

P 30° Block A moves up the incline at a constant speed of 135 in/s. Pin Protates counterclockwise in the circular slot...
4 30° 2 Block A moves up the incline at a constant speed of 137 in/s. Pin P rotates counterclockwise in the circular slot in Block A at a speed of 18 in/s. Determine the magnitude of the velocity (in in/s) of Pin P relative to the fixed xy axes (i.e., horizontal, vertical), when = 91º. Calculate your answer to one decimal place. Hint: Drawing a vector diagram and labeling the velocities may prove helpful. 153.9
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37 Please select TRUE for this question. True O False QUESTION 2 Block A moves up the incline at a constant speed of 130 in/s. Pin P rotates counterclockwise in the circular slot in Block A at a speed of O in/s. Determine the magnitude of the velocity (in in/s) of Pin P relative to the fixed ay axes (le., horizontal, vertical), when 8% 83°. Calculate your answer to one decimal place Make sure to include...
A 4.00kg block moves up a 30 degree Incline at a constant speed. The coefficient of kinetic energy is .350. A person pushes the block with a horizontal force. Identify the agents/sources of the forces and their values acting on the block.
A block moves outward along the slot in the platform with a speed of -(6t) m/s, where t is in seconds. The platform rotates at a constant rate of 0-2 rad/s (Figure 1) Part A If the block starts from rest at the center, determine the magnitude of its velocity when t=1s Express your answer to three significant figures and include the appropriate units. HI HA ? Value Units Submit Request Answer Part B If the block starts from rest...
Problem 1: A car of mass 1000 kg moves at a constant speed of 20 m/s along a horizontal road where a frictional force is 200N. Calculate the power developed by the engine. If the car now moves up an incline at the same constant speed, calculate the new power developed by the engine. Assume that the frictional force is still 200 N and that sin(theta)=1/20 where theta is the angle of the incline to the horizontal. Problem 2: An...
A small object with mass 3.70 kg moves counterclockwise with constant speed 6.10 m/s in a circle of radius 4.80 m centered at the origin. It starts at the point with position vector (4.80i 0 ) m. Then it undergoes an angular displacement of 9.00 rad. (a) What it its position vector? 1 + i) m (b) In what quadrant is the particle located and what angle does its position vector make with the positive x-axis? Selectat A° (c) What...
what is the magnitude of P?
Question 3) The skater is moving counterclockwise on aa circular track with radius r 60.0(m). Note the direction of "up" in the drawing The mass of the skater is m The angle showing where the skater is on the circle is 35.0 For the friction between the skater and the track, p, 0.100 50.ofkg Up Horizontal There is a rocket attached to the skater providing a thrust force P in the same direction that...
The small block P travels with constant speed v = 1.70 m/s in the circular path of radius r = 1.32 m on the inclined surface. If 0 = 0 at time t = 0, determine the x-, y, and z-components of velocity and acceleration at time t = 2.1 s. Answers: At t = 2.1 s -0.072097 m/s, ax = i -1.9656 m/s2 1.698106 m/s, ay = -0.10331 m/s2 0.035164 m/s, a, = 0.958695573 m/s2 N
A car, C, and a truck, T are each travelling around the same horizontal circular track at constant speed. At the instant shown C is moving case. at 23.0 m s^-1 and T is moving north-west (i.e N 45 degree W) at 14.0 ms^-1. Draw a labelled vector diagram that shows the relation between the velocities of C and T and the velocity of C relative to T. Calculate the velocity of the car C relative to the truck T....
Student Name 1. A particle confined to motion along the x axis moves with constant acceleration fromx = 2.0 m to x 8.0 m during a 2.5-s time interval. The velocity of the particle at x - 8.0 m is 2.8 m/s. What is the acceleration during this time interval? 2. The polar coordinates of a point are r=5.50 m and Angle 240°. What are the Cartesian coordinates of this point? 3. On occasion, the notation A= [A, O] will...