Suppose a person releases a ball from rest, allowing it to fall 175 cm before kicking it at an angle of 50 degrees above the ground. The ball's speed after impact is 16 m/s. Determine the impulse, a vector quantity, imparted on the ball by the kick. Assume the ball's mass is 430 g. Please use the built-in math editor, keep units in all of your equations, and show all of your steps to receive full credit.
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- Answer the questions using the F vs. t graph showing the force of a bat on a baseball. 1. What is the impulse that the bat delivers to the baseball? 2. If the mass of the baseball is 0.15 kg and the initial velocity is 30 m/s to the left, what is the ball's final velocity? 20,000 Force F 10,000 0.5 1.0 Time t (ms)HelpBlock X Block Y VXY M M Figure 2. After the collision Block X slides along a horizontal surface with a speed tx toward block Y that is initially at rest, as shown in Figure 1. After block X collides with block Y, the two blocks remain stuck together and travel at a velocity of thy as shown in Figure 2. Frictional forces are considered to be negligible. Which of the following claims is correct regarding the momentum of the system containing only block X and the system that contains block X and block Y? A The system containing block X is an open system, and the system of both blocks is an open system. B The system containing block X is an open system, and the system of both blocks is a closed system. © D The system containing block X is a closed system, and the system of both blocks is an open system. The system containing block X is a closed system, and the system of both blocks is a closed system. ? 。 口
- There is a famous intersection in Kuala Lumpur, Malaysia, where thousands of vehicles pass each hour. A 750 kg Tesla Model S traveling south crashes into a 1250 kg Ford F-150 traveling east. What are the initial speeds of each vehicle before collision if they stick together after crashing into each other and move at an angle of 320 and a common velocity of 18 m/s. Draw a diagram and show all your workSuppose objects A and B have an elastic, one-dimensional collision. Object A, with mass 2 kg, is initially traveling to the right with a speed of 5 m/s. Object B, with mass 3 kg, is initially traveling in the opposite direction with a speed of 9 m/s. Determine the speed and direction of each object after the collision. Please use the built-in math editor, keep units in all of your equations, and show all of your steps to receive full credit.Needs Complete typed solution with 100 % accuracy.
- Consider the before- and after-collision momentum vectors in the diagram below. Determine the magnitude and direction of the system momentum before and after the collision and identify whether or not momentum is conserved. Finally, determine the magnitude and direction of the net external impulse encountered by the system during the collision. System Momentum Before Collision: _________________________ System Momentum After Collision: _________________________ Is momentum conserved? _________________________ Net External Impulse During Collision: _________________________Please Answer the following question step-wise with detailed explanations Thanks in advance ?An air hockey puck is sliding over an air-hockey table with an initial velocity of -20 m/s until it's hit by...that thing you hit the puck with in air hockey...and its velocity afterwards is 4 m/s. If the mass of the puck is 0.1 kg, then what is the impulse delivered to the air hockey puck? Write your answer in units of N*s, but only write down the number part of your answer. O 1.2 O4 2.4 O2
- 16. Based on the diagram below, the magnitude of the total momentum in this system, expressed to three significant digits, is kg-m/s. Please record your answer with no spaces, letters, or units. Do include decimals and leading zeros if they are needed. For example: If your answer was 123 kg-m/s, you would simply type 123 If your answer was 1.23 kg-m/s, you would simply type 1.23 If your answer was 0.123 kg-m/s, you would simply type 0.123 Before Collision ₁₁=4.00 m/s m₁ = 0.500 kg Your answer m₂=0.300 kg 12₁=0 m/s m After Collision "LT=2.00 m/s m₁ m0.070 kg weighted mass by the clay ball was shot upwards, traveling 1.0 m before hitting and sticking to a brick of mass 2.0 kg suspended from the ceiling by a light cord. As a result of the collision, the brick + clay ball rises through a distance of 10.0 cm. Find the answers to the questions, part a and b. a) What was the speend of the ball of clay when it struck the brick? b) What was the speed of the launch by the clay ball?A red cart is moving rightward with a momentum of 60kg.m/s when a blue cart is initially at rest. The collision causes the red cart to slow down and the blue cart to be set in motion with a momentum of 40kg.m/s. Enter the momentum values (in kg.m/s) of each individual cart and of the system of two carts before and after the collision. Also indicate the change in momentum of each cart. Show your work. before Collision After Collision Momentum Change Red Cart Blue Cart system