269496 Two particles of equal masses have velocities \(\overrightarrow{\mathrm{v}}_{1}=4 \hat{\mathrm{i}}\) and \(\overrightarrow{\mathrm{v}}_{2}=4 \hat{\mathrm{j}}\). First particle has an acceleration \(\overrightarrow{\mathrm{a}}_{1}=(5 \hat{i}+5 \hat{j}) \mathbf{m s}^{-2}\) while the acceleration of the other particle is zero. The centre of mass of the two particles moves in a path of
269553 Two particles of equal mass have velocities \(\vec{V}_{1}=8 \hat{i}\) and \(\vec{V}_{2}=8 \hat{j}\). First particle has an acceleration \(\vec{a}_{1}=(5 \hat{i}+5 \hat{j}) \mathrm{ms}^{-2}\) while the acceleration of the other particle is zero.The centre of mass of the two particles moves is a path of
269496 Two particles of equal masses have velocities \(\overrightarrow{\mathrm{v}}_{1}=4 \hat{\mathrm{i}}\) and \(\overrightarrow{\mathrm{v}}_{2}=4 \hat{\mathrm{j}}\). First particle has an acceleration \(\overrightarrow{\mathrm{a}}_{1}=(5 \hat{i}+5 \hat{j}) \mathbf{m s}^{-2}\) while the acceleration of the other particle is zero. The centre of mass of the two particles moves in a path of
269553 Two particles of equal mass have velocities \(\vec{V}_{1}=8 \hat{i}\) and \(\vec{V}_{2}=8 \hat{j}\). First particle has an acceleration \(\vec{a}_{1}=(5 \hat{i}+5 \hat{j}) \mathrm{ms}^{-2}\) while the acceleration of the other particle is zero.The centre of mass of the two particles moves is a path of
269496 Two particles of equal masses have velocities \(\overrightarrow{\mathrm{v}}_{1}=4 \hat{\mathrm{i}}\) and \(\overrightarrow{\mathrm{v}}_{2}=4 \hat{\mathrm{j}}\). First particle has an acceleration \(\overrightarrow{\mathrm{a}}_{1}=(5 \hat{i}+5 \hat{j}) \mathbf{m s}^{-2}\) while the acceleration of the other particle is zero. The centre of mass of the two particles moves in a path of
269553 Two particles of equal mass have velocities \(\vec{V}_{1}=8 \hat{i}\) and \(\vec{V}_{2}=8 \hat{j}\). First particle has an acceleration \(\vec{a}_{1}=(5 \hat{i}+5 \hat{j}) \mathrm{ms}^{-2}\) while the acceleration of the other particle is zero.The centre of mass of the two particles moves is a path of
269496 Two particles of equal masses have velocities \(\overrightarrow{\mathrm{v}}_{1}=4 \hat{\mathrm{i}}\) and \(\overrightarrow{\mathrm{v}}_{2}=4 \hat{\mathrm{j}}\). First particle has an acceleration \(\overrightarrow{\mathrm{a}}_{1}=(5 \hat{i}+5 \hat{j}) \mathbf{m s}^{-2}\) while the acceleration of the other particle is zero. The centre of mass of the two particles moves in a path of
269553 Two particles of equal mass have velocities \(\vec{V}_{1}=8 \hat{i}\) and \(\vec{V}_{2}=8 \hat{j}\). First particle has an acceleration \(\vec{a}_{1}=(5 \hat{i}+5 \hat{j}) \mathrm{ms}^{-2}\) while the acceleration of the other particle is zero.The centre of mass of the two particles moves is a path of
269496 Two particles of equal masses have velocities \(\overrightarrow{\mathrm{v}}_{1}=4 \hat{\mathrm{i}}\) and \(\overrightarrow{\mathrm{v}}_{2}=4 \hat{\mathrm{j}}\). First particle has an acceleration \(\overrightarrow{\mathrm{a}}_{1}=(5 \hat{i}+5 \hat{j}) \mathbf{m s}^{-2}\) while the acceleration of the other particle is zero. The centre of mass of the two particles moves in a path of
269553 Two particles of equal mass have velocities \(\vec{V}_{1}=8 \hat{i}\) and \(\vec{V}_{2}=8 \hat{j}\). First particle has an acceleration \(\vec{a}_{1}=(5 \hat{i}+5 \hat{j}) \mathrm{ms}^{-2}\) while the acceleration of the other particle is zero.The centre of mass of the two particles moves is a path of