Physics for Scientists and Engineers
Physics for Scientists and Engineers
6th Edition
ISBN: 9781429281843
Author: Tipler
Publisher: MAC HIGHER
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Chapter 19, Problem 74P

(a)

To determine

The PV diagram.

(b)

To determine

The volume and temperature after compression.

(c)

To determine

The work done in each step.

(d)

To determine

The efficiency of the cycle.

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0O REDMI NOTE 8 100 AP 100 cc 300 cc Ex. (15): An ideal gas is taken around ABCA as shown in the above P-V diagram. The work done during a cycle is (3P, 3V) a) 2PV (b) PV (P,V) (P, 3V) (c) 1/2PV (d) Zero E Ex. (16): When a system is taken from state A to state B along the path ACB. 80 J of heat flow into the system and the system does 30 J of work.
Three moles of a diatomic ideal gas are taken through a three process thermodynamic cycle. The gas initially has a pressure of 9.00 atm with a temperature of 600 K (point A). The gas it then expanded isobarically to point B where the volume is 32.0 L. The gas is compressed via an isothermal process (point C). The gas is then expanded adiabatically back to its initial state. Compute all unknown pressures, temperatures, and volumes and organize them into a table. Find the work done going from point C to point A? What is the heat added to the system going from B to C? What is the change in internal energy going from A to B? What is the change in entropy going from A to B?
(2) Try to draw the following processes of ideal gas passing through point 1 on the given parameter p-v and T-s coordinate maps: constant pressure process (n=0), constant temperature process (n=1), constant entropy process (n=K) and constant volume process (n=∞). Mark accordingly on the diagram. Р T + 1 V S

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