7. A balloon filled with of 1.0 g of hydrogen is in thermal equilibrium with air in a room. Root mean square speed of air molecules at the room temperature is 500 m/s, the average molecular mass of air molecules is 29 g/mol. If hydrogen in the balloon is considered an ideal gas; its total internal energy is closest to (a) 1813 J (c) 4223 J (b) 3021 J (d) 6042 J

College Physics
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Chapter10: Thermal Physics
Section: Chapter Questions
Problem 9WUE: Suppose 26.0 g of neon gas are stored in a tank at a temperature of 152C. (a) What is the...
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7. A balloon filled with of 1.0 g of hydrogen is in thermal equilibrium with
air in a room. Root mean square speed of air molecules at the room
temperature is 500 m/s, the average molecular mass of air molecules is
29 g/mol. If hydrogen in the balloon is considered an ideal gas; its total
internal energy is closest to
(a) 1813 J
(c) 4223 J
(b) 3021 J
(d) 6042 J
Transcribed Image Text:7. A balloon filled with of 1.0 g of hydrogen is in thermal equilibrium with air in a room. Root mean square speed of air molecules at the room temperature is 500 m/s, the average molecular mass of air molecules is 29 g/mol. If hydrogen in the balloon is considered an ideal gas; its total internal energy is closest to (a) 1813 J (c) 4223 J (b) 3021 J (d) 6042 J
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