1
AIPMT 2012 Prelims
MCQ (Single Correct Answer)
+4
-1
One mole of an ideal gas goes from an initial state A to final state B via two processes : It first undergoes isothermal expansion from volume V to 3V and then its volume is reduced from 3V to V at constant pressure. The correct P-V diagram representing the two process is
A
AIPMT 2012 Prelims Physics - Heat and Thermodynamics Question 52 English Option 1
B
AIPMT 2012 Prelims Physics - Heat and Thermodynamics Question 52 English Option 2
C
AIPMT 2012 Prelims Physics - Heat and Thermodynamics Question 52 English Option 3
D
AIPMT 2012 Prelims Physics - Heat and Thermodynamics Question 52 English Option 4
2
AIPMT 2012 Prelims
MCQ (Single Correct Answer)
+4
-1
A thermodynamic system is taken through the cycle ABCD as shown in figure. Heat rejected by the gas during the cycle is

AIPMT 2012 Prelims Physics - Heat and Thermodynamics Question 28 English
A
2PV
B
4PV
C
$${1 \over 2}$$ PV
D
PV
3
AIPMT 2012 Prelims
MCQ (Single Correct Answer)
+4
-1
When a string is divided into three segments of length $$l$$1, $$l$$2 and $$l$$3 the fundamental frequencies of these three segments are $${\upsilon _1},{\upsilon _2}$$ and $${\upsilon _3}$$ respectively. The original fundamental frequency ($$v$$) of the string is
A
$$\sqrt v = \sqrt {{v_1}} + \sqrt {{v_2}} + \sqrt {{v_3}} $$
B
$$v = {v_1} + {v_2} + {v_3}$$
C
$${1 \over v} = {1 \over {{v_1}}} + {1 \over {{v_2}}} + {1 \over {{v_3}}}$$
D
$${1 \over {\sqrt v }} = {1 \over {\sqrt {{v_1}} }} + {1 \over {\sqrt {{v_2}} }} + {1 \over {\sqrt {{v_3}} }}$$
4
AIPMT 2012 Prelims
MCQ (Single Correct Answer)
+4
-1
Two sources of sound placed close to each other, are emitting progressive waves given by
y1 = 4sin600$$\pi $$t and y2 = 5sin608$$\pi $$t
An observer located near these two sources of sound will hear
A
4 beats per second with intensity ratio 25 : 16 between waxing and waning.
B
8 beats per second with intensity ratio 25 : 16 between waxing and waning.
C
8 beats per second with intensity ratio 81 : 1 between waxing and warning.
D
4 beats per second with intensity ratio 81 : 1 between waxing and waning.
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