Back to Thermodynamics & KTGA soft plastic bottle, filled with water of density 1 gm/cc, carries an inverted glass test-tube with some air (ideal gas) trapped as shown in the figure. The test-tube has a mass of 5 gm, and it is made of a thick glass of density 2.5 gm/cc. Initially the bottle is sealed at atmosphere pressure p
0
= 10
5
Pa so that the volume of the trapped air is v
0
= 3.3 cc. When the bottle is squeezed from outside at constant temperature, the pressure inside rises and the volume of the trapped air reduces. It is found that the test tube begins to sink at pressure p
0
+ \Deltap without changing its orientation. At this pressure, the volume of the trapped air is v
0
- \Deltav. Let \Deltav = X cc and \Deltap = Y \times 10
3
Pa.
The value of X is _______________.
Class 11 • Physics • Chapter-11
Thermodynamics & KTG
Question 1 of 1084
1MediumInteger TypeJEE Advanced2021
A soft plastic bottle, filled with water of density 1 gm/cc, carries an inverted glass test-tube with some air (ideal gas) trapped as shown in the figure. The test-tube has a mass of 5 gm, and it is made of a thick glass of density 2.5 gm/cc. Initially the bottle is sealed at atmosphere pressure p
0
= 10
5
Pa so that the volume of the trapped air is v
0
= 3.3 cc. When the bottle is squeezed from outside at constant temperature, the pressure inside rises and the volume of the trapped air reduces. It is found that the test tube begins to sink at pressure p
0
+ \Deltap without changing its orientation. At this pressure, the volume of the trapped air is v
0
- \Deltav. Let \Deltav = X cc and \Deltap = Y \times 10
3
Pa.
The value of X is _______________.

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