360329
A container fitted with a piston, carrying \(1.4\;kg\) nitrogen gas, is moving at a constant speed of \(57.6\;km{\rm{/}}hr.\) The change in temperature of the nitrogen gas when the container suddenly stops is
(Take \(R = 8\;J\;mo{l^{ - 1}}\;{K^{ - 1}},\)Molecular weight of \({N_2} = 28\;g\))
[Ignore the energy loss due to friction]
360329
A container fitted with a piston, carrying \(1.4\;kg\) nitrogen gas, is moving at a constant speed of \(57.6\;km{\rm{/}}hr.\) The change in temperature of the nitrogen gas when the container suddenly stops is
(Take \(R = 8\;J\;mo{l^{ - 1}}\;{K^{ - 1}},\)Molecular weight of \({N_2} = 28\;g\))
[Ignore the energy loss due to friction]
360329
A container fitted with a piston, carrying \(1.4\;kg\) nitrogen gas, is moving at a constant speed of \(57.6\;km{\rm{/}}hr.\) The change in temperature of the nitrogen gas when the container suddenly stops is
(Take \(R = 8\;J\;mo{l^{ - 1}}\;{K^{ - 1}},\)Molecular weight of \({N_2} = 28\;g\))
[Ignore the energy loss due to friction]
360329
A container fitted with a piston, carrying \(1.4\;kg\) nitrogen gas, is moving at a constant speed of \(57.6\;km{\rm{/}}hr.\) The change in temperature of the nitrogen gas when the container suddenly stops is
(Take \(R = 8\;J\;mo{l^{ - 1}}\;{K^{ - 1}},\)Molecular weight of \({N_2} = 28\;g\))
[Ignore the energy loss due to friction]