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A container of volume 4V(0) made of a pe...

A container of volume `4V_(0)` made of a perfectly non`-` conducting material is divided into two equal parts by a fixed rigid wall whose lower half is non`-` conducting and upper half is purely conducting. The right side of the wall is divided into equal parts `(` initially `0` by means of a massless non`-` conducting piston free to move as shown . Section`A` constains `2 mol` of a gas while the section `B` and `C` contain ` 1 mol` each of the same gas `( gamma = 15. )` at pressure `P_(0)` . The heater in left part is switched on till the final pressure in section `C` becomes `125//27 P_(0)`. Calculate

Final temperature in part `A`.

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A container of volume 4V_(0) made of a perfectly non - conducting material is divided into two equal parts by a fixed rigid wall whose lower half is non - conducting and upper half is purely conducting. The right side of the wall is divided into equal parts ( initially 0 by means of a massless non - conducting piston free to move as shown . Section A constains 2 mol of a gas while the section B and C contain 1 mol each of the same gas ( gamma = 15. ) at pressure P_(0) . The heater in left part is switched on till the final pressure in section C becomes 125//27 P_(0) . Calculate Find the temprature in part C

A container of volume 4V_(0) made of a perfectly non - conducting material is divided into two equal parts by a fixed rigid wall whose lower half is non - conducting and upper half is purely conducting. The right side of the wall is divided into equal parts ( initially 0 by means of a massless non - conducting piston free to move as shown . Section A constains 2 mol of a gas while the section B and C contain 1 mol each of the same gas ( gamma = 15. ) at pressure P_(0) . The heater in left part is switched on till the final pressure in section C becomes 125//27 P_(0) . Calculate The heat supplied by the heater.

A container of volume 4V_(0) made of a perfectly non - conducting material is divided into two equal parts by a fixed rigid wall whose lower half is non - conducting and upper half is purely conducting. The right side of the wall is divided into equal parts ( initially 0 by means of a massless non - conducting piston free to move as shown . Section A constains 2 mol of a gas while the section B and C contain 1 mol each of the same gas ( gamma = 15. ) at pressure P_(0) . The heater in left part is switched on till the final pressure in section C becomes 125//27 P_(0) . Calculate The heat supplied by the heater.

A container of volume 4V_(0) made of a perfectly non - conducting material is divided into two equal parts by a fixed rigid wall whose lower half is non - conducting and upper half is purely conducting. The right side of the wall is divided into equal parts ( initially 0 by means of a massless non - conducting piston free to move as shown . Section A constains 2 mol of a gas while the section B and C contain 1 mol each of the same gas ( gamma = 15. ) at pressure P_(0) . The heater in left part is switched on till the final pressure in section C becomes 125//27 P_(0) . Calculate The heat supplied by the heater.

In which of the following cell wall is divided in two half parts :-

Which of the following is non-conducting ?