How would you suggest I create a trigger for my compression spring ping pong ball launcher
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- 110A 5.00-g bullet moving with an initial speed of vi = 390 m/s is fired into and passes through a 1.00-kg block as shown in the figure below. The block, initially at rest on a frictionless, horizontal surface, is connected to a spring with force constant 860 N/m. The block moves d = 5.60 cm to the right after impact before being brought to rest by the spring a) Find the speed at which the bullet emerges from the block.=----m/s b) Find the amount of initial kinetic energy of the bullet that is converted into internal energy in bullet–block system during the collision. =-------JB9
- 9Doing some physics homework and am kind of stumped here!A rocket motor is undergoing a "bench test." It is attached to a fixed support by four large springs of constant 10^6 N/m. The motor burns fuel at a rate of 50 kg/s. When the motor is running the springs are observed to stretch 1.5 cm. Determine the exhaust speed of the burned fuel.
- In the figure here, two children are playing a game in which they try to hit a small box on the floor with a marble fired from a spring- loaded gun that is mounted on a table. The target box is horizontal distance D = 2.18 m from the edge of the table. Bobby compresses the spring 1.18 cm, but the center of the marble falls 25.6 cm short of the center of the box. How far should Rhoda compress the spring to score a direct hit? Assume that neither the spring nor the ball encounters friction in the gun. 00000 Number i UnitWhy should a person pick a compression spring ping pong ball launcher over any other launcher? (Is it that it can travel far distance etc.)A spring with a force constant of 12 N/m rests horizontally on a table and projects balls with a mass of 8.3 × 10-3 kg towards targets placed on the ground 93 cm below. If the spring is compressed by 4.0 cm, how far does the ball travel horizontally before it hits the ground?
- A 0.053 kg bullet is fired into a 5.38 kg wood block, which is attached to a pendulum. At the instant after they collide inelastically, the total mechanical energy of the system is 24.1 J. At the top of the swing of the pendulum, the block and bullet have risen to a maximum height, h, and now have a velocity of v = 0 m/s Use conservation of energy to find the maximum height, h, of the block + bullet system. Hint: The following formula will be useful PE = mx9.8×h %3DGood day This is just a practice quiz made only by one of my classmate for our upcoming exams next week.. I hope you can help me on getting the answers for this.. short solution and explanation will do.. thank youI PROMISE TO RATE AFTER IVE SEEN YOUR ANSWERA 10.0 gg rifle bullet is fired with a speed of 350 m/s into a ballistic pendulum with mass 10.0 kg , suspended from a cord 70.0 cm long. Compute the initial kinetic energy of the bullet. Compute the kinetic energy of the bullet and pendulum immediately after the bullet becomes embedded in the pendulum. Compute the vertical height through which the pendulum rises.