For the system shown in the figure
For the system shown in the figure, the cylinder on the left at L has a mass of 600 kg and a cross sectional area of 800 cm ^ 2 . The piston on the right, at S, has cross sectional area 25cm 2 and negligible weight. If the apparatus is filled with oil. (ρ=0.75 gm/cm ^3 ) Find the force F required to hold the system in equilibrium.
08
Oct
For the system shown in the figure, the cylinder on the left at L has a mass of 600 kg and a cross sectional area of 800 cm ^ 2 . The piston on the right, at S, has cross sectional area 25cm 2 and negligible weight. If the apparatus is filled with oil. (ρ=0.75 [...]
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at S ,
For the system shown in the figure ,
has cross sectional area 25cm 2 and negligible weight. If the apparatus is filled with oil. (ρ=0.75 gm/cm ^3 ) Find the force F required to hold the system in equilibrium. ,
the cylinder on the left at L has a mass of 600 kg and a cross sectional area of 800 cm ^ 2 . The piston on the right ,
For the system shown in the figure, a small block of mass m and smooth irregular shaped block of mass M, both free to move are placed on a smooth horizontal plane. The minimum velocity v imparted to block so that it will overcome the highest point of M is
21
Sep
For the system shown in the figure, a small block of mass m and smooth irregular shaped block of mass M, both free to move are placed on a smooth horizontal plane. The minimum velocity v imparted to block so that it will overcome the highest point of M is a small block of mass [...]