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- Garrett Randi Baldwin 02/C Clas 02/ 4 Stru Phy 4 4th 4th E 3rd 1st amihq.com/web/viewer.html?state=%7B"exportlds %3A%5B 1K8ubv6kBbwyV3WQ9RyNrVS-Ing FOP Pandora YouTube M Gmail A Classes DRIVE EH Gizmo Q Ou WS Momentum RB 3. How fast would a ping pong ball (mass 0.0027Kg) have to be traveling to have the sam momentum as Scott McCartney just before he fell? (Use momentum from problem 2) If a 40 Kg object has a momentum of 400K9*mis how fast is t traveling? 5. If an object traveling at 20 m/s (about 44 miles per hour) has a momentum of BOOK9 m/s, what is the object's mass? 6 A locomotive has a mass of 200.000 Kg It is moving at 4.5 m/s (10 miles per hour) How fast would a car (mass 1000Kg) be traveling to have the same momentum? 7. In a sentence or two, describe what you think would happen if the car and locomotive in # 6 above ran head on into each other if they have the same momentum. 8. If you can run 6.7 m/s (15 miles per hour) while holding a 3.5 Kg (8 pound) shot put, how much…argest lear X ! Unacademy - India's largest + macademy.com/educator/doubts/solve?topic3DVKKVN a help with this question neutron beam of initial kinetic energy Eo is divided into two beams at point O by some echanism. Thereafter the beams proceed on the path OAC and OBC without a phase change i the corners A and B to interfere with each other at point C. Here OACB is a square of side I, Ited at an angle 0 above the horizontal. Mass of the neutron is m, Planck's constant is h and cceleration of free fall is g. the possible expression(s) for angle 0 at which a Maxima is detected at C is/are B Horizontal 2hl/2mE, 2hl /2mE, -h 2m2gl 2h? (A) sin (B) sin m°gl m'gl 6hl/2mE, 2m gl 2hl /2mE, -h 2m gl - 9h? (D) tan (C) sin 29°C Partly cloudy Type here to search Home F9 10 FB F7 F5 F3 F2 FI 23 2$ 6 7 2 3 47 A LOCheck Your Understanding Quipper Solve the following problems. Show your pertinent solution. 1. A 200 kg missile is launched at a speed of 1,000 m/s, east. Calculate the momentum of the missile. 2. A car is moving at 25 m/s to the right with a momentum of 1000 kg m/s. Calculate the mass of the car. 3. What is the velocity of a 425 kg motorcycle moving at a momentum of 12 000 kg m/s?
- Please answer the question and its subquestions entirely! This is one question with two subquestions. According to the official Bartleby guidelines, I am alowed to have up to two subquestion! 1) If a two-body collision is not head-on, then which of the following may always be assumed? Momentum is conserved. Kinetic energy is conserved. Both momentum and kinetic energy is conserved. Neither momentum or kinetic energy is conserved. a) Mass 1 strikes Mass 2 while moving in the positive-x direction, which is initially at rest. After the collision M2 moves off in the same direction but at a greater speed. Which of the following is true? Mass 2 is larger than Mass 1. Mass 2 is the same size as Mass 1 Mass 2 is smaller than Mass 1. b) A 900 kg car travelling at 12 m/s due east collides with a 600 kg car travelling at 24 m/s due north. As a result of the collision, the two cars lock together and move in what final…What is conservation of momentum, energy and angular momemtum? Describe briefly.1.Using these three relationships, and assuming mass is a constant.. F = mā %D a = di dt mu = P %3D write an expression for Force in terms of momentum. 2. According to what you wrote, if the net force on the mass is zero, how does the momentum change?
- Hi, please show full solutions and also explain how you get the answers in physics terms so it's understandable. The correct final answers are written beside too. Thank you. 13. A ball of mass m, is stationary when a ball of mass 2m collides with it travelling with a speed of v. If the collision between the 2 balls is completely inelastic, show that the final velocity of the balls is 2/3 v.EF MONG gn unOW3 LIlat uie TIIle will IIUve II uie urecLIon OPpositc Big Idea The law of conservation of momentum shows that nothing in the universe is unaccounted for. This is what makes this law indispensable in investigating vehicular accidents (e.g., to identify the culprit). What Have I Learned So Far? Solve. Show your complete solutions. 1. Yeonjun works as an astronaut who has been sent to the International space Station (ISS) At one instance while he is at rest, Yeonjun throws a 5.0-kg bowling ball away from him at a rate of 2.0 m/s relative to the ISS. At what speed and direction will he start to move after he releases the ball? TE a In a 2. Suppose you find yourself in the middle of a frictionless icy floor. What will you do to get out of your location? Solution: iodf 1/4 100% Note: use g=10 m/s? in your calculations 1. Two blocks with masses m, and m, are connected by a light string passing over a pulley of radius R and moment of inertia I. The kinetic friction coefficient between the boxes and inclined planes are respectively given by H1 and uz. The system starts from its rest position, and motion sets in the direction of mass m2. (a) Write an expression for the linear acceleration a as a function of the parameters m,, m2, P, Hz, R, I and inclination angles. (b) For the given system parameters: m1(kg) m2(kg) 0,(0) 02(*) I(kg.m²) R(m) 1.5 3.5 45 60 3.0 1.5 Fill in the following table for string tension forces and accelerations corresponding to the given two cases: - Case 1: Inclined planes with kinetic friction coefficients u, = 0.2 and uz = 0.8. - Case 2: Frictionless planes and ignorable mass of the disk. Table 1: Problem 1 (Express your answer in three decimal places) a (m/s³) T(N) T2(N) a (rad/s²) Case-1 Case-2 BELL Insert PintScE Delete…
- I need help on this question. Explain how you got your answers and why they seem reaDefine momentum, give its units, and state when momentum is conserved.Rico throws a 0.5 kilogram metal sphere at a wall. The sphere hits the wall perpendicularly with a velocity of 3 meters per second and then bounces straight back with a velocity of 2 meters per second. Calculate the change in the momentum of the metal sphere. 0.5 kilogram-meters per second B 1.0 kilogram-meters per second 1.5 kilogram-meters per second D) 2.5 kilogram-meters per second