(a) Repeat Exercise 31.2, and convert the energy to joules or calories. (b) If all of this energy is converted to thermal energy in the gas, what is its temperature increase, assuming 50.0 cm3 of ideal gas at 0.250-atm pressure? (The small answer is consistent with the fact that the energy is large on a quantum mechanical scale but small on a macroscopic scale.) Excercise 31.2 A particle of ionizing radiation creates 4000 ion pairs inthe gas inside a Geiger tube as it passes through. Whatminimum energy was deposited, if 30.0 V is requiredto create each ion pair?
(a) Repeat Exercise 31.2, and convert the energy to joules or calories. (b) If all of this energy is converted to thermal energy in the gas, what is its temperature increase, assuming 50.0 cm3 of ideal gas at 0.250-atm pressure? (The small answer is consistent with the fact that the energy is large on a quantum mechanical scale but small on a macroscopic scale.) Excercise 31.2 A particle of ionizing radiation creates 4000 ion pairs inthe gas inside a Geiger tube as it passes through. Whatminimum energy was deposited, if 30.0 V is requiredto create each ion pair?
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(a) Repeat Exercise 31.2, and convert the energy to joules or calories. (b) If all of this energy is converted to thermal energy in the gas, what is its temperature increase, assuming 50.0 cm3 of ideal gas at 0.250-atm pressure? (The small answer is consistent with the fact that the energy is large on a
Excercise 31.2
A particle of ionizing radiation creates 4000 ion pairs in
the gas inside a Geiger tube as it passes through. What
minimum energy was deposited, if 30.0 V is required
to create each ion pair?
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