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NEET and AIPMT Solutions – Thermodynamics & Kinetic Theory of Gases – 2013 to 2017
Q01 – NEET 2013 – 00:08 – 03:08
Q02 – NEET 2013 – 03:09 – 04:58
Q03 – NEET 2013 – 04:59 – 09:01
Q04 – NEET 2013 – 09:02 – 12:55
Q05 – NEET 2013 – 12:56 – 17:05
Q06 – AIPMT 2014 – 17:06 – 22:22
Q07 – AIPMT 2014 – 22:23 – 27:01
Q08 – AIPMT 2014 – 27:02 – 28:43
Q09 – AIPMT 1 2015 – 28:44 – 31:24
Q10 – AIPMT 1 2015 – 31:25 – 36:42
Q11 – AIPMT 1 2015 – 36:43 – 44:08
Q12 – AIPMT 1 2015 – 44:09 – 49:59
Q13 – AIPMT 2 2015 – 50:00 – 52:57
Q14 – AIPMT 2 2015 – 52:58 – 56:38
Q15 – AIPMT 2 2015 – 56:39 – 01:00:51
Q16 – NEET 1 2016 – 01:00:52 – 01:05:16
Q17 – NEET 1 2016 – 01:05:17 – 01:10:45
Q18 – NEET 1 2016 – 01:10:46 – 01:13:51
Q19 – NEET 2 2016 – 01:13:52 – 01:19:33
Q20 – NEET 2 2016 – 01:19:34 – 01:23:53
Q22 – NEET 2 2016 – 01:23:54 – 01:26:25
Q22 – NEET 2017 – 01:26:26 – 01:29:43
Q23 – NEET 2017 – 01:29:44 – 01:33:11
Q24 – NEET 2017 – 01:33:12 – 01:35:43
Q01 – NEET 2013 – In the given (V – T) diagram, what is the relation between pressure P1 and P2?
Q02 – NEET 2013 – The molar specific heats of an ideal gas at constant pressure and volume are denoted by CP and CV, respectively. If ?=?_?/?_? and R is the universal gas constant, then CV is equal to :
Q03 – NEET 2013 – During an adiabatic process, the pressure of a gas is found to be proportional to the cube of its temperature. The ratio of ?_?/?_? for the gas is:
Q04 – NEET 2013 – The amount of heat energy required to raise the temperature of 1 g of Helium at NTP, from T1 K to T2 K is:
Q05 – NEET 2013 – A gas is taken through the cycle A→B→C→A, as shown, What is the net work done by the gas?
Q06 – AIPMT 2014 – A monoatomic gas at a pressure P, having a volume V expands isothermally to a volume 2V and then adiabatically to a volume 16V. The final pressure of the gas is: (take ? = 5/3)
Q07 – AIPMT 2014 – A thermodynamic system undergoes cyclic process ABCDA as shown in figure. The work done by the system in the cycle is:
Q08 – AIPMT 2014 – The mean free path of molecules of a gas, (radius ‘r’) is inversely proportional to:
Q09 – AIPMT 1 2015 – The ratio of the specific heats ?_?/?_? =? in terms of degrees of freedom (n) is given by:
Q10 – AIPMT 1 2015 – One mole of an ideal diatomic gas undergoes a transition from A to B along a path AB as shown in the figure, The change in internal energy of the gas during the transition is :
Q11 – AIPMT 1 2015 – Figure below shows two paths that may be taken by a gas to go from a state A to a state C. In process AB, 400 J of heat is added to the system and in process BC, 100 J of heat is added to the system. The heat absorbed by the system in the process AC will be:
Q12 – AIPMT 1 2015 – A Carnot engine, having an efficiency of ?=1/10 as heat engine, is used as a refrigerator. If the work done on the system is 10 J, the amount of energy absorbed from the reservoir at lower temperature is
Q13 – AIPMT 2 2015 – Two vessels separately contain two ideal gases A and B at the same temperature, the pressure of A being twice that of B. Under such conditions, the …
Q14 – AIPMT 2 2015 – An ideal gas is compressed to half its initial volume by means of several processes. Which …
Q15 – AIPMT 2 2015 – The coefficient of performance of a refrigerator is 5. If the temperature inside freezer is -20°C, the …
Q16 – NEET 1 2016 – A gas is compressed isothermally to half its initial volume. The same gas is compressed separately …
Q17 – NEET 1 2016 – A refrigerator works between 4°C and 30°C. It is required to remove 600 calories of heat every second in order to keep the temperature of the refrigerated …
Q18 – NEET 1 2016 – The molecules of a given mass of a gas have r.m.s. velocity of 200 ms–1 at 27°C and 1.0 × 105 Nm–2 pressure. When the …
Q19 – NEET 2 2016 – One mole of an ideal monatomic gas undergoes a process described by the equation PV3 = constant…
Q20 – NEET 2 2016 – The temperature inside a refrigerator is t2ºC and the room temperature is t1ºC. The amount of heat delivered to the room for each …
Q21 – NEET 2 2016 – A given sample of an ideal gas occupies a volume V at a pressure P and absolute temperature T. The mass of each molecule of the gas ….
Q22 – NEET 2017 – Thermodynamic processes are indicated in the following diagram:
Q23 – NEET 2017 – A carnot engine having an efficiency of 1/10 as heat engine, is used as a refrigerator. If the work done …
Q24 – NEET 2017 – A gas mixture consists of 2 moles of O2 and 4 moles of Ar at temperature T. Neglecting all vibrational modes, ….
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Coachengg can u plz make a video on revision of each chapers.
u are great sir thanksss
Sir can I solve this because I am jee main aspirents
Bahot shukriya
???
Thanks a ton sir!
thanks sir ?????
Thank u so much sir……??????
Thank u sir !!! This is really of great help
sir mains ki series start kijiye
Sir please make video on goc
Thank u sir ….
Sir make video on numerical of system particles and rotational motion in ncert physics
Sir electrostatic bhi upload koria
Sir chemistry ka video kab upload hoga
Please for JEE
Sir its very heplful. The way You explain is just too nice. It would be a great help if add the vedios of current electricity too.THANK YOU
sir chem ka ncert solution and hc verma also
I am always waiting for your videos
Sir jee mains is closing pls put imp problems on mains ktg and thermodynamics
sir some problems are of level of jee but some are not that level so sir please upload jee previous years papers. sir you are only thinking about neet students not about jee students. sir your explanation is very nice .by seeing that i am preparing so sir please upload jee previous papers