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- As shown in the figure below, object m1 = 1.70 kg starts at an initial height h1i = 0.345 m and speed v1i = 4.00 m/s, swings downward and strikes (in an elastic collision) object m2 = 4.40 kg which is initially at rest. a)Determine the speed of m1 (in m/s) just before the collision. b) Determine the velocity (magnitude in m/s and direction) of each ball just after the collision (Assume the positive direction is toward the right. Indicate the direction with the sign of your answer.) c) Determine the height (in m) to which each ball swings after the collision (ignoring air resistance).A ball of mass 0.160 kg is dropped from rest from a height of 1.25 m. It rebounds from the floor to reach a height of 0.650 m. What impulse was given to the ball by the floor? magnitude kg · m/s direction ---Select--- upward downward9) An object of mass 2 kg has a linear momentum of 6 kg. m /s. What is this objects Kinetic energy? z kg 6 kg m/s >
- A bullet, m = 2.00 kg, traveling with a velocity of 60.0 m/s strikes and embeds itself in the bob of a ballistic pendulum, M = 8.00 kg, which swings on a frictionless axis as shown. The combined masses rise to a height h above the bob's initial position. M Determine the height h (shown) that the combined block-bullet system rises to after collision. 7.35 m 6.00 m O 1.22 m 12.5 m3. A 1.2 kg ball falls vertically from a certain height and just before hitting the ground it acquires a speed of 25 m / s. If the ball bounces with an initial speed of 10 m / s, what momentum acts on the ball during contact with the ground?7-
- A ball initially at rest is dropped from a height of 10 meters. The ball hits the ground and bounces back to an exact height of 10 meters. The collision of the ball against the ground is most likely a(n)… Group of answer choices Elastic collision Inelastic collision Perfectly Inelastic CollisionA bullet of mass m = 8.00 g is fired into a block of mass M = 210 g that is initially at rest at the edge of a table of height h = 1.00 m (see figure below). The bullet remains in the block, and after the impact the block lands d = 2.30 m from the bottom of the table. Determine the initial speed of the bullet. _______________m/sA mass m1 = 10.5 kg, with initial velocity V0 = 12.5 m/s, strikes a mass-spring system m2 = 7.25 kg, initially at rest but able to recoil. Assume the spring is massless and the surface horizontal and frictionless. See the figure below. If the collision is completely elastic, what are the final speeds V1 and V2 of m1 and m2, respectively?
- A 0.950 kg hammer is moving horizontally at 4.00 m/s when it strikes a nail and comes to rest after driving it 1.00 cm into a board.( a) Calculate the duration of the impact.____ s(b) What was the average force exerted on the nail? ______NA 1.90 g bullet, traveling at a speed of 423 m/s, strikes the wooden block of a ballistic pendulum. The block has a mass of 228 g. (a) Find the speed of the bullet/block combination immediately after the collision.m/s(b) How high does the combination rise above its initial position?mPlease explain