The figure below shows a state of collision between two bodies of the same mass, one of which is a state of rest. What is the speed and angle of the scattering of the second body after the collision? 5.00 m/s E m Before the collision 4.33 m/s 30° 0 After the collision. 403030
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- A car (of mass 1500 kg) and a small truck (of mass 2000 kg) collide suddenly at right angles at an icy intersection. The car was originally traveling eastward at 20.0 m/s and the truck was traveling northward at 20.0 m/s just before the collision took place. What is the speed of the combined wreck just after the collision if the vehicles become enmeshed? m/s What is the direction of the wreck (with respect to East)? 0A 4.0 kg red ball is moving with velocity 7.0 m/s to the right and a 5.0 kg blue ball is moving with velocity 2.5 m/s to the left. The two balls hit head-on and afterwards the two balls stick together. a) What is the final velocity (magnitude and direction) of the combined system after the collision? (must include a properly labeled sketch to get full credit) b) What type of collision is this an example of? k)What impulse is applied to the red ball during the collision?A bullet with mass m1 = 3 g is fired into a wooden block of mass m2 = 2 kg, that hangs like a pendulum. The bullet is embedded in the block (complete inelastic collision). The block with the bullet embedded in it goes h = 40 cm high after collision. Determine the speed of the bullet before it hit the block. a. 1570 m/s c. 1670 m/s b. 1870 m/s d. 1770 m/s
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- A 2.0-g particle moving at 5.8 m/s makes a perfectly elastic head-on collision with a resting 1.0-g object. (a) Find the speed of each particle after the collision. 2.0 g particle 1.93 m/s 1.0 g particle 3.86 X m/s (b) Find the speed of each particle after the collision if the stationary particle has a mass of 10 g. 2.0 g particle 1.9 X m/s m/s 10.0 g particle (c) Find the final kinetic energy of the incident 2.0-g particle in the situations described in parts (a) and (b). KE in part (a) J KE in part (b) In which case does the incident particle lose more kinetic energy? case (a) case (b)A.16 kg marble moving to the right at 1.2 m/s has a head-on elastic collision with another ball of equal mass moving to the left a .85 m/s. The first ball moves to the left at .85 m/s after the collision. Find the velocity of the second ball after the collision. Include the units, put a space between the numerical answer and the units. Round to the nearest tenthA lineback with a mass of 83kg strikes a 71 kg quarterbacker. The lineback was moving to the left at 5 m/s while the quarterbacker was moving to the right at 1.7 m/s. a)If the quarterbacker is thrown to the left at 3m/s after the collision, then what is the linebacks velocity after the collision? b) Determine the change in momentum of each player.