Tutorials in Introductory Physics
Tutorials in Introductory Physics
1st Edition
ISBN: 9780130970695
Author: Peter S. Shaffer, Lillian C. McDermott
Publisher: Addison Wesley
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Chapter 27.1, Problem 2cTH
To determine

Possibility of change in pressure by considering free-body diagram of the piston.

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Part A Consider a monatomic gas of particles each with mass m. What is Vrms Express your answer in terms of T, kB, m, and other given quantities. ▶ View Available Hint(s) Vzrms Submit Part B Urmes Submit Part C Now consider the same system: a monatomic gas of particles of mass m, except in three dimensions. Find Urms, the rms speed if the gas is at an absolute temperature T Express your answer in terms of T, kB, m, and other given quantities. ▸ View Available Hint(s) 20 = [IV] ΑΣΦ ✓(2²) = Submit [5] ΑΣΦ ^ 6 Request Answer [www] What is the rms speed of molecules in air at 0°C? Air is composed mostly of N₂ molecules, so you may assume that it has molecules of average mass 28.0 x 1.661 × 10-27 kg = Express your answer in meters per second, to the nearest integer. |||| ΑΣΦ www ? [w] ? m/s V (v2), the root mean square (rms) of the x component of velocity of the gas particles if the gas is at an absolute temperature T? ? 4.65 x 10-26 kg. Activate Windo Go to Settings to act
A container with volume 1.58 L is initially evacuated. Then it is filled with 0.246 g of N₂. Assume that the pressure of the gas is low enough for the gas to obey the ideal-gas law to a high degree of accuracy. Part A If the root-mean-square speed of the gas molecules is 162 m/s, what is the pressure of the gas? Express your answer in pascals. Ε ΑΣΦ P = ? Pa
R Review I Constants Part A A container holds 1.0 g of argon at a pressure of 8.0 atm. How much heat is required to increase the temperature by 100° C at constant volume? Express your answer with the appropriate units. H HẢ Q = Value Units %3D Submit Request Answer Part B How much will the temperature increase if this amount of heat energy is transferred to the gas at constant pressure? Express your answer in kelvins. ΑΣφ K AT =
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