355851
A block of mass \(m\) moving with a velocity \(v_{0}\) on a smooth horizontal surface strikes and compresses a spring of stiffiness \(k\) till mass comes to rest as shown in the figure. This phenomenon is observed by two observers:
\(A\): Standing on the horizontal surface
\(B\): Standing on the block W.r.to the observer \(A\), the work done by spring force is:
355855
One end of a spring of force constant \(k_{1}\) is attached to the ceiling of an elevator. A block of mass 1.5 \(kg\) is attached to the other end. Another spring of force constant \(k_{2}\) is attached to the bottom of the mass and to the floor of the elevator as shown in figure. At equilibrium, the deformation in both the springs is equal and is 40 \(cm\) . If the elevator moves with constant acceleration upward,the additional deformation in both the spring is 8 \(cm\) . Find the elevator's acceleration \((g = 10\,\,m{s^{ - 2}})\).
355851
A block of mass \(m\) moving with a velocity \(v_{0}\) on a smooth horizontal surface strikes and compresses a spring of stiffiness \(k\) till mass comes to rest as shown in the figure. This phenomenon is observed by two observers:
\(A\): Standing on the horizontal surface
\(B\): Standing on the block W.r.to the observer \(A\), the work done by spring force is:
355855
One end of a spring of force constant \(k_{1}\) is attached to the ceiling of an elevator. A block of mass 1.5 \(kg\) is attached to the other end. Another spring of force constant \(k_{2}\) is attached to the bottom of the mass and to the floor of the elevator as shown in figure. At equilibrium, the deformation in both the springs is equal and is 40 \(cm\) . If the elevator moves with constant acceleration upward,the additional deformation in both the spring is 8 \(cm\) . Find the elevator's acceleration \((g = 10\,\,m{s^{ - 2}})\).
355851
A block of mass \(m\) moving with a velocity \(v_{0}\) on a smooth horizontal surface strikes and compresses a spring of stiffiness \(k\) till mass comes to rest as shown in the figure. This phenomenon is observed by two observers:
\(A\): Standing on the horizontal surface
\(B\): Standing on the block W.r.to the observer \(A\), the work done by spring force is:
355855
One end of a spring of force constant \(k_{1}\) is attached to the ceiling of an elevator. A block of mass 1.5 \(kg\) is attached to the other end. Another spring of force constant \(k_{2}\) is attached to the bottom of the mass and to the floor of the elevator as shown in figure. At equilibrium, the deformation in both the springs is equal and is 40 \(cm\) . If the elevator moves with constant acceleration upward,the additional deformation in both the spring is 8 \(cm\) . Find the elevator's acceleration \((g = 10\,\,m{s^{ - 2}})\).
355851
A block of mass \(m\) moving with a velocity \(v_{0}\) on a smooth horizontal surface strikes and compresses a spring of stiffiness \(k\) till mass comes to rest as shown in the figure. This phenomenon is observed by two observers:
\(A\): Standing on the horizontal surface
\(B\): Standing on the block W.r.to the observer \(A\), the work done by spring force is:
355855
One end of a spring of force constant \(k_{1}\) is attached to the ceiling of an elevator. A block of mass 1.5 \(kg\) is attached to the other end. Another spring of force constant \(k_{2}\) is attached to the bottom of the mass and to the floor of the elevator as shown in figure. At equilibrium, the deformation in both the springs is equal and is 40 \(cm\) . If the elevator moves with constant acceleration upward,the additional deformation in both the spring is 8 \(cm\) . Find the elevator's acceleration \((g = 10\,\,m{s^{ - 2}})\).
355851
A block of mass \(m\) moving with a velocity \(v_{0}\) on a smooth horizontal surface strikes and compresses a spring of stiffiness \(k\) till mass comes to rest as shown in the figure. This phenomenon is observed by two observers:
\(A\): Standing on the horizontal surface
\(B\): Standing on the block W.r.to the observer \(A\), the work done by spring force is:
355855
One end of a spring of force constant \(k_{1}\) is attached to the ceiling of an elevator. A block of mass 1.5 \(kg\) is attached to the other end. Another spring of force constant \(k_{2}\) is attached to the bottom of the mass and to the floor of the elevator as shown in figure. At equilibrium, the deformation in both the springs is equal and is 40 \(cm\) . If the elevator moves with constant acceleration upward,the additional deformation in both the spring is 8 \(cm\) . Find the elevator's acceleration \((g = 10\,\,m{s^{ - 2}})\).