവറ്റ് കോളേജുകളിലെ അധ്യാപക നിയമനങ്ങള് സമയബന്ധിതമായി അംഗീകരിച്ചു കൊടുക്കാന് നടപടി സ്വീകരിക്കണം. . അധ്യാപക നിയമന പ്രായപരിധിക്കു സര്ക്കാരിന് ഒരു നിയമം , സര്ക്കാരിന്റെ തന്നെ ശമ്പളം നല്കുന്ന പ്രൈവറ്റ് കോളേജുകള്ക്ക് വേറൊരു നിയമം -ഇതെങ്ങിനെ അംഗീകരിക്കാന് കഴിയും ? പ്രായ പരിധിക്കു മുന്കാല പ്രബല്ല്യം എന്ന തുഗ്ളക്ക് നിയമത്തിന്റെ ഉറവിടവും അന്യോഷിക്കപെടണം
-കെ എ സോളമന്
Sunday, June 26, 2011
Saturday, June 25, 2011
Friday, June 24, 2011
A white paper needed for private college recruitment.
The Minister of Finance for Kerala K M Mani when he has to say about the publication of a white paper on the state of the finances of the State, I was seeking the meaning of this paper. Now only I understood that it is a report that helps to solve a problem. White papers are used to inform readers and help people make decisions and are often requested and used in the technical and political sectors.
So is the case, I request the Government to publish a white paper on recruitment of assistant professors in all Aided colleges in Kerala, where the salary is paid from the State Exchequer. I place this before the authority because the management of the NSS College invited fresh applications from candidates for the appointment in colleges under it. Previous notification to this effect was only nine months earlier and the number of candidates that they have appointed is a puzzle. Unlike other management who collect Rs 500 or 700 as application money the NSS collect a nominal fee, Rs 235 per application which is quite affordable as it is equal to the cost of only kg a star fish. Nevertheless, the most intriguing question is no candidate of other beliefs is named in NSS College, even if the money from candidates of other castes is acceptable.
The experience of the candidate who went for the interview at Perunna has an interesting story to tell. He told me that when he submitted his certificate at the desk person handling it he said “Why do you waste money by sending such applications? Appointments, like other private managements, whether Inter Church and SN Trust, are done for a price and here it is reserved for only those names ending with a tail ‘nair, pillai, menon, kurup, panicker etc,.” “ But Sir, my marks, Ranks!” the candidate asked. “ Who need them?. Yes, you came all the way from your place to here. Take the coffee and attend the interview. The world never ends in Perunna. There are a good number of colleges and a few of them are not money mongers. Best wishes”.
The candidates, their parents and the vast populace are, therefore, eager to know what is happening in these colleges. Would the government ask these Managements to publish a white paper stating the names with caste of the candidates appointed in these colleges? Of course the money they collected is a business secret, nevertheless, if they publish the actual names of the candidates, the new aspirants could take a judicious decision about where to apply and when. Could a management, as a fund collection campaign, often issue notifications for appointment without making any appointment ? I hope a white paper in this direction would tell all the details.
K A Solaman
Monday, June 20, 2011
Red tape biting in M G University, Kottayam
The Mahatma Gandhi University has erected bureaucratic hurdles against certain affiliated colleges by denying the approval for the post of teachers appointed in colleges under it. For instance, the approval all teachers appointed in St Teresa’s College, Ernakulam in last September is still under red tape in MGU. Is there any time limit for disposing a file in MG University?
The reason for denying approval of the post one candidate is obviously curious that according to University she is under aged. At the time of appointment, her age was below 23 (of course above 22) and as per University statutes the minimum age required is 18. The University denied the approval stating that the College which made appointment in 2009, has not complied with University statute amendment in 2010. How could an affiliated college or any other appointing authority make appointment anticipating the contents of future orders of the university? The University order issued in 2010 stipulates minimum age limit for appointment in affiliated colleges as 23 and the order has retrospective effect from 2006 according to University. This inquisitive order was issued by the University when the Government stipulates minimum age as 22 for appointment in Government colleges.
The action of the University has been a most frustrating experience for the candidate as she joined the college after giving up her CSIR fellowship and one year research work. The University modifying the requirements for approval of the post of teachers with an order that originated quite later is questionable and it would not stand before judicial review.
If our Universities are centres of discontent and red-tapism MGU is another one. This leads to academic excellence falling prey to fake administrative norms. And this sort of negative attitude will only discourage young intelligent individuals not to choose the post of teachers in affiliated colleges. I wonder why the MG University has made an unfounded order about minimum age of appointment with retrospective effect. The ludicrous amendment instituted by the MGU has created unnecessary pressure on a gifted girl, with first ranks in degree and PG and also with JRF and Gate score.
K A Solaman
Wednesday, June 15, 2011
Scientists Create 'Living Laser'
Scientists have been genetically engineering organisms that glow for years, but now a team at Massachusetts General has taken the technology to a new level—to create a "living laser." They aren't blasting death rays (yet), but scientists have coaxed single cells, derived from human kidneys, to emit directed green laser light, reports the BBC. Far more than just scientists playing Dr. Frankenstein, this technology holds several real-world possibilities, especially in light-based and imaging therapies, perhaps opening the way to deeper and less intrusive diagnostic and medical techniques.
The cells were given green fluorescent protein first found in jellyfish to create the light source, then were placed between two tiny mirrors, just 20 millionths of a meter apart, to bounce the light repeatedly. When the cells were then bathed with a blue light, they could emit directed and intense laser light. The process did not kill the cells, and, in fact, if the light-generating protein is injured, the cell can produce more
Wednesday, June 08, 2011
Cell phone signals create cancer --WHO
Though the World Health Organization officials are of judgment that mobile phones are a cause for health hazards ranging from vomiting to cancer the Indian counter parts are not convinced with it. They would present their paper only after a thorough study and when would they complete the study is known to none. Cell phone is a convenient gadget which makes life easy and (sometimes miserable too) nevertheless latest research in this direction are not at all favourable. The harmful radiation of microwave frequency or less might cause cancer in the brain. Why can’t one bear in mind the heating property of microwave oven where food stuffs are cooked by passing microwave through water soaked food material? The region around one’s ear contains blood and the microwave from a cell phone in fact cooks the flesh round one’s ear. In addition these electromagnetic radiations create cancerous cells in the brain.
The mobile phone companies by their lavish spending in channels and news papers keep media promoters friendly. And that is why studies adversely affecting the sale of mobile phones are not seeing light. However, in the wake of UN study the mobile users have to make an introspection and restrict the use of mobile phones for their own health. What is the use a cell phone once the brain cells are tampered? It is unwise to depend on mobile phone manufacturers for remedy as they are never going to provide any solution for the radiation hazard.
It is not for the first time warning about radiation hazard is being published. However, this sort of warning took a dimension only now with WHO findings. If people are unwilling to give up their bad habit of extensive use of cell phones, they should alone bear the brunt.
K A Solaman
Wednesday, June 01, 2011
Heaven, afterlife are beyond human mind-K A Solaman
Stephen Hawking believes there is no heaven (No afterlife, no heaven: Stephen Hawking, May 17). The Cambridge-based scientist said that the belief in heaven or an afterlife is a “fairy story” for people who are afraid of death. Being a scientist, it is natural for Mr Hawking to look at everything from a scientific perspective. But death and afterlife are abstract ideas and are beyond the ability of the human mind to fully comprehend. The renowned astrophysicist’s observation is unlikely to affect the prospects of clergies and swamis who live by preaching about life after death and heaven.
K.A. Solaman
Kerala
The Asian Age daily, London 31 May 2011
K.A. Solaman
Kerala
The Asian Age daily, London 31 May 2011
Saturday, May 28, 2011
Statistical Mechanics and Thermodynamics
Question Paper 2011 June Batch
Statistical Mechanics and Thermodynamics
The question paper contain 3 parts
Part A contains 20 questions. Answer any 15 questions (Each question carries 2 marks)
Part B contain 20 questions and all are compulsory (Each question carries 3.5 marks)
Part C contains 25 questions. First 10 are compulsory and from remaining 15, answer any 10 questions (Each question carries 5 marks)
There will be negative marks @ 25% of each wrong answer.
Time : 3hrs
Marks: 200
PART A
For polyatomic gases such as hydrogen the corresponding Phase Space would be ------- dimensional.
3N
3Nf
2Nf
6N
On a (T -S)) diagram, i.e., temperature (T) entropy (S), the isothermals are ---
Parallel to S axis
Parallel to T axis
May have any orientation
Some parallel to T and some parallel to S axis
In a gas the expression for the average speed of the molecule is given by----
√(2kT/m)
√(3kT/m)
√(8kT/πm)
√(kT/m)
Specific heats of a gas at constant volume (Cv) and at constant pressure (Cp) are related as
C_p/C_v =1-R
C_p-C_v=R
C_p-C_v=1/R
C_p+C_v=R
The expression for Maxwell’s distribution of velocities, δn/δc is
4πn (m/2πkT)^(3⁄2) e^(-(mc^2)/2kT) c
4πn (m/2πkT)^(3⁄2) e^(-(mc^2)/2kT) c^2
4πn (m/πkT)^(3⁄2) e^(-(mc^2)/2kT) c^2
4πn (m/2πkT)^(3⁄2) e^(-mc/2kT) c^2
A reversible heat engine can have 100% efficiency if the temperature of sink is-
Less than that of source
Equal to that of source
0oC
O K
In a gas the relative magnitudes of the most probable speed (v_p), the average speed (v ̅)and the root mean square speed(〖 v〗_rms) of the molecule are related by an expression
√2:√(2/π):√3
√2:√(4/π):√3
√2:√(8/π):√3
√2:√(8/π):√6
The combined form of the first and second law of thermodynamics is given by-
TdS=dU+PdV
dQ=TdS+PdV
dU=TdS+dQ
TdS=dU-PdV
A system has N distinguishable particles. Each particle can occupy one of the two non-degenerate states with an energy difference of 0.1 ev. If the system is in thermal equilibrium at room temperature, the approximate fraction of particles in the higher energy state is
exp (-10)
exp (-4)
exp (-2)
Zero
The work done W during an isothermal process in which the gas expands from an initial volume V1 to a final volume V2 is given by
R(V_2-V_1)〖log〗_e (T_1/T_2)
R(T_2-T_1)〖log〗_e (V_1/V_2)
RT〖log〗_e (V_2/V_1)
RT〖log〗_e (V_1/V_2)
Consider the Fermi-dirac distribution function F(E) at room temperature (300 K) where E refers to energy. If Ef is the Fermi energy, which of the following is false?
F(E) is a step function
F(E_f) has a value of ½
States with E
F(E) is large and tends to infinity as E decreases much below Ef.
The change in entropy is-
Positive in a reversible change
Negative in an irreversible change
Positive in an irreversible change
Negative in a reversible change
In a micro canonical ensemble, a system A of fixed volume is in contact with a large reservoir B. Then
A can change only energy with B
A can change only particles with B
A can exchange neither energy nor particles with B
A can exchange both energy and particles with B
If a system is in thermal equilibrium separately with B &C, then B and C are also in thermal equilibrium with each other. This statement is –
Zeroth law of T D
First law of T D
Second law of T D
Third law of T D
In a canonical ensemble, a system A of fixed volume is in contact with a large reservoir B. Then-
A can change only energy with B
A can change only particles with B
A can exchange neither energy nor particles with B
A can exchange both energy and particles with B
In a cyclic process-
Work done is zero
Work done by the system is equal to quantity of heat given to the system
Work done does not depend on the quantity of heat given to the system
The internal energy of the system increases
In a grand canonical ensemble, a system A of fixed volume is in contact with a large reservoir B. then-
A can change only energy with B
A can change only particles with B
A can exchange neither energy nor particles with B
A can exchange both energy and particles with B
The ratio of specific heat of a diatomic gas is-
1.66
1.33
1.40
1.52
In case of Bose- Einstein Condensation-
Number of particles increases in lower energy levels at low temperatures and high pressures
Number of particles decreases in lower energy levels at low temperatures and high pressures
Number of particles increases in lower energy levels at high temperatures and low pressures
Number of particles decreases in lower energy levels at high temperatures and low pressures
Which of the following is not Maxwell’s thermodynamic relation?
(∂S/∂V)_T=(∂P/∂T)_V
(∂S/∂P)_T=〖-(∂V/∂T)〗_P
Statistical Mechanics and Thermodynamics
The question paper contain 3 parts
Part A contains 20 questions. Answer any 15 questions (Each question carries 2 marks)
Part B contain 20 questions and all are compulsory (Each question carries 3.5 marks)
Part C contains 25 questions. First 10 are compulsory and from remaining 15, answer any 10 questions (Each question carries 5 marks)
There will be negative marks @ 25% of each wrong answer.
Time : 3hrs
Marks: 200
PART A
For polyatomic gases such as hydrogen the corresponding Phase Space would be ------- dimensional.
3N
3Nf
2Nf
6N
On a (T -S)) diagram, i.e., temperature (T) entropy (S), the isothermals are ---
Parallel to S axis
Parallel to T axis
May have any orientation
Some parallel to T and some parallel to S axis
In a gas the expression for the average speed of the molecule is given by----
√(2kT/m)
√(3kT/m)
√(8kT/πm)
√(kT/m)
Specific heats of a gas at constant volume (Cv) and at constant pressure (Cp) are related as
C_p/C_v =1-R
C_p-C_v=R
C_p-C_v=1/R
C_p+C_v=R
The expression for Maxwell’s distribution of velocities, δn/δc is
4πn (m/2πkT)^(3⁄2) e^(-(mc^2)/2kT) c
4πn (m/2πkT)^(3⁄2) e^(-(mc^2)/2kT) c^2
4πn (m/πkT)^(3⁄2) e^(-(mc^2)/2kT) c^2
4πn (m/2πkT)^(3⁄2) e^(-mc/2kT) c^2
A reversible heat engine can have 100% efficiency if the temperature of sink is-
Less than that of source
Equal to that of source
0oC
O K
In a gas the relative magnitudes of the most probable speed (v_p), the average speed (v ̅)and the root mean square speed(〖 v〗_rms) of the molecule are related by an expression
√2:√(2/π):√3
√2:√(4/π):√3
√2:√(8/π):√3
√2:√(8/π):√6
The combined form of the first and second law of thermodynamics is given by-
TdS=dU+PdV
dQ=TdS+PdV
dU=TdS+dQ
TdS=dU-PdV
A system has N distinguishable particles. Each particle can occupy one of the two non-degenerate states with an energy difference of 0.1 ev. If the system is in thermal equilibrium at room temperature, the approximate fraction of particles in the higher energy state is
exp (-10)
exp (-4)
exp (-2)
Zero
The work done W during an isothermal process in which the gas expands from an initial volume V1 to a final volume V2 is given by
R(V_2-V_1)〖log〗_e (T_1/T_2)
R(T_2-T_1)〖log〗_e (V_1/V_2)
RT〖log〗_e (V_2/V_1)
RT〖log〗_e (V_1/V_2)
Consider the Fermi-dirac distribution function F(E) at room temperature (300 K) where E refers to energy. If Ef is the Fermi energy, which of the following is false?
F(E) is a step function
F(E_f) has a value of ½
States with E
The change in entropy is-
Positive in a reversible change
Negative in an irreversible change
Positive in an irreversible change
Negative in a reversible change
In a micro canonical ensemble, a system A of fixed volume is in contact with a large reservoir B. Then
A can change only energy with B
A can change only particles with B
A can exchange neither energy nor particles with B
A can exchange both energy and particles with B
If a system is in thermal equilibrium separately with B &C, then B and C are also in thermal equilibrium with each other. This statement is –
Zeroth law of T D
First law of T D
Second law of T D
Third law of T D
In a canonical ensemble, a system A of fixed volume is in contact with a large reservoir B. Then-
A can change only energy with B
A can change only particles with B
A can exchange neither energy nor particles with B
A can exchange both energy and particles with B
In a cyclic process-
Work done is zero
Work done by the system is equal to quantity of heat given to the system
Work done does not depend on the quantity of heat given to the system
The internal energy of the system increases
In a grand canonical ensemble, a system A of fixed volume is in contact with a large reservoir B. then-
A can change only energy with B
A can change only particles with B
A can exchange neither energy nor particles with B
A can exchange both energy and particles with B
The ratio of specific heat of a diatomic gas is-
1.66
1.33
1.40
1.52
In case of Bose- Einstein Condensation-
Number of particles increases in lower energy levels at low temperatures and high pressures
Number of particles decreases in lower energy levels at low temperatures and high pressures
Number of particles increases in lower energy levels at high temperatures and low pressures
Number of particles decreases in lower energy levels at high temperatures and low pressures
Which of the following is not Maxwell’s thermodynamic relation?
(∂S/∂V)_T=(∂P/∂T)_V
(∂S/∂P)_T=〖-(∂V/∂T)〗_P
Wednesday, May 25, 2011
Heat transfer-Objective questions and answers
KAS Physics
Thermal Physics Test number 202
1. Radiation is the chief method of energy transfer
*a. from the sun to an earth satellite b. from a gas flame to water in a teakettle
c. from a soldering iron to metals being soldered. d. from water to an ice cube floating in it e. from a mammal to the surrounding air.
2. of the processes below, the one in which practically all the heat transfer is by conduction is: a. from the sun to an earth satellite b. from a gas flame to the top layer of water in a teakettle. *c. from a soldering iron to metals being soldered d. from the bottom of a glass of water to an ice cube floating in it. e. from a mammal to the surrounding air.
3. two kg of water are heated by stirring, if this raises the temperature of the water from 15˚C to 25˚C, how much work, in joules, was done to the water by the stirring?
a. 20,000 b. 40,000 c. 60,000 *d. 80,000 e. 100,000
4. In a certain steam engine, the average pressure on the piston during a stroke is 50 N/m2. The length of each stroke is 12 cm, the area of the piston is 120 cm2 and the diameter of the flywheel is 5m. the amount of work done on the piston during each stroke is, in N-m, approximatelyy
a. 250 *b.0.072 c. 0.54 d.1.63 e. 12.62
5. the work done by a system is characterized as
*a. Positive b. Negative c. either positive or negative d. indeterminate
e. of no consequence
6. which of the following can actually lower the internal energy (cool) a room?
a. Fan b. refrigerator with door open
c. refrigerator with door closed d. an air conditioner in the middle of the room
*e. an air conditional partially exposed to the outside
7. 30 joules of heat flow into a system. the system in turn does 50 J of work. The internal energy of the system has
a. increased by 80 J b. decreased by 80 J c. increased by 20 J d. decreased by 20 J
*e. remained constant
8. dark, rough objects are generally good for
a. Conduction *b. Radiation c. Convection d. Reflection e. refraction
9. dark plastic handles are often used on kitchen utensils because
a. the black material is a good radiator *b. the plastic is a good insulator
c. The plasticic is a good conductor d. the plastic softens gradually with excessive heat.
e. the material is thermoplastic
Thermal Physics Test number 202
1. Radiation is the chief method of energy transfer
*a. from the sun to an earth satellite b. from a gas flame to water in a teakettle
c. from a soldering iron to metals being soldered. d. from water to an ice cube floating in it e. from a mammal to the surrounding air.
2. of the processes below, the one in which practically all the heat transfer is by conduction is: a. from the sun to an earth satellite b. from a gas flame to the top layer of water in a teakettle. *c. from a soldering iron to metals being soldered d. from the bottom of a glass of water to an ice cube floating in it. e. from a mammal to the surrounding air.
3. two kg of water are heated by stirring, if this raises the temperature of the water from 15˚C to 25˚C, how much work, in joules, was done to the water by the stirring?
a. 20,000 b. 40,000 c. 60,000 *d. 80,000 e. 100,000
4. In a certain steam engine, the average pressure on the piston during a stroke is 50 N/m2. The length of each stroke is 12 cm, the area of the piston is 120 cm2 and the diameter of the flywheel is 5m. the amount of work done on the piston during each stroke is, in N-m, approximatelyy
a. 250 *b.0.072 c. 0.54 d.1.63 e. 12.62
5. the work done by a system is characterized as
*a. Positive b. Negative c. either positive or negative d. indeterminate
e. of no consequence
6. which of the following can actually lower the internal energy (cool) a room?
a. Fan b. refrigerator with door open
c. refrigerator with door closed d. an air conditioner in the middle of the room
*e. an air conditional partially exposed to the outside
7. 30 joules of heat flow into a system. the system in turn does 50 J of work. The internal energy of the system has
a. increased by 80 J b. decreased by 80 J c. increased by 20 J d. decreased by 20 J
*e. remained constant
8. dark, rough objects are generally good for
a. Conduction *b. Radiation c. Convection d. Reflection e. refraction
9. dark plastic handles are often used on kitchen utensils because
a. the black material is a good radiator *b. the plastic is a good insulator
c. The plasticic is a good conductor d. the plastic softens gradually with excessive heat.
e. the material is thermoplastic
Tuesday, May 24, 2011
The Golden Ratio and Beauty in Art
The Golden Ratio has a great impact on art, influencing artists' perspectives of a pleasant art piece. Have you ever wondered why Da Vinci's Mona Lisa looks so beautiful? Da Vinci, a sculpture, painter, inventor and a mathematician, was the first one who first called Phi the Golden Ratio. And scientifically, her face actually appears in a golden rectangle, which also makes her face appear more beautiful to human eyes. Also another masterpiece, the Last Supper, contains Golden Ratios. The French Impressionist painter George Seurat is famous by his new technique of drawing - Pointilism, he is said to have "attacked every canvas by the golden section."
Mona Lisa
Mona Lisa's face is a perfect golden rectangle, according to the ratio of the width of her forehead compared to the length from the top of her head to her chin.
The golden ratio = 1.61803399
Saturday, May 14, 2011
General Science MCQ and A
Here are some general science quiz questions along with answers to increase your general knowledge about science.
General Science Quiz Questions
1. Which instrument is used to measure pressure?
1. Saccharimeter
2. Ammeter
3. Manometer
4. Lactometer
2. What does Angstrom measure?
1. Quantity of liquid
2. Length of light waves
3. Length of cables
4. Speed of ships
3. Light year is related to
1. Energy
2. Speed
3. Distance
4. Intensity
4. Match the following columns
Column 1 Column 2
A. Relative 1. Pyrometer humidity
B. Anemometer 2. High temperature
C. Navigation 3. Hygrometer
D. Direction of wind 4. Chronometer
1 2 3 4
a. B D A C
b. D B A C
c. A D B C
d. C A D B
5. Which of the following instruments is used to measure pressure of gases?
1. Barometer
2. Manometer
3. Ammeter
4. None of these
6. Joule is the unit of
1. Temperature pressure
2. Energy
3. Heat
7. How many Dynes are there in one gram weight?
1. 900
2. 375
3. 981
4. 250
8. How many Ergs are these in 1 Joule?
1. 102
2. 104
3. 106
4. 107
9. The unit of current is
1. Ohm
2. Watt
3. Ampere
4. None of these
10. The unit of energy in MKS system is
1. Volt
2. Erg
3. Ohm
4. Joule
11. The intensity of an earthquake is measured with a
1. Barometer
2. Hydrometer
3. Polygraph
4. Seismograph
12. Centigrade & Fahrenheit scales give same reading at
1. - 40°
2. - 32°
3. - 273°
4. - 100°
13. Match the following columns
Column 1 Column 2
A. Anemometer 1. To measure underwater depth using sound
B. Aneroid barometer 2. To measure very small distances
C. Micrometer 3. Find out wind speed
D. Fathometer 4. Find out direction of wind
5. Measure atmospheric pressure
1 2 3 4
a. A4 B5 C3 D1
b. A3 B5 C2 D1
c. A5 B1 C3 D4
d. A3 B1 C5 D2
14. Who among the following described protoplasm as the physical basis of life?
1. T. H. Huxley
2. Leeuwenhoek
3. Rudolf Virchow
4. J. C. Bose
15. The scientist who first discovered that the earth revolves round the sun was
1. Newton
2. Dalton
3. Copernicus
4. Einstein
16. Alexander Fleming discovered
1. Penicillin
2. X-ray
3. Streptomycin
4. Telephone
17. Who among following invented the steam engine?
1. Marconi
2. James Watt
3. Thomas Savery
4. Wright Brothers
18. Who invented typewriter?
1. Shockley
2. Pascal
3. Sholes
4. Waterman
19. Match the following columns:
Column 1 Column 2
A. Proton 1. Chadwick
B. Neutron 2. Millikan
C. Charged Electron 3. Goldstein
D. Shelled nature of atom 4. Rutherford
5. Madam Curie
a. A1 B2 C3 D5
b. A2 B1 C4 D3
c. A2 B3 C1 D4
d. A4 B2 C3 D1
20. Who discovered circulation of blood in human body?
1. Edward Jenner
2. Joseph Lister
3. William Harvey
4. Jonon Esals
21. The first attempt in printing was made in England by
1. James Arkwright
2. James Watt
3. William Caxton
4. Isaac Newton
22. Who was the surgeon who pioneered antiseptic surgery in 1865?
1. Edward Jenner
2. Joseph Lister
3. Henry William
4. John Sleeman
23. The credit of inventing the television goes to
1. Faraday
2. Baird
3. Edison
4. Marconi
24. The credit of developing the polio vaccine goes to
1. Jonas Salk
2. Alb E. Sabin
3. Selman Waksman
4. None of these
25. Mark the wrong combination
1. James Watt: Steam Engine
2. A.G. Bell: Telephone
3. J. L. Baird: Television
4. J. Perkins: Penicillin
26. Choose the correct combination
1. Typewriter: Remington
2. Dynamite: Dunlop
3. Evolution: Darwin
4. Aeroplane: Harway
27. Who invented the ball point pen?
1. Waterman
2. Oscar
3. Wilson
4. Lazlo Biro
28. Blaze Pascal is associated with
1. Calculating machine
2. Computer
3. Cinema
4. None of these
29. Wright Brothers are regarded inventors of the
1. Balloon
2. Bicycle
3. Aeroplane
4. None of these
30. Which of the following pairs is incorrect?
1. Roentgen: X-ray
2. Newton: Law of gravitation
3. Faraday: Diffusion of gases
4. Pasteur: Bacteriology
31. Philology is the
1. Study of bones
2. Study of muscles
3. Study of architecture
4. Study of languages
32. Anatomy is the branch of science which deals with
1. Structure of animals and plants
2. Functioning of body organs
3. Animal behavior
4. Cells and tissues
33. Study of earthquakes is known as
1. Ecology
2. Seismology
3. Numismatics
4. None of these
34. Ecology deals with
1. Birds
2. Cell formation
3. Relation between Organisms and their environment
4. Tissues
35. Meteorology is the science of
1. Weather
2. Meteors
3. Metals
4. Earthquakes
36. Oncology is the study of
1. Birds
2. Cancer
3. Mammals
4. Soil
37. Study of life in outer space is known as
1. Endobiology
2. Exobiology
3. Enterobiology
4. Neobiology
38. Numismatics is the study of
1. Coins
2. Numbers
3. Stamps
4. Space
39. Eugenics is the study of
1. Altering humans beings by changing their genetic components
2. People of European origin
3. Different races of mankind
4. Genetics of plants
40. Ornithology is the
1. Study of bones
2. Study of birds
3. Study of smells
4. None of these
41. Who invented the Doctor’s thermometer?
1. Fahrenheit
2. Edison
3. Galileo
4. None of these
42. The velocity of light was first measured by
1. Einstein
2. Newton
3. Romer
4. Galileo
43. Who proposed the chemical evolution of life?
1. Darwin
2. Lammarck
3. Oparin
4. Haechel
44. The telephone was invented by
1. John Logie Baird
2. Alexander Graham Bell
3. Thomas Elva Edison
4. James Watt
45. Who among the following evolved the concept of relationship between mass and energy?
1. Einstein
2. Planck
3. Dalton
4. Rutherford
46. Match the following columns:
Column 1 Column 2
A. Radioactivity 1. Planck
B. Periodic Table 2. Thomson
C. Quantum Theory 3. Rutherford
D. X-Rays 4. Mendeleev
5. Roentgen
6. Becquerel
a. A1 B3 C5 D2
b. A6 B5 C3 D5
c. A3 B2 C1 D5
d. A6 B4 C1 D5
47. Match the following columns:
Column 1 Column 2
A. Marconi 1. Radio
B. Darwin 2. Natural selection theory
C. Laennec 3. Orthogenesis theory
D. Baird 4. Stethoscope
5. Television
a. A1 B3 C4 D5
b. A5 B4 C3 D2
c. A1 B2 C4 D5
d. A3 B5 C2 D4
48. Robert Koch worked on
1. Tuberculosis
2. Cholera
3. Malaria
4. Diabetes
49. Who discovered Uranus?
1. Herschel
2. Ganleo
3. Copernicus
4. None of these
50. Who among the following is associated with the invention of computers?
1. Edison
2. Babbage
3. Mac Millen
4. Rangabhashyam
Answers to General Science Quiz Questions
1. c 2. d 3. c 4. a 5. b
6. c 7. c 8. d 9. c 10. d
11. d 12. a 13. b 14. a 15. c
16. a 17. b 18. c 19. c 20. c
21. c 22. b 23. b 24. a 25. d
26. c 27. d 28. a 29. c 30. c
31. d 32. a 33. b 34. c 35. a
36. b 37. b 38. a 39. a 40. b
41. a 42. c 43. c 44. b 45. a
46. d 47. c 48. a 49. a 50.
General Science Quiz Questions
1. Which instrument is used to measure pressure?
1. Saccharimeter
2. Ammeter
3. Manometer
4. Lactometer
2. What does Angstrom measure?
1. Quantity of liquid
2. Length of light waves
3. Length of cables
4. Speed of ships
3. Light year is related to
1. Energy
2. Speed
3. Distance
4. Intensity
4. Match the following columns
Column 1 Column 2
A. Relative 1. Pyrometer humidity
B. Anemometer 2. High temperature
C. Navigation 3. Hygrometer
D. Direction of wind 4. Chronometer
1 2 3 4
a. B D A C
b. D B A C
c. A D B C
d. C A D B
5. Which of the following instruments is used to measure pressure of gases?
1. Barometer
2. Manometer
3. Ammeter
4. None of these
6. Joule is the unit of
1. Temperature pressure
2. Energy
3. Heat
7. How many Dynes are there in one gram weight?
1. 900
2. 375
3. 981
4. 250
8. How many Ergs are these in 1 Joule?
1. 102
2. 104
3. 106
4. 107
9. The unit of current is
1. Ohm
2. Watt
3. Ampere
4. None of these
10. The unit of energy in MKS system is
1. Volt
2. Erg
3. Ohm
4. Joule
11. The intensity of an earthquake is measured with a
1. Barometer
2. Hydrometer
3. Polygraph
4. Seismograph
12. Centigrade & Fahrenheit scales give same reading at
1. - 40°
2. - 32°
3. - 273°
4. - 100°
13. Match the following columns
Column 1 Column 2
A. Anemometer 1. To measure underwater depth using sound
B. Aneroid barometer 2. To measure very small distances
C. Micrometer 3. Find out wind speed
D. Fathometer 4. Find out direction of wind
5. Measure atmospheric pressure
1 2 3 4
a. A4 B5 C3 D1
b. A3 B5 C2 D1
c. A5 B1 C3 D4
d. A3 B1 C5 D2
14. Who among the following described protoplasm as the physical basis of life?
1. T. H. Huxley
2. Leeuwenhoek
3. Rudolf Virchow
4. J. C. Bose
15. The scientist who first discovered that the earth revolves round the sun was
1. Newton
2. Dalton
3. Copernicus
4. Einstein
16. Alexander Fleming discovered
1. Penicillin
2. X-ray
3. Streptomycin
4. Telephone
17. Who among following invented the steam engine?
1. Marconi
2. James Watt
3. Thomas Savery
4. Wright Brothers
18. Who invented typewriter?
1. Shockley
2. Pascal
3. Sholes
4. Waterman
19. Match the following columns:
Column 1 Column 2
A. Proton 1. Chadwick
B. Neutron 2. Millikan
C. Charged Electron 3. Goldstein
D. Shelled nature of atom 4. Rutherford
5. Madam Curie
a. A1 B2 C3 D5
b. A2 B1 C4 D3
c. A2 B3 C1 D4
d. A4 B2 C3 D1
20. Who discovered circulation of blood in human body?
1. Edward Jenner
2. Joseph Lister
3. William Harvey
4. Jonon Esals
21. The first attempt in printing was made in England by
1. James Arkwright
2. James Watt
3. William Caxton
4. Isaac Newton
22. Who was the surgeon who pioneered antiseptic surgery in 1865?
1. Edward Jenner
2. Joseph Lister
3. Henry William
4. John Sleeman
23. The credit of inventing the television goes to
1. Faraday
2. Baird
3. Edison
4. Marconi
24. The credit of developing the polio vaccine goes to
1. Jonas Salk
2. Alb E. Sabin
3. Selman Waksman
4. None of these
25. Mark the wrong combination
1. James Watt: Steam Engine
2. A.G. Bell: Telephone
3. J. L. Baird: Television
4. J. Perkins: Penicillin
26. Choose the correct combination
1. Typewriter: Remington
2. Dynamite: Dunlop
3. Evolution: Darwin
4. Aeroplane: Harway
27. Who invented the ball point pen?
1. Waterman
2. Oscar
3. Wilson
4. Lazlo Biro
28. Blaze Pascal is associated with
1. Calculating machine
2. Computer
3. Cinema
4. None of these
29. Wright Brothers are regarded inventors of the
1. Balloon
2. Bicycle
3. Aeroplane
4. None of these
30. Which of the following pairs is incorrect?
1. Roentgen: X-ray
2. Newton: Law of gravitation
3. Faraday: Diffusion of gases
4. Pasteur: Bacteriology
31. Philology is the
1. Study of bones
2. Study of muscles
3. Study of architecture
4. Study of languages
32. Anatomy is the branch of science which deals with
1. Structure of animals and plants
2. Functioning of body organs
3. Animal behavior
4. Cells and tissues
33. Study of earthquakes is known as
1. Ecology
2. Seismology
3. Numismatics
4. None of these
34. Ecology deals with
1. Birds
2. Cell formation
3. Relation between Organisms and their environment
4. Tissues
35. Meteorology is the science of
1. Weather
2. Meteors
3. Metals
4. Earthquakes
36. Oncology is the study of
1. Birds
2. Cancer
3. Mammals
4. Soil
37. Study of life in outer space is known as
1. Endobiology
2. Exobiology
3. Enterobiology
4. Neobiology
38. Numismatics is the study of
1. Coins
2. Numbers
3. Stamps
4. Space
39. Eugenics is the study of
1. Altering humans beings by changing their genetic components
2. People of European origin
3. Different races of mankind
4. Genetics of plants
40. Ornithology is the
1. Study of bones
2. Study of birds
3. Study of smells
4. None of these
41. Who invented the Doctor’s thermometer?
1. Fahrenheit
2. Edison
3. Galileo
4. None of these
42. The velocity of light was first measured by
1. Einstein
2. Newton
3. Romer
4. Galileo
43. Who proposed the chemical evolution of life?
1. Darwin
2. Lammarck
3. Oparin
4. Haechel
44. The telephone was invented by
1. John Logie Baird
2. Alexander Graham Bell
3. Thomas Elva Edison
4. James Watt
45. Who among the following evolved the concept of relationship between mass and energy?
1. Einstein
2. Planck
3. Dalton
4. Rutherford
46. Match the following columns:
Column 1 Column 2
A. Radioactivity 1. Planck
B. Periodic Table 2. Thomson
C. Quantum Theory 3. Rutherford
D. X-Rays 4. Mendeleev
5. Roentgen
6. Becquerel
a. A1 B3 C5 D2
b. A6 B5 C3 D5
c. A3 B2 C1 D5
d. A6 B4 C1 D5
47. Match the following columns:
Column 1 Column 2
A. Marconi 1. Radio
B. Darwin 2. Natural selection theory
C. Laennec 3. Orthogenesis theory
D. Baird 4. Stethoscope
5. Television
a. A1 B3 C4 D5
b. A5 B4 C3 D2
c. A1 B2 C4 D5
d. A3 B5 C2 D4
48. Robert Koch worked on
1. Tuberculosis
2. Cholera
3. Malaria
4. Diabetes
49. Who discovered Uranus?
1. Herschel
2. Ganleo
3. Copernicus
4. None of these
50. Who among the following is associated with the invention of computers?
1. Edison
2. Babbage
3. Mac Millen
4. Rangabhashyam
Answers to General Science Quiz Questions
1. c 2. d 3. c 4. a 5. b
6. c 7. c 8. d 9. c 10. d
11. d 12. a 13. b 14. a 15. c
16. a 17. b 18. c 19. c 20. c
21. c 22. b 23. b 24. a 25. d
26. c 27. d 28. a 29. c 30. c
31. d 32. a 33. b 34. c 35. a
36. b 37. b 38. a 39. a 40. b
41. a 42. c 43. c 44. b 45. a
46. d 47. c 48. a 49. a 50.
Friday, May 13, 2011
Wafer-thin majority of UDF cheers none.
The wafer-thin majority of two seats in the 140-member Assembly for Congress-led UDF cheer none in the front and the people who wished to see the end of misrule of LDF for last five years. UDF won only 72 seats, crossing the magic figure of 71 required for a simple majority. It is all with Achuthanandan’s propaganda the LDF succeeded in staving off the anti-incumbency trend against the government, which was reflected in the 2009 Lok Sabha polls and civic elections last year. Pinarayi and coterie have no contribution to the 68 seats of the LDF.
Oommen Chandy and company are on the way to Raj Bhavan, however, sleepless nights await Chandy. It is very tough to sail over with Virendra Kumar, Shibu Baby John, T M Jacob and all other ministerial berth mongers of the UDF.
-K A Solaman
Thursday, April 28, 2011
എസ്.എസ്.എല്.സി ഫലം ഇന്ന് 3.30ന്
Posted On: Thu, 28 Apr 2011
തിരുവനന്തപുരം: എസ്.എസ്.എല്.സി പരീക്ഷാ ഫലം ഇന്ന് വൈകിട്ട് 3.30ന് പ്രസിദ്ധീകരിക്കുമെന്ന് പൊതുവിദ്യാഭ്യാസ ഡയറക്ടര് എ.പി.എം മുഹമ്മദ് ഹനീഷ് അറിയിച്ചു. നാലരയ്ക്ക് പ്രഖ്യാപിക്കുമെന്നായിരുന്നു നേരത്തെ അറിയിച്ചിരുന്നത്.
ഇന്ന് ഉച്ചയ്ക്ക് പരീക്ഷാ ബോര്ഡ് യോഗം ചേര്ന്ന് ഫലത്തിന് അന്തിമരൂപം നല്കും.
മന്ത്രി എം.എ. ബേബി സെക്രട്ടേറിയറ്റിലെ പബ്ളിക് റിലേഷന്സ് ചേംബറില് വാര്ത്താസമ്മേളനം നടത്തിയാണ് ഫലം പ്രഖ്യാപിക്കുക. ഉടന് www.results.itschool.gov.in എന്ന പോര്ട്ടലില് ഫലം ലഭിക്കും. മാര്ക്ക് ഷീറ്റിന്റെ പ്രിന്റൗട്ടും കിട്ടും. പ്ളസ്വണ് പ്രവേശനത്തിന് അപേക്ഷിക്കാന് ഈ പ്രിന്റൗട്ട് മതി.
Cooment: No meaning in saying it a result. It is after all a promotion list of all students. The time 3.30pm is best suited for publication of result as it is just after 'Raahu'(1.30 to 3.30pm)
K A Solaman
Sunday, April 24, 2011
Momentous life of Sri Satya Sai Baba.
Spiritual leader Sri Sathya Sai Baba is no more. He entered into the last phase of man’s life. Many broke down in tears as his exodus gave deep sorrow to millions of followers worldwide. Celebrities expressed sadness at the Baba’s departure. Baba was a great pious personality who worked selflessly to help others. As the honourable Prime Minister pointed out “Baba’s death is an irreparable loss to all’’ especially the ailing and the poor.
He is truly the re-embodiment of god not in the sense of making rings, watches and "vibhuti" from nowhere but for making an asset of worth Rs 40000 crore from emptiness for helping the poor. His life was incredibly momentous.
K A Solaman
Thursday, April 21, 2011
RTI Act is not a cure-all
RTI Act 2005 gives citizens a right to get information from public authorities. However petitions filed against defaulters are not well attended by many commissioners functioning with the Commission. Many of them are appointed on the basis of their association with political parties and this connection reflects in most of their verdict. The illiterate and the labourers get little remedy from RTI Commission.
Persons with moral strength having no political or trade union affiliation should be considered for appointment in the post information commissioners.
K A Solaman
Tuesday, April 12, 2011
The bright and the dark sides of the election
The bright side of this election is the able management of the conduct of election by Chief Electoral officer Nalini Netto. Strict adherence to Voter ID card or Election Commission issued slip is a bold step. The dark side is the mutual fight by party followers.
K A Solaman
Sunday, April 03, 2011
India-the World Champions!
Pakistan lost, Sri Lanka lost and finally India won. Indian Cricket Team will now be known as ‘The World Champions’ every time they play a One Day International. People all over the world viewed the classic event. While the affluent thousands applauded the team sitting at Mumbai Wankhade Stadium, the less privileged ones cheered before home TV and street TVs. The final game was not won because of Sachin Tendulkar but was won for Sachin Tendulkar by his young colleagues. Notably, the win spells out that Indian cricket is in safe hands under the leadership of Mahendra Singh Dhoni.
Some prayed for India’s victory and some others for Sri Lanka in the final. Some prayers were heard and others including that of Sri Lankan President were rejected. Perhaps the Indian God discarded the prayer of Sri Lankan President against India. Nevertheless, the media hype given to this game is avoidable. The people drank thousands of gallons of liquor and spoiled their money,health and valuable time. We need an alternative game like football in the place of cricket to save the people from spoiling themselves with what is called the ‘rich man’s game’.
K A Solaman
Saturday, March 26, 2011
Are English medium schools a threat to Malayalam medium ones?
This is a pertinent question that is still lingering in the minds of all malayalees. The politicians who are not well versed in English are deadly against English in schools and for them English is definitely posing threat to Malayalam language.
Nevertheless, learning of English is definitely very important for higher education, to communicate with multi-lingual Indians and for venturing abroad for education or business purposes. Almost all computer and internet literature are available in English and the regional language like Malayalam should take decades to attain that might. The only positive aspect of Malayalam is it is our mother tongue and anything said and written in that language is tastier for us. This doesn’t mean than we have to translate all the English scientific terms to Malayalam in school classes as it is practised now and later students are asked to study them in English too. This is a time waste and in schools itself, if medium of instruction is Malayalam, science terms should be taught in English so that a future effort can be avoided to learn the translation.
Among English learned people there exists absolutely no rivalry between English and Malayalam. They love both languages with equal respect avoid situations for a combat between the two. To remain devout to the Malayalam language, one need not have to reject English. It is the desire of the parents to make their children’s life better and that is why they send their children to English medium schools. It is also the responsibility of the parents toimplant in their children a sense of pride in their mother tongue.
The State Government should shun all actions to give supremacy to Malayalam medium schools instead it should definitely establish a brilliant infrastructure of English education in all the schools, but with due emphasis on Malayalam language as well. And all public notices, circulars, advertisements, application forms etc should be in both the languages so that all people could easily understand them. Policy making bodies should be filled not only with Malayalam poets and novelists but with people having English education and scientific knowledge.
Malayalam lovers should remember that Malayalam is only a regional language with local identities and do not have a global appeal. Everyone is free to speak or write any language of his choice in India and by using a specific language; other languages do not lose their appeal. So it would be wrong to presume that English is a threat to any other language.
In fact, English language has its impact throughout the world because many people understand this language. In India there are various languages but each has its own identity and background. So, none of the languages are in any way inferior to the other languages. There is no doubt that English language has created its impact in India but it does not see other languages inferior. According to Gandhiji learning of many languages is a pleasure so we should not be prejudiced with any language.
K A Solaman
Nevertheless, learning of English is definitely very important for higher education, to communicate with multi-lingual Indians and for venturing abroad for education or business purposes. Almost all computer and internet literature are available in English and the regional language like Malayalam should take decades to attain that might. The only positive aspect of Malayalam is it is our mother tongue and anything said and written in that language is tastier for us. This doesn’t mean than we have to translate all the English scientific terms to Malayalam in school classes as it is practised now and later students are asked to study them in English too. This is a time waste and in schools itself, if medium of instruction is Malayalam, science terms should be taught in English so that a future effort can be avoided to learn the translation.
Among English learned people there exists absolutely no rivalry between English and Malayalam. They love both languages with equal respect avoid situations for a combat between the two. To remain devout to the Malayalam language, one need not have to reject English. It is the desire of the parents to make their children’s life better and that is why they send their children to English medium schools. It is also the responsibility of the parents toimplant in their children a sense of pride in their mother tongue.
The State Government should shun all actions to give supremacy to Malayalam medium schools instead it should definitely establish a brilliant infrastructure of English education in all the schools, but with due emphasis on Malayalam language as well. And all public notices, circulars, advertisements, application forms etc should be in both the languages so that all people could easily understand them. Policy making bodies should be filled not only with Malayalam poets and novelists but with people having English education and scientific knowledge.
Malayalam lovers should remember that Malayalam is only a regional language with local identities and do not have a global appeal. Everyone is free to speak or write any language of his choice in India and by using a specific language; other languages do not lose their appeal. So it would be wrong to presume that English is a threat to any other language.
In fact, English language has its impact throughout the world because many people understand this language. In India there are various languages but each has its own identity and background. So, none of the languages are in any way inferior to the other languages. There is no doubt that English language has created its impact in India but it does not see other languages inferior. According to Gandhiji learning of many languages is a pleasure so we should not be prejudiced with any language.
K A Solaman
Wednesday, March 16, 2011
CSIRJRF/NET Physical Science Model Question Paper- 2011June
GENERAL SCIENCES
MODEL QUESTION PAPER
PART A
ANSWER ANY 15 QUESTONS
1. Profit of a firm grows at a rate of 15% per year for the first three consecutive years. For the next three years, the profit level remains stagnant. From the 6th year till the 9th year, it again grows at a rate of 15% per year. Which of the following graphs depicts these facts?
2. A pond is deepest at its centre and becomes shallow uniformly towards the edge. If the depth of water at the centre in May is half its value in August, the water contained in the pond
(1) in May is greater than half that in August
(2) in August is equal to twice that in May
(3) in May is less than half that in August
(4) in August is less than twice that in May
3. The series representing the sum of the areas of the shaded equilateral triangles in the figure below is
1. 3+2+1+1
2. 23411113333
3. 23411114444
4. 1111481632
4. Which of the following vitamins will not be synthesized in a person confined to a dark cell for a long time ?
1. A
2. B
3. C
4. D
5. Flowering is some plants is strongly influenced by the photo period. A farmer was growing two species of plants, A and B near a sea coast where a light house was located. He observed that species A flowered profusely while species B did not. Which of the following is correct ?
1. Species A requires long duration of day while species B needs a shorter day
2. Species B requires longer duration of day while species A needs a shorter duration
3. Both species require short duration of day
4. Both species require long duration of day
6. Pneumatophores are modified roots in some plants like Rhizophora growing in swampy areas that come out of the ground and grow vertically upwards. The main function of such roots is to
(1) help obtain oxygen for respiration
(2) provide support
(3) adsorb and conduct water and minerals
(4) store food
7. A cube of side 1 cm is painted by putting a lacquer of thickness δ, negligible compared to the side of the cube. The volume of the painted cube is approximately
(1) 1 + δ cm3
(2) 1 + δ3 cm3
(3) 1 + 3δ3 cm3
(4) 1 + 3δ cm3
8. A candle is burning inside a sealed glass jar. The pressure and temperature of the air within the jar are plotted as a function of time. Which of the following graphs represents this process correctly?
9. The result of taking 1’s complement of the sum of the binary numbers 110 and 101 will be
(1) 1011
(2) 0011
(3) 0100
(4) 0110
10. Which of the following straight lines passes through the point (1,1)?
(1) y = 2x + 3
(2) 2y = x−6
(3) x = 1
(4) x = y + 1
11. Which of the following 1 molar (aqueous) solution has the highest number density of ions?
(1) Glucose
(2) CaCl2
(3) NaNO3
(4) KCl
12. How many two-digit even numbers can be composed from nine digits 1, 2, 3 … 9?
(1) 50
(2) 81
(3) 45
(4) 36
13. Complete combustion of cyclohexane (C6H12) is represented by the equation
C6H12 + x O2 → y CO2 + z H2O
The values of x, y and z, respectively, are
(1) 9, 6, 6
(2) 10, 6, 4
(3) 6, 12, 10
(4) 4, 8, 12
14. How many distinct trichlorobenzenes (C6H3Cl3) should exist, given that benzene (C6H6) has a regular hexagonal geometry?
(1) 6
(2) 1
(3) 2
(4) 3
15. Mercury is closer to the Sun than Venus. Yet Venus is hotter because it has
(1) a dominant CO2 atmosphere
(2) a dominant methane atmosphere
(3) sulphuric acid clouds
(4) an atmosphere devoid of oxygen
16. In a simple pendulum experiment, a student records the following readings. If the true period of the pendulum is 10 s, then the percent error is the largest for the observation with serial number
Serial Number
Number of Oscillations
Time
1
2
3
4
10
20
50
100
100.2
200.3
500.5
1000.8
(1) 1
(2) 2
(3) 3
(4) 4
17. A container holding normal air (1 bar pressure, room temperature) is being evacuated. The normal composition of air is approximately 78% N2, 21% O2, 0.9% Ar and traces of CO2 (0.04%) and water vapour (0.02%). After the pressure in the container falls to about 10–3 mbar, the relative fractions of the components will be
1. N2 and O2 approximately equal and greater than H2O
2. N2, O2, Ar approximately equal and greater than H2O
3. N2, O2, Ar in the original proportion, but N2 less than H2O
4. N2, O2, Ar in the original proportion, and N2 greater than H2O
18. An endoscope is a device for observing internal organs, using a combination of a lamp and an optical fibre. The image seen is due to
(1) light reflected by the organ and transmitted by internal reflection through the fibre
(2) light refracted by the organ and transmitted by refraction through the fibre.
(3) light refracted by the organ and transmitted by internal reflection through the fibre.
(4) light emitted by the organ and transmitted by refraction through the fibre.
19. How many times in a day is the angle between the minute and hour hands of a clock equal to an angle θ, where 00 < θ < 1800 (1) 24 (2) 12 (3) 36 (4) 48 20. A typical enzyme catalyzed reaction is shown below What do you think the component x might be? 1. Substrate concentration or temperature 2. Substrate concentration or enzyme concentration 3. Substrate concentration or pH 4. pH or temperature PART B 21. The value of the integral 2 0 x xe dx is equal to 1. 2 2. 3. 0 4. 1 2 22. If 1 Tij2 xi y j xj yi and ij i j j i S x y x y 2 1 are components of tensors T and S(i,j = 1, 2, 3) respectively then , ij ij i j T S is 1. 0 2. 2 2 i i i x y 3. 2 2 i i i x y 4. 4 4 i i i x y 23. An unbiased coin is tossed n times. The probability that exactly m heads will come up is 1. m n 2 2. !( )! ! 2 1 m n m n n 3. !( )! ! 2 1 m n m n m 4. n m 2 24. Given the Legendre polynomials ( ) 1, ( ) , 0 1 P x P x x and 2 3 1 ( ) 2 2 x P x , then the polynomial (3x2 + x – 1) can be expressed as 1. P2(x) – P1(x) 2. 2P2(x) + P1(x) 3. P2(x) + P1(x) 4. 2P2(x) + P1(x)+ P0(x) 25. A circular ring rotates about an axis passing through its centre and perpendicular to its plane. Each point on it moves with a speed c 2 , where c is the speed of light in vacuum. The relative velocity between any two diametrically opposite points on the ring is 1. 2c 5 2. c 2 3. 4c 5 4. c 26. For what value of will transformation q Q = q cos2p and pP=q sin2p be canonical? 1. = 1 2. = ½ 3. = ‒1 4. = 2 27. Consider a spherical ball of radius R and constant density . Which of the following graphs shows the gravitational potential V(r) as a function of the radial coordinate r ? . . . 28. A quantum particle of mass m moves in two dimensions in an anisotropic harmonic oscillator potential 1 2 2 2 2 2 V(x, y) m x 2m y . The energy eigenvalues are (n is a positive integer or zero) 1. 2n1 2. n1 3. 2 n1 4. 3 2 n 29. The ground state energy of the Hydrogen atom is 13.6 eV. The energy of the second excited state is 1. 27.2 eV 2. 6.8 eV 3. 1.5eV 4. 4.5 eV 30. Consider a one-dimensional infinite square well potential otherwise x L V x 0 ( ) If each of the lowest two energy levels are occupied by identical non-interacting bosonic particles (one in each level), then the unnormalized wave function of the combined system is 1. L 2 x sin L x x ,x sin 1 2 1 2 2. 1 2 2 1 1 2 2 2 ( , ) sin sin sin sin x x x x x x L L L L 3. 1 2 1 2 1 2 2 2 2 ( , ) sin sin sin sin x x x x x x L L L L 4. 1 2 1 2 1 2 2 2 ( , ) sin sin sin sin x x x x x x L L L L 31. The total spin-angular momentum of a system of three free electrons is 1. Stot = 1 2 and Stot = 3 2 2. Stot = 1 2 only 3. Stot = 3 2 only 4. Stot = 0 and Stot = 1 32. A conducting spherical shell of inner radius a and outer radius b has a point charge q located at the centre of the shell. The potential at a distance r from the centre (a < r < b) is 1. 0 2. 0 1 4 q a 3. 0 1 4 q b 4. 0 1 4 q r 33. Consider the electric and magnetic fields of an accelerating charge. How should the fields vary with r (the retarded distance) for the Poynting vector to remain finite at arbitrarily large distances? 1. 1 r 2. 2 1 r 3. r 4. 2 r 34. According to Kirchoff‟s laws for circuits, the sum of the currents at any junction is equal to zero. Which of the following equations for the current density j describes this situation? 1. j 0 2. .j 0 3. 2 j 0 4. j/t0 35. Two equal and opposite charges are placed at a distance r from each other. A large metallic sheet is placed at a distance d from them as shown in the figure. Due to the presence of the sheet, the attractive force between the charges along the direction joining them 1. decreases 2. increases 3. remains unchanged 4. decreases if r > d/2 and increases if r < d/2. 36. A non-interacting system has two energy levels, 0 and . The lower level is doubly degenerate while that of energy is non-degenerate. If the system is in thermal equilibrium at temperature T, the single-particle partition function is 1. Z e kBT / 2 2. Z e kBT / 1 2 3. Z e kBT / 2 4. Z e kBT / 2 1 37. A system of weakly interacting two-dimensional harmonic oscillators is in thermal contact with a heat bath of absolute temperature T. The average kinetic energy of an oscillator is 1. kBT 2. 2kBT 3. 3 kBT/2 4. kBT/2 38. Which of the following expresses the Second law of thermodynamics? (Symbols have their usual meanings.) 1. FW 2. S Q T 3. U QW 4. S 0 39. For the op-amp circuit shown in the figure below, which is the correct output waveform? 1. 2. 3. 4. 40. Which of the following circuits has an appropriate voltage divider for biasing the transistor? 1. 2. 3. 4. PART C COMPULSORY QUESTIONS 41. The value of the contour integral 1 2i dz f (z) C where 2 1 2 ( ) 2 1 z z f z z z and the contour C is a circle of radius 2 centered at the origin, traversed in the counter-clockwise direction is 1. 2 2. 1/2 3. 1 4. 3 42. The matrix A, defined by 1 0 0 0 0 A a b b a is orthogonal if 1. a = 1, b = –1 2. a = 1/ 2 , b = 1/ 2 3. a = 1/ 2 , b = i/ 2 4. a = 1, b = 1 43. Given the Lagrangian L = 2 1 dt dx where x is a co-ordinate and t is the time, the Hamiltonian is 1. dx dt 2 / 1 dx dt 2 2. 2 1 dt dx 3. 2 1 1 dt dx k 4. 2 dt dx 44. In a nonmagnetic dielectric medium with dielectric constant 4 r ,the electric field of a propagating plane wave with = 10 8 rad/s is given by E i j j t k r ˆ 3ˆ exp . The propagation vector k (in units of m-1) is given by 1. k i ˆj 3 ˆ 1 3 1 2. k zˆ 3 1 3. k i ˆj 6 ˆ 1 2 3 1 4. k i ˆj 3 ˆ 1 3 1 45. Two small circular loops, each of area 1cm2 carry currents 1A and 2A respectively. They are placed in a plane at a distance of 5 meters from each other. If one of the loops is lifted 5 meters in the vertical direction while maintaining it flat, the electrical work done in the process is ( 0 is the magnetic permeability of vacuum) 1. 2.75 10 9 2 0 J 2. 1.46 10 10 2 0 J 3. 1.88 10 10 2 0 J 4. 4.74 10 9 2 0 J 46. Consider a three dimensional harmonic oscillator with Hamiltonian H= 2 2 2 2 2 2 2 2 1 2 2 2 m x y z m p m p m p x y z . A. The number of distinct eigenstates with energy eigenvalue 2 5 is 1. 5 2. 3 3. 2 4. 1 B. The eigenvalue of L 2 (where L is the angular momentum operator) in the ground state is 1. 2 2. 2 2 3. 0 4. 2 6 47. The states |m>, m = -1, 0, 1 are the eigenstates of S z , the z component of the spin
angular momentum of a particle with S =1. Sz m m m.
A. The expectation value of S z in the state 1
2
1
0
2
1
1
2
1
is
1. / 4
2. - / 2
3. / 2
4. - / 4
B. Consider the states 1
3
1
0
2
1
1
6
1
1 and
1
3
1
1 0
6
1
2 a . The value of a for which these states are
orthogonal is
1. 1/ 3
2. 1/2
3. 1/ 2
4. 1/ 2
48. The free energy of a system having magnetization m is given by
F = - 2
2
m
J
k T B
2
1
ln
2
1
2
1
ln
2
1 m m m m
,
where J is the exchange energy, T is the Temperature, and B k is the Boltzmann
constant.
A. The equilibrium value of magnetization is determined by
1. m = sinh
k T
Jm
B
2. m = cosh
k T
Jm
B
3. m = tanh
k T
Jm
B
4. m =
2
3
1
1
k T
Jm
k T
Jm
B B
B. If m is determined through the relationship m =
2
3
1
1
k T
Jm
k T
Jm
B B
,
then the system undergoes
1. no phase-transition
2. a second order phase transition at T C B J / k
3. a first order phase transition at T C B J / k
4. a phase transition that cannot be classified as either first or second
order.
49. A piece of metal of heat capacity 500 JK–1assumed to be independent of
temperature is at 500 K. The metal piece is cooled to 300K in two steps: it is first
plunged into a liquid bath at 400 K. After cooling it is plunged into a colder
liquid bath at 300 K. The metal piece is then heated to 500 K in two steps: it is
plunged into a liquid bath at 400 K first and then into a liquid bath at 500 K.
During the cooling-heating process, the metal piece and the liquid baths gain or
lose entropy. The total change in entropy of the system (the metal piece and the
liquid baths) is
1. 1500 ln (5/3)JK-1
2. Zero
3. –200 JK–1
4. +200JK–1
50. Shown in the figure is a circuit to measure light intensity and convert it to a digital
signal. The photodiode P has a responsivity of 0.1A per watt of incident light
intensity. The op-amp converts the induced photocurrent to a voltage which is
digitized by the 10-bit A/D converter with a reference voltage of 4V.
A. For a light intensity of 25 μW incident on the photodiode, the voltage
output of the op-amp is
1. 0.25V
2. 1.0V
3. 4.0V
4. 2.5V
B. The range of light intensity which can be measured by this set up is
1. 100nW to 100μW
2. 100nW to 100μW
3. 40nW to 40μW
4. 40nW to 40μW
ANSWER ANY 10 QUESTIONS OUT OF THE REMAINING 15
51. Under a small rotation about the x – axis, the component of a second
rank tensor Γyz transforms as
1. Γyz = (1 + ) Γyz
2. Γyz = Γyz + (Γyy – Tzz)
3. Γyz = Γyz + (Γyx – Γzx)
4. Γyz = Γyz + Γxx
52. The partial differential equation
0
u u
x y
x y
.
Upon change of variables to z = x + iy z* =x–iy becomes
1.
u
z
u
z* 0
2.
z
u
z* z* u
z
0
3.
z
u
z
z* u
z* 0
4.
z
u
z
z* u
z* 0
53. A large slab consists of two materials with dielectric constants 1 and 3 divided by
a plane interface as shown in the figure. An electric field exists in this slab, which
uniformly makes an angle of 30 with the normal to the interface on the left side
of the (=1). The angle the field makes on the other side of the interface is
1. tan 1 (3)
2. sin
2 3
1 1
3. 60
4. tan 1 (1/3)
54. Given the vector A y,x,0
, the line integral .
c
Adl
, where C is a circle of
radius 5 units with its centre at the origin, (correct to the first decimal place) is
1. 172.8
2. 157.1
3. -146.3
4. 62.8
55. An electron is placed in an uniform magnetic field H
that points in the
xˆ direction. The Hamiltonian of the system is H= KS H
where k >0 is a
constant and S
is the electron spin operator.
A. The energy of the ground state of the Hamiltonian is
1. KS
2. KH
2
1
3. KH
2
1
4. 0
B. The expectation value of z S in the ground state of this Hamiltonian is
1. / 2
2. 0
3. / 2
4.
56. Positronium is an atom formed by an electron and a positron. The mass of a
positron is the same as that of an electron and its charge is equal in magnitude but
opposite in sign to that of an electron. The positronium atom is thus similar to the
hydrogen atom with the positron replacing the proton.
A. The binding energy of a positronium atom is
1. 13.6 eV
2. 6.8 eV
3. 27.2 eV
4. 3.4 eV
B. If a positronium atom makes a transition from the state with n 3 to a
state with n 2, the energy of the photon that is emitted in this transition
is closest to
1. 1.88 eV
2. 0.94 eV
3. 1.13 eV
4. 2.27 eV
57. A particle of mass m and charge q is constrained to move along a straight line
joining two other equal charges q fixed at x = a. The time period of small
oscillations is
1. am
q
a
T 0
2
2. r am
q
a
T 0
4
3. r am
q
a
T 0
4. am
q
a
T 0
2
58. A Carnot engine operates between a heat source at 500 K and a heat sink at 300
K. The temperature of the source is increased by 20K. In order that the
efficiency of the engine remain unchanged, the temperature of the sink should be
changed by
1. +20K
2. +12K
3. –12K
4. –20K
59. The following table shows the relationship between an independent quantity x, a
two measured quantities y and z.
A. In order to get a straight line graph relating y to x we should plot
1. y vs log x
2. y2 vs x
3. y vs x2
4. y2 vs log x
B Similarly, in order to get a straight line graph relating z to x, we should
plot
1. z2 vs x3
2. (z + 4)2 vs x3
3. (z – 4)2 vs x3
4. log z vs log x
60. The cross-section for the excitation of a certain atomic level A under electron
impact is 20 2 1.4 10 cm A
. The level A has lifetime s 8 2 10 and decays
10% of the time to level B and 90% of the time to level C, as shown in figure.
x 0 1 2 3 4 5
y –0.1 2.1 8.1 17.9 32.2 49.7
z –4 –3 2 2 4
3 3 4 4 5 5 4
When an electron beam of 5mA/cm 2 is passed through a vapour of these atoms at
a pressure of 66.65 dynes/cm 2 at a temperature of 27 C, the equilibrium
population per cm3 in level A is
1. 1.4 10 4 cm 3
2. 1.55 10 5 cm 3
3. 4.66 10 5cm 3
4. 3.1 1016cm 3
61. Consider the CO molecule as a diatomic rigid rotor with a bond length of 1.12Å.
The reduced mass of the system is obtained from the atomic masses of C and O.
The rotational energies are defined in terms of B (the rotational constant) and J
(the rotational quantum number). If 1 and 2 denote the frequency of the first
rotational resonance lines for the molecules 12 C16 O and 13 C18 O respectively,
their ratio 1 / 2 is approximately
1. 1.5
2. 1.1
3. 0.9
4. 1.01
62. A metal at temperature T is placed in a static uniform electric field E
. An electron
in it experiences a collision, and then, after a time t, a second collision. In the
Drude model, energy mean speed of an electron emerging from a collision does not
depend on the energy that the electron acquired from the field since the time of the
last collision. The average energy lost by the electron in the second of the two
collisions mentioned previously (note that the average is taken over all directions in
which the electron may emerge after the first collision) is equal to
1.
2
2
eEt
m
2.
2
eEt
m
3.
2
1
4 2
eEt
m
4.
2
1
4
eEt
m
63. The Fermi energy of a two-dimensional electron gas with number density n is
equal to
1.
m
n
2
2.
m
n
2
2
2
2 2/ 3
3.
m
n
2
3
2
2 2/ 3
4.
m
n
2
2
64. The binding energy of a nucleus with atomic number Z and atomic mass number
A is given by the semi-empirical mass formula
B ( Z,A) = aA - bA s 2/3
A
A Z 2 2
- d 1/ 3 1/ 2
2
A A
Z
where a = 15.8 MeV, b = 18.3 MeV, s = 23.2 MeV, d = 0.7 MeV and
= (+11.2, 0, -11.2) MeV for nuclei which are (odd-odd, odd-even, even-even).
If we consider all possible isobars of mass number 216, the most stable nuclide is
1. Pb 216
82
2. Fr 216
87
3. At 216
85
4. Rn 216
86
65. The activity of a radioactive sample is defined as N where is the decay
constant and N is the number of atoms. In an experiment, the activity of a sample
of Cr 55
24 was found to change as
After(min) 0 5 10 15 20
N(m curie) 19.2 7.13 2.65 0.99 0.37
The half life of Cr 55
24 is
1. 5.08 min
2. 3.52 min
3. 3.57 min
4. 5.16 min
MODEL QUESTION PAPER
PART A
ANSWER ANY 15 QUESTONS
1. Profit of a firm grows at a rate of 15% per year for the first three consecutive years. For the next three years, the profit level remains stagnant. From the 6th year till the 9th year, it again grows at a rate of 15% per year. Which of the following graphs depicts these facts?
2. A pond is deepest at its centre and becomes shallow uniformly towards the edge. If the depth of water at the centre in May is half its value in August, the water contained in the pond
(1) in May is greater than half that in August
(2) in August is equal to twice that in May
(3) in May is less than half that in August
(4) in August is less than twice that in May
3. The series representing the sum of the areas of the shaded equilateral triangles in the figure below is
1. 3+2+1+1
2. 23411113333
3. 23411114444
4. 1111481632
4. Which of the following vitamins will not be synthesized in a person confined to a dark cell for a long time ?
1. A
2. B
3. C
4. D
5. Flowering is some plants is strongly influenced by the photo period. A farmer was growing two species of plants, A and B near a sea coast where a light house was located. He observed that species A flowered profusely while species B did not. Which of the following is correct ?
1. Species A requires long duration of day while species B needs a shorter day
2. Species B requires longer duration of day while species A needs a shorter duration
3. Both species require short duration of day
4. Both species require long duration of day
6. Pneumatophores are modified roots in some plants like Rhizophora growing in swampy areas that come out of the ground and grow vertically upwards. The main function of such roots is to
(1) help obtain oxygen for respiration
(2) provide support
(3) adsorb and conduct water and minerals
(4) store food
7. A cube of side 1 cm is painted by putting a lacquer of thickness δ, negligible compared to the side of the cube. The volume of the painted cube is approximately
(1) 1 + δ cm3
(2) 1 + δ3 cm3
(3) 1 + 3δ3 cm3
(4) 1 + 3δ cm3
8. A candle is burning inside a sealed glass jar. The pressure and temperature of the air within the jar are plotted as a function of time. Which of the following graphs represents this process correctly?
9. The result of taking 1’s complement of the sum of the binary numbers 110 and 101 will be
(1) 1011
(2) 0011
(3) 0100
(4) 0110
10. Which of the following straight lines passes through the point (1,1)?
(1) y = 2x + 3
(2) 2y = x−6
(3) x = 1
(4) x = y + 1
11. Which of the following 1 molar (aqueous) solution has the highest number density of ions?
(1) Glucose
(2) CaCl2
(3) NaNO3
(4) KCl
12. How many two-digit even numbers can be composed from nine digits 1, 2, 3 … 9?
(1) 50
(2) 81
(3) 45
(4) 36
13. Complete combustion of cyclohexane (C6H12) is represented by the equation
C6H12 + x O2 → y CO2 + z H2O
The values of x, y and z, respectively, are
(1) 9, 6, 6
(2) 10, 6, 4
(3) 6, 12, 10
(4) 4, 8, 12
14. How many distinct trichlorobenzenes (C6H3Cl3) should exist, given that benzene (C6H6) has a regular hexagonal geometry?
(1) 6
(2) 1
(3) 2
(4) 3
15. Mercury is closer to the Sun than Venus. Yet Venus is hotter because it has
(1) a dominant CO2 atmosphere
(2) a dominant methane atmosphere
(3) sulphuric acid clouds
(4) an atmosphere devoid of oxygen
16. In a simple pendulum experiment, a student records the following readings. If the true period of the pendulum is 10 s, then the percent error is the largest for the observation with serial number
Serial Number
Number of Oscillations
Time
1
2
3
4
10
20
50
100
100.2
200.3
500.5
1000.8
(1) 1
(2) 2
(3) 3
(4) 4
17. A container holding normal air (1 bar pressure, room temperature) is being evacuated. The normal composition of air is approximately 78% N2, 21% O2, 0.9% Ar and traces of CO2 (0.04%) and water vapour (0.02%). After the pressure in the container falls to about 10–3 mbar, the relative fractions of the components will be
1. N2 and O2 approximately equal and greater than H2O
2. N2, O2, Ar approximately equal and greater than H2O
3. N2, O2, Ar in the original proportion, but N2 less than H2O
4. N2, O2, Ar in the original proportion, and N2 greater than H2O
18. An endoscope is a device for observing internal organs, using a combination of a lamp and an optical fibre. The image seen is due to
(1) light reflected by the organ and transmitted by internal reflection through the fibre
(2) light refracted by the organ and transmitted by refraction through the fibre.
(3) light refracted by the organ and transmitted by internal reflection through the fibre.
(4) light emitted by the organ and transmitted by refraction through the fibre.
19. How many times in a day is the angle between the minute and hour hands of a clock equal to an angle θ, where 00 < θ < 1800 (1) 24 (2) 12 (3) 36 (4) 48 20. A typical enzyme catalyzed reaction is shown below What do you think the component x might be? 1. Substrate concentration or temperature 2. Substrate concentration or enzyme concentration 3. Substrate concentration or pH 4. pH or temperature PART B 21. The value of the integral 2 0 x xe dx is equal to 1. 2 2. 3. 0 4. 1 2 22. If 1 Tij2 xi y j xj yi and ij i j j i S x y x y 2 1 are components of tensors T and S(i,j = 1, 2, 3) respectively then , ij ij i j T S is 1. 0 2. 2 2 i i i x y 3. 2 2 i i i x y 4. 4 4 i i i x y 23. An unbiased coin is tossed n times. The probability that exactly m heads will come up is 1. m n 2 2. !( )! ! 2 1 m n m n n 3. !( )! ! 2 1 m n m n m 4. n m 2 24. Given the Legendre polynomials ( ) 1, ( ) , 0 1 P x P x x and 2 3 1 ( ) 2 2 x P x , then the polynomial (3x2 + x – 1) can be expressed as 1. P2(x) – P1(x) 2. 2P2(x) + P1(x) 3. P2(x) + P1(x) 4. 2P2(x) + P1(x)+ P0(x) 25. A circular ring rotates about an axis passing through its centre and perpendicular to its plane. Each point on it moves with a speed c 2 , where c is the speed of light in vacuum. The relative velocity between any two diametrically opposite points on the ring is 1. 2c 5 2. c 2 3. 4c 5 4. c 26. For what value of will transformation q Q = q cos2p and pP=q sin2p be canonical? 1. = 1 2. = ½ 3. = ‒1 4. = 2 27. Consider a spherical ball of radius R and constant density . Which of the following graphs shows the gravitational potential V(r) as a function of the radial coordinate r ? . . . 28. A quantum particle of mass m moves in two dimensions in an anisotropic harmonic oscillator potential 1 2 2 2 2 2 V(x, y) m x 2m y . The energy eigenvalues are (n is a positive integer or zero) 1. 2n1 2. n1 3. 2 n1 4. 3 2 n 29. The ground state energy of the Hydrogen atom is 13.6 eV. The energy of the second excited state is 1. 27.2 eV 2. 6.8 eV 3. 1.5eV 4. 4.5 eV 30. Consider a one-dimensional infinite square well potential otherwise x L V x 0 ( ) If each of the lowest two energy levels are occupied by identical non-interacting bosonic particles (one in each level), then the unnormalized wave function of the combined system is 1. L 2 x sin L x x ,x sin 1 2 1 2 2. 1 2 2 1 1 2 2 2 ( , ) sin sin sin sin x x x x x x L L L L 3. 1 2 1 2 1 2 2 2 2 ( , ) sin sin sin sin x x x x x x L L L L 4. 1 2 1 2 1 2 2 2 ( , ) sin sin sin sin x x x x x x L L L L 31. The total spin-angular momentum of a system of three free electrons is 1. Stot = 1 2 and Stot = 3 2 2. Stot = 1 2 only 3. Stot = 3 2 only 4. Stot = 0 and Stot = 1 32. A conducting spherical shell of inner radius a and outer radius b has a point charge q located at the centre of the shell. The potential at a distance r from the centre (a < r < b) is 1. 0 2. 0 1 4 q a 3. 0 1 4 q b 4. 0 1 4 q r 33. Consider the electric and magnetic fields of an accelerating charge. How should the fields vary with r (the retarded distance) for the Poynting vector to remain finite at arbitrarily large distances? 1. 1 r 2. 2 1 r 3. r 4. 2 r 34. According to Kirchoff‟s laws for circuits, the sum of the currents at any junction is equal to zero. Which of the following equations for the current density j describes this situation? 1. j 0 2. .j 0 3. 2 j 0 4. j/t0 35. Two equal and opposite charges are placed at a distance r from each other. A large metallic sheet is placed at a distance d from them as shown in the figure. Due to the presence of the sheet, the attractive force between the charges along the direction joining them 1. decreases 2. increases 3. remains unchanged 4. decreases if r > d/2 and increases if r < d/2. 36. A non-interacting system has two energy levels, 0 and . The lower level is doubly degenerate while that of energy is non-degenerate. If the system is in thermal equilibrium at temperature T, the single-particle partition function is 1. Z e kBT / 2 2. Z e kBT / 1 2 3. Z e kBT / 2 4. Z e kBT / 2 1 37. A system of weakly interacting two-dimensional harmonic oscillators is in thermal contact with a heat bath of absolute temperature T. The average kinetic energy of an oscillator is 1. kBT 2. 2kBT 3. 3 kBT/2 4. kBT/2 38. Which of the following expresses the Second law of thermodynamics? (Symbols have their usual meanings.) 1. FW 2. S Q T 3. U QW 4. S 0 39. For the op-amp circuit shown in the figure below, which is the correct output waveform? 1. 2. 3. 4. 40. Which of the following circuits has an appropriate voltage divider for biasing the transistor? 1. 2. 3. 4. PART C COMPULSORY QUESTIONS 41. The value of the contour integral 1 2i dz f (z) C where 2 1 2 ( ) 2 1 z z f z z z and the contour C is a circle of radius 2 centered at the origin, traversed in the counter-clockwise direction is 1. 2 2. 1/2 3. 1 4. 3 42. The matrix A, defined by 1 0 0 0 0 A a b b a is orthogonal if 1. a = 1, b = –1 2. a = 1/ 2 , b = 1/ 2 3. a = 1/ 2 , b = i/ 2 4. a = 1, b = 1 43. Given the Lagrangian L = 2 1 dt dx where x is a co-ordinate and t is the time, the Hamiltonian is 1. dx dt 2 / 1 dx dt 2 2. 2 1 dt dx 3. 2 1 1 dt dx k 4. 2 dt dx 44. In a nonmagnetic dielectric medium with dielectric constant 4 r ,the electric field of a propagating plane wave with = 10 8 rad/s is given by E i j j t k r ˆ 3ˆ exp . The propagation vector k (in units of m-1) is given by 1. k i ˆj 3 ˆ 1 3 1 2. k zˆ 3 1 3. k i ˆj 6 ˆ 1 2 3 1 4. k i ˆj 3 ˆ 1 3 1 45. Two small circular loops, each of area 1cm2 carry currents 1A and 2A respectively. They are placed in a plane at a distance of 5 meters from each other. If one of the loops is lifted 5 meters in the vertical direction while maintaining it flat, the electrical work done in the process is ( 0 is the magnetic permeability of vacuum) 1. 2.75 10 9 2 0 J 2. 1.46 10 10 2 0 J 3. 1.88 10 10 2 0 J 4. 4.74 10 9 2 0 J 46. Consider a three dimensional harmonic oscillator with Hamiltonian H= 2 2 2 2 2 2 2 2 1 2 2 2 m x y z m p m p m p x y z . A. The number of distinct eigenstates with energy eigenvalue 2 5 is 1. 5 2. 3 3. 2 4. 1 B. The eigenvalue of L 2 (where L is the angular momentum operator) in the ground state is 1. 2 2. 2 2 3. 0 4. 2 6 47. The states |m>, m = -1, 0, 1 are the eigenstates of S z , the z component of the spin
angular momentum of a particle with S =1. Sz m m m.
A. The expectation value of S z in the state 1
2
1
0
2
1
1
2
1
is
1. / 4
2. - / 2
3. / 2
4. - / 4
B. Consider the states 1
3
1
0
2
1
1
6
1
1 and
1
3
1
1 0
6
1
2 a . The value of a for which these states are
orthogonal is
1. 1/ 3
2. 1/2
3. 1/ 2
4. 1/ 2
48. The free energy of a system having magnetization m is given by
F = - 2
2
m
J
k T B
2
1
ln
2
1
2
1
ln
2
1 m m m m
,
where J is the exchange energy, T is the Temperature, and B k is the Boltzmann
constant.
A. The equilibrium value of magnetization is determined by
1. m = sinh
k T
Jm
B
2. m = cosh
k T
Jm
B
3. m = tanh
k T
Jm
B
4. m =
2
3
1
1
k T
Jm
k T
Jm
B B
B. If m is determined through the relationship m =
2
3
1
1
k T
Jm
k T
Jm
B B
,
then the system undergoes
1. no phase-transition
2. a second order phase transition at T C B J / k
3. a first order phase transition at T C B J / k
4. a phase transition that cannot be classified as either first or second
order.
49. A piece of metal of heat capacity 500 JK–1assumed to be independent of
temperature is at 500 K. The metal piece is cooled to 300K in two steps: it is first
plunged into a liquid bath at 400 K. After cooling it is plunged into a colder
liquid bath at 300 K. The metal piece is then heated to 500 K in two steps: it is
plunged into a liquid bath at 400 K first and then into a liquid bath at 500 K.
During the cooling-heating process, the metal piece and the liquid baths gain or
lose entropy. The total change in entropy of the system (the metal piece and the
liquid baths) is
1. 1500 ln (5/3)JK-1
2. Zero
3. –200 JK–1
4. +200JK–1
50. Shown in the figure is a circuit to measure light intensity and convert it to a digital
signal. The photodiode P has a responsivity of 0.1A per watt of incident light
intensity. The op-amp converts the induced photocurrent to a voltage which is
digitized by the 10-bit A/D converter with a reference voltage of 4V.
A. For a light intensity of 25 μW incident on the photodiode, the voltage
output of the op-amp is
1. 0.25V
2. 1.0V
3. 4.0V
4. 2.5V
B. The range of light intensity which can be measured by this set up is
1. 100nW to 100μW
2. 100nW to 100μW
3. 40nW to 40μW
4. 40nW to 40μW
ANSWER ANY 10 QUESTIONS OUT OF THE REMAINING 15
51. Under a small rotation about the x – axis, the component of a second
rank tensor Γyz transforms as
1. Γyz = (1 + ) Γyz
2. Γyz = Γyz + (Γyy – Tzz)
3. Γyz = Γyz + (Γyx – Γzx)
4. Γyz = Γyz + Γxx
52. The partial differential equation
0
u u
x y
x y
.
Upon change of variables to z = x + iy z* =x–iy becomes
1.
u
z
u
z* 0
2.
z
u
z* z* u
z
0
3.
z
u
z
z* u
z* 0
4.
z
u
z
z* u
z* 0
53. A large slab consists of two materials with dielectric constants 1 and 3 divided by
a plane interface as shown in the figure. An electric field exists in this slab, which
uniformly makes an angle of 30 with the normal to the interface on the left side
of the (=1). The angle the field makes on the other side of the interface is
1. tan 1 (3)
2. sin
2 3
1 1
3. 60
4. tan 1 (1/3)
54. Given the vector A y,x,0
, the line integral .
c
Adl
, where C is a circle of
radius 5 units with its centre at the origin, (correct to the first decimal place) is
1. 172.8
2. 157.1
3. -146.3
4. 62.8
55. An electron is placed in an uniform magnetic field H
that points in the
xˆ direction. The Hamiltonian of the system is H= KS H
where k >0 is a
constant and S
is the electron spin operator.
A. The energy of the ground state of the Hamiltonian is
1. KS
2. KH
2
1
3. KH
2
1
4. 0
B. The expectation value of z S in the ground state of this Hamiltonian is
1. / 2
2. 0
3. / 2
4.
56. Positronium is an atom formed by an electron and a positron. The mass of a
positron is the same as that of an electron and its charge is equal in magnitude but
opposite in sign to that of an electron. The positronium atom is thus similar to the
hydrogen atom with the positron replacing the proton.
A. The binding energy of a positronium atom is
1. 13.6 eV
2. 6.8 eV
3. 27.2 eV
4. 3.4 eV
B. If a positronium atom makes a transition from the state with n 3 to a
state with n 2, the energy of the photon that is emitted in this transition
is closest to
1. 1.88 eV
2. 0.94 eV
3. 1.13 eV
4. 2.27 eV
57. A particle of mass m and charge q is constrained to move along a straight line
joining two other equal charges q fixed at x = a. The time period of small
oscillations is
1. am
q
a
T 0
2
2. r am
q
a
T 0
4
3. r am
q
a
T 0
4. am
q
a
T 0
2
58. A Carnot engine operates between a heat source at 500 K and a heat sink at 300
K. The temperature of the source is increased by 20K. In order that the
efficiency of the engine remain unchanged, the temperature of the sink should be
changed by
1. +20K
2. +12K
3. –12K
4. –20K
59. The following table shows the relationship between an independent quantity x, a
two measured quantities y and z.
A. In order to get a straight line graph relating y to x we should plot
1. y vs log x
2. y2 vs x
3. y vs x2
4. y2 vs log x
B Similarly, in order to get a straight line graph relating z to x, we should
plot
1. z2 vs x3
2. (z + 4)2 vs x3
3. (z – 4)2 vs x3
4. log z vs log x
60. The cross-section for the excitation of a certain atomic level A under electron
impact is 20 2 1.4 10 cm A
. The level A has lifetime s 8 2 10 and decays
10% of the time to level B and 90% of the time to level C, as shown in figure.
x 0 1 2 3 4 5
y –0.1 2.1 8.1 17.9 32.2 49.7
z –4 –3 2 2 4
3 3 4 4 5 5 4
When an electron beam of 5mA/cm 2 is passed through a vapour of these atoms at
a pressure of 66.65 dynes/cm 2 at a temperature of 27 C, the equilibrium
population per cm3 in level A is
1. 1.4 10 4 cm 3
2. 1.55 10 5 cm 3
3. 4.66 10 5cm 3
4. 3.1 1016cm 3
61. Consider the CO molecule as a diatomic rigid rotor with a bond length of 1.12Å.
The reduced mass of the system is obtained from the atomic masses of C and O.
The rotational energies are defined in terms of B (the rotational constant) and J
(the rotational quantum number). If 1 and 2 denote the frequency of the first
rotational resonance lines for the molecules 12 C16 O and 13 C18 O respectively,
their ratio 1 / 2 is approximately
1. 1.5
2. 1.1
3. 0.9
4. 1.01
62. A metal at temperature T is placed in a static uniform electric field E
. An electron
in it experiences a collision, and then, after a time t, a second collision. In the
Drude model, energy mean speed of an electron emerging from a collision does not
depend on the energy that the electron acquired from the field since the time of the
last collision. The average energy lost by the electron in the second of the two
collisions mentioned previously (note that the average is taken over all directions in
which the electron may emerge after the first collision) is equal to
1.
2
2
eEt
m
2.
2
eEt
m
3.
2
1
4 2
eEt
m
4.
2
1
4
eEt
m
63. The Fermi energy of a two-dimensional electron gas with number density n is
equal to
1.
m
n
2
2.
m
n
2
2
2
2 2/ 3
3.
m
n
2
3
2
2 2/ 3
4.
m
n
2
2
64. The binding energy of a nucleus with atomic number Z and atomic mass number
A is given by the semi-empirical mass formula
B ( Z,A) = aA - bA s 2/3
A
A Z 2 2
- d 1/ 3 1/ 2
2
A A
Z
where a = 15.8 MeV, b = 18.3 MeV, s = 23.2 MeV, d = 0.7 MeV and
= (+11.2, 0, -11.2) MeV for nuclei which are (odd-odd, odd-even, even-even).
If we consider all possible isobars of mass number 216, the most stable nuclide is
1. Pb 216
82
2. Fr 216
87
3. At 216
85
4. Rn 216
86
65. The activity of a radioactive sample is defined as N where is the decay
constant and N is the number of atoms. In an experiment, the activity of a sample
of Cr 55
24 was found to change as
After(min) 0 5 10 15 20
N(m curie) 19.2 7.13 2.65 0.99 0.37
The half life of Cr 55
24 is
1. 5.08 min
2. 3.52 min
3. 3.57 min
4. 5.16 min
Thursday, March 10, 2011
Discovery- a great leap to mankind.
The historic journey ends. Discovery finished its 27 years of service and landed at the Kennedy Space Centre. The mission delivered an extra room along with supplies and equipment, including a human-like robot, known as Robonaut 2, the first such robot ever sent into orbit. The oldest shuttle in the fleet, Discovery has cumulatively spent a year in orbit and logged many spaceflight firsts. It was the first shuttle to return to flight after the Challenger disaster in 1986 and after Columbia's disintegration while re-entering orbit.
Discovery launched the trailblazing Hubble Space Telescope, made the first US rendezvous with the Russian Mir space station, and was the first and last shuttle to rotate crews on the space station.
Discovery's next destination will be a museum where hundreds of children could watch and learn about the scientific pursuit of their forerunners.
K A Solaman
Discovery launched the trailblazing Hubble Space Telescope, made the first US rendezvous with the Russian Mir space station, and was the first and last shuttle to rotate crews on the space station.
Discovery's next destination will be a museum where hundreds of children could watch and learn about the scientific pursuit of their forerunners.
K A Solaman
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