141167
During a one dimensional motion, a particle of mass ' \(m\) ' starts from rest at \(x=0, t=0\) under the influence of a time dependent force \(F(t)=\) \(\mathrm{ma}_{0} \cos (\mathrm{wt})\), where \(\mathrm{a}_{\mathbf{0}}\) and \(\mathrm{w}\) are two constants.
The average velocity of the particle at \(t=\frac{\pi}{w}\) is
141167
During a one dimensional motion, a particle of mass ' \(m\) ' starts from rest at \(x=0, t=0\) under the influence of a time dependent force \(F(t)=\) \(\mathrm{ma}_{0} \cos (\mathrm{wt})\), where \(\mathrm{a}_{\mathbf{0}}\) and \(\mathrm{w}\) are two constants.
The average velocity of the particle at \(t=\frac{\pi}{w}\) is
141167
During a one dimensional motion, a particle of mass ' \(m\) ' starts from rest at \(x=0, t=0\) under the influence of a time dependent force \(F(t)=\) \(\mathrm{ma}_{0} \cos (\mathrm{wt})\), where \(\mathrm{a}_{\mathbf{0}}\) and \(\mathrm{w}\) are two constants.
The average velocity of the particle at \(t=\frac{\pi}{w}\) is
141167
During a one dimensional motion, a particle of mass ' \(m\) ' starts from rest at \(x=0, t=0\) under the influence of a time dependent force \(F(t)=\) \(\mathrm{ma}_{0} \cos (\mathrm{wt})\), where \(\mathrm{a}_{\mathbf{0}}\) and \(\mathrm{w}\) are two constants.
The average velocity of the particle at \(t=\frac{\pi}{w}\) is
141167
During a one dimensional motion, a particle of mass ' \(m\) ' starts from rest at \(x=0, t=0\) under the influence of a time dependent force \(F(t)=\) \(\mathrm{ma}_{0} \cos (\mathrm{wt})\), where \(\mathrm{a}_{\mathbf{0}}\) and \(\mathrm{w}\) are two constants.
The average velocity of the particle at \(t=\frac{\pi}{w}\) is