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50 eal of heat should be supplied to tak...

50 eal of heat should be supplied to take a system from the state A to the state B through the path ABC as shown in ,find the quantity of heat to be supplied to take it from A to B via ADB.

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50 cal of heat should be supplied to take a system from the state A to the state B through the path ABC as shown in fig, Find the quantity of heat to be supplied to take it from A to B via ADB.

50 cal of heat should be supplied to take a system from the state A to the state B through the path ABC as shown in fig, Find the quantity of heat to be supplied to take it from A to B via ADB.

50 cal of heat should be supplied to take a system from the state A to the state B through the path ACB as shown in Figure. The quantity of heat to be supplied to take it from A to B via ADB.

The given figure shows a change of state A to state C by two paths ABC and AC for an ideal gas. Calculate. a. The path along which work done is least. b. The internal energy at C if the internal energy of gas at A is 10J and amount of heat supplied to change its state to C through the path AC is 200J . c. The amount of heat supplied to the gas to go from A to B , if internal energy of gas at state B is 10J .

The given figure shown a change of state A to state C by two paths ABC and AC for an ideal gas. Calculate the : (a) Path along which work done is least. (b) Internal energy at C if the internal energy of gas at A is 10 J and amount of heat supplied to change its state to C through the path AC is 200 J . (c) Amount of heat supplied ot the gas to go from A to B, if internal energy of gas at state B is 10 J .

The given figure shown a change of state A to state C by two paths ABC and AC for an ideal gas. Calculate the : (a) Path along which work done is least. (b) Internal energy at C if the internal energy of gas at A is 10 J and amount of heat supplied to change its state to C through the path AC is 200 J . (c) Amount of heat supplied ot the gas to go from A to B, if internal energy of gas at state B is 10 J .

An ideal system can be brought from stage A to B through four paths as shown in the figure. The heat energy given to the system is minimum in :

In the given graph, an ideal gas changes its state from A to C by two paths ABC and AC. (a) Find the path along which work done is less. (b) The internal energy of gas at A is 10J and the amount of heat supplied in path AC is 200J. Calculate the internal energy of gas at C. (c) The internal energy of gas at state B is 20J. Find the amount of heat supplied to the gas to go from A to B.