A particle with an initial linear momentum of 4.12 kg · m/s directed along the positive x-axis collides with a second particle, which has an initial linear momentum of 8.24 kg · m/s, directed along the positive y-axis. The final momentum of the first particle is 6.18 kg · m/s, directed 45.0° above the positive x-axis. Find the final momentum of the second particle.
magnitude
direction above the negative x-axis
A particle with an initial linear momentum of 4.12 kg · m/s directed along the positive...
In a game of pool, a cue ball with an initial velocity of 1.80 m/s directed to the right (along the +x-axis) collides with the five ball, which has equal mass and is initially at rest. The five ball then moves at 1.56 m/s at an angle of 30.0° above the +x direction. (a) Find the cue ball's final velocity. (b) magnitude (c) ___________ direction below the positive x-axis
In the figure, particle A moves along the line y = 33 m with a constant velocity v of magnitude 2.7 m/s and directed parallel to the x axis. At the instant particle A passes the y axis, particle B leaves the origin with zero initial speed and constant acceleration ã of magnitude 0.46 m/s2. What angle θ between a and the positive direction of the y axis would result in a collision?
One particle of mass m1 = 1.00 kg with an initial velocity of 5.40 m/s i collides with a second particle of mass m2 = 2.00 kg that is initially at rest. After the collision mı goes off with a final speed of 4.20 m/s in a direction 32.0° above i. V 5.4 ms (a) Find the final velocity (in terms of magnitude AND direction) of m2. agnitude AND direction) of m. Vi = 4.2 m/s (HINT: Find the direction...
In a game of pool, a cue ball with an initial velocity of 1.80 m/s directed to the right (along the +x-axis) collides with the five ball, which has equal mass and is initially at rest. The five ball then moves at 1.56 m/s at an angle of 30.0° above the +x direction. (a) Find the cue ball's final velocity magnitude? direction ?
A 4 kg particle moves along an x axis, being propelled by a variable force directed along that axis. Its position is given by x = 1 m + (6 m/s)t + ct2 - (4 m/s3)t3 with x in meters and t in seconds.The factor c is a constant. At t = 4 s the force on the particle has a magnitude of 32 N and is in the negative direction of the axis. What is c?
Consider a particle with initial velocity v that has magnitude 12.0 m/s and is directed 60.0 degrees above the negative x axis. Part A What is the x component vg of ? Express your answer in meters per second. Uz = m/s Submit RequestAnswer Part B What is the y component vy of ö? Express your answer in meters per second ty m/s Submit RequestAnswer
Vector ?⃑1 is directed along the positive y axis and has a magnitude of 6.0 m. Vector ?⃑2 is directed along the negative x axis and has a magnitude of 2.0 m. (a) What are the magnitude and direction of the vector (?⃑2 − ?⃑1 )? (b) What are the magnitude and direction of the vector (?⃑1 − ?⃑2 )?
In the figure, particle A moves along the line y = 33 m with a constant velocity v→ of magnitude 3.5 m/s and directed parallel to the x axis. At the instant particle A passes the y axis, particle B leaves the origin with zero initial speed and constant acceleration a→ of magnitude 0.46 m/s2. What angle θ between a→ and the positive direction of the y axis would result in a collision?
A 5 kg cart moving at a velocity 2 m/s in the +x-direction collides completely inelastically (i.e. they stick) with a second cart of mass 1.5 kg which is initially moving at a velocity of 10 m/s in the +y-direction. What is the total initial kinetic energy? J. What is the total x-component of momentum just before the collision? Kg m/s. What is the total y-component of momentum just before the collision? Kg m/s. What is the total x-component of momentum just after...
A charged particle moves along the x-axis through a region with a uniform magnetic field that is oriented to lie in the x-y plane. Part a) Assume that the particle has a net charge of +669 μC and is moving with a velocity of 464 m/s in the +x direction at a particular instant. In that region of space, there is a uniform magnetic field of 1.91T directed in the x-y plane at an angle of +29.8 ∘ relative to...