JEE Exam  >  JEE Questions  >  An ideal gas is taken from the same initial p... Start Learning for Free
An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 < t1.?="" />
Explore Courses for JEE exam
An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5
Question Description
An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 .
Solutions for An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 in English & in Hindi are available as part of our courses for JEE. Download more important topics, notes, lectures and mock test series for JEE Exam by signing up for free.
Here you can find the meaning of An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 defined & explained in the simplest way possible. Besides giving the explanation of An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 , a detailed solution for An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 has been provided alongside types of An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 theory, EduRev gives you an ample number of questions to practice An ideal gas is taken from the same initial pressure P_(1) to the same final pressure P_(2) by three different processes. point 1 corresponds to a reversible adiabatic and point 2 corresponds to a single stage adiabatic then ) Point 3 may be a two stage adiabatic. b) the average K.E. of the gas is maximum at point 1 c) Work done by surrounding in reaching point number '3' will be maximum d) If point4 and point 5 lie along a reversible isotherm then T5 tests, examples and also practice JEE tests.
Explore Courses for JEE exam

Top Courses for JEE

Explore Courses
Signup for Free!
Signup to see your scores go up within 7 days! Learn & Practice with 1000+ FREE Notes, Videos & Tests.
10M+ students study on EduRev