149790
A disc rolls down a smooth inclined plane without slipping. An inclined plane make an angle of \(60^{\circ}\) with the vertical. The linear acceleration of the disc along the inclined plane is
\(\left(g=\right.\) acceleration due to gravity, \(\sin 30^{\circ}=\cos\) \(60^{\circ}=\frac{1}{2}, \sin 60^{\circ}=\cos 30^{\circ}=\frac{\sqrt{3}}{2}\) )
149791 A horizontal circular platform of mass \(100 \mathrm{~kg}\) is rotating at 5 r.p.m. about vertical axis passing through its centre. A child of mass 20 \(\mathrm{kg}\) is standing on the edge of platform. If the child comes to the centre of platform then frequency of rotation will become
149790
A disc rolls down a smooth inclined plane without slipping. An inclined plane make an angle of \(60^{\circ}\) with the vertical. The linear acceleration of the disc along the inclined plane is
\(\left(g=\right.\) acceleration due to gravity, \(\sin 30^{\circ}=\cos\) \(60^{\circ}=\frac{1}{2}, \sin 60^{\circ}=\cos 30^{\circ}=\frac{\sqrt{3}}{2}\) )
149791 A horizontal circular platform of mass \(100 \mathrm{~kg}\) is rotating at 5 r.p.m. about vertical axis passing through its centre. A child of mass 20 \(\mathrm{kg}\) is standing on the edge of platform. If the child comes to the centre of platform then frequency of rotation will become
149790
A disc rolls down a smooth inclined plane without slipping. An inclined plane make an angle of \(60^{\circ}\) with the vertical. The linear acceleration of the disc along the inclined plane is
\(\left(g=\right.\) acceleration due to gravity, \(\sin 30^{\circ}=\cos\) \(60^{\circ}=\frac{1}{2}, \sin 60^{\circ}=\cos 30^{\circ}=\frac{\sqrt{3}}{2}\) )
149791 A horizontal circular platform of mass \(100 \mathrm{~kg}\) is rotating at 5 r.p.m. about vertical axis passing through its centre. A child of mass 20 \(\mathrm{kg}\) is standing on the edge of platform. If the child comes to the centre of platform then frequency of rotation will become
149790
A disc rolls down a smooth inclined plane without slipping. An inclined plane make an angle of \(60^{\circ}\) with the vertical. The linear acceleration of the disc along the inclined plane is
\(\left(g=\right.\) acceleration due to gravity, \(\sin 30^{\circ}=\cos\) \(60^{\circ}=\frac{1}{2}, \sin 60^{\circ}=\cos 30^{\circ}=\frac{\sqrt{3}}{2}\) )
149791 A horizontal circular platform of mass \(100 \mathrm{~kg}\) is rotating at 5 r.p.m. about vertical axis passing through its centre. A child of mass 20 \(\mathrm{kg}\) is standing on the edge of platform. If the child comes to the centre of platform then frequency of rotation will become
149790
A disc rolls down a smooth inclined plane without slipping. An inclined plane make an angle of \(60^{\circ}\) with the vertical. The linear acceleration of the disc along the inclined plane is
\(\left(g=\right.\) acceleration due to gravity, \(\sin 30^{\circ}=\cos\) \(60^{\circ}=\frac{1}{2}, \sin 60^{\circ}=\cos 30^{\circ}=\frac{\sqrt{3}}{2}\) )
149791 A horizontal circular platform of mass \(100 \mathrm{~kg}\) is rotating at 5 r.p.m. about vertical axis passing through its centre. A child of mass 20 \(\mathrm{kg}\) is standing on the edge of platform. If the child comes to the centre of platform then frequency of rotation will become