
A 2.0 kg mass on a smooth horizontal surface moves with 7.0 m/s speed toward a...
a 2.0 kg mass moves along a frictionless horizontal surface at a speed of 5.0 m/s. The mass encounters a 30 degree inclined surface with a constant friction force of 1.5 N. At 1 m high (vertical) the surface levels off and is again frictionless. the mass then encounters a spring with k=10 N/m a) how far is the spring compressed after the mass comes to rest? b) how far down the inclined plane will the mass move after bouncing...
A 2.0 kg box is traveling at 5.0 m/s on a smooth horizontal surface when it collides with and sticks to a stationary 6.0 kg box. The larger box is attached to an ideal spring of force constant (spring constant) 150 N/m, as shown in the figure. Find the amplitude of the resulting oscillations of this system, the frequency of the oscillations and the period of the oscillations.
Question 28 (1 point) The horizontal surface on which the block slides is frictionless. The speed of the block before it touches the spring is 6.0 m/s. How fast is the block moving at the instant the spring has been compressed 15 cm? k= 2.0 kN/m 1 20 kg 14 m/s 4.4 m/s 3.7 m/s 4.9 m/s 5.4 m/s
A 30.0-kg mass is traveling to the right with a speed of 2.20 m/s on a smooth horizontal surface when it collides with and sticks to a second 30.0-kg mass that is initially at rest but is attached to a light spring with force constant 190 N/m. The other end of the spring is fixed to a wall to the right of the second mass. A. Find the frequency of the subsequent oscillations. B. Find the amplitude of the subsequent...
A 2.0 kg box is traveling at 5.0 m/s on a smooth horizontal surface when it collides with and sticks to a stationary 6.0 kg box. The larger box is attached to an ideal spring of force constant (spring constant) 150 N/m. Write down the equation for the horizontal position x of the boxes as a function of time t, using the cosine function. Note: you must show all of your calculation for each numbers in the position equation. Additionally, please take...
17) A 2.0 kg box is traveling at 5.0 m/s on a smooth horizontal surface when it collides with and sticks to a stationary 6.0 kg box. The larger box is attached to a massless spring described by Hooke's law with spring constant 150 N/m, as shown in the figure. Find (A) the amplitude of the resulting oscillations of this system, (B) the frequency of the oscillations, and (C) the period of the oscillations. 5.0 m/s - V. , DEV.Oyiz,...
a 15kg block is released from rest on the smooth, horizontal
surface and moves to the right. The spring has a spring constant k
= 12N/m and is initially compressed 1.2 m, Find the intial elastic
energy stored in the spring, the maximum force of the spring on the
block and the maximum a speed of the block.
beu
A leggs of mass 12g slides along a frictionaless surface with an initial speed of 2.6 m/s . If the leggs slides up a ramp and comes to rest, at what height does the leggs come to rest? If the leggo slides into an uncompressed spring (k=6.2 kg/s^2) on a smooth horizontal surface, wnat is the maximum compression of the pring by the leggo? If the leggo sldes into an uncopressed spring (6.2 kg/s^2) on a smooth horizontal surface, what...
A 2.9 kg block slides with a speed of 1.1 m/s on a frictionless, horizontal surface until it encounters a spring. (a) If the block compresses the spring 5.2 cm before coming to rest, what is the force constant of the spring? (b) What initial speed should the block have if it is to compress the spring by 1.3 cm?
A 2.0-Kg mass and a 3.0-Kg mass are on a horizontal friction-less surface, connected by a massless spring with spring constant k = 140N/m. A 15-N force us applied to the larger mass. 1. How much does the spring stretch from its equilibrium length?