The small body has a speed VA = 6.9 m/s at point A. Neglecting friction, determine its speed at point B after it has risen 1.56 m. Is knowledge of the shape of the track necessary? T 1.56 m t Answer: VB = Mi 6.9 m/s A m/s B
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![The small body has a speed VA = 6.9 m/s at point A. Neglecting friction, determine its speed at point B after it has risen 1.56 m. Is
knowledge of the shape of the track necessary?
T
1.56 m
t
Answer: VB =
Mi
6.9 m/s
A
m/s
B](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F278ecef9-29e8-4432-9e71-9c6b88f466da%2F0d6a8853-2c28-4f3f-ba18-f06515f89be6%2Fwl42shv_processed.png&w=3840&q=75)
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- 6. A small block slides down a frictionless track whose shape is described by y = (x^2) /d for x<0 and by y = -(x^2)/d for x>0. The value of d is 4.68 m, and x and y are measured in meters as usual. Suppose the block starts from rest on the track, at x = -1.17 m. What will the block s speed be when it reaches x = 0? 1.70 m/s 1.19 m/s 3.12 m/s 2.40 m/sA stone thrown from the top of a building is given an initial velocity of 20.2 m/s straight upward. The stone is launched 50.0 m above the ground, and the stone just misses the edge of the roof on its way down as shown in the figure below. B te = ? a,B = -9.80 m/s? LA = 0 YA = 0 a, A = -9.80 m/s2 c le = 2t8 Vc = 0 a,c = -9.80 m/s? to = 5.00 s 4D = -9.80 m/s2 YE = -H aE = -9.80 m/s? Position, velocity, and acceleration values at various times for a falling stone thrown initially upward with a velocity Vvi = 20.2 m/s. Many of the quantities in the labels for points in the motion of the stone are calculated in the example. Can you verify the other values that are not? (a) Using t, = 0 as the time the stone leaves the thrower's hand at position A, determine the time at which the stone reaches its maximum height. SOLUTION You most likely have experience with dropping objects or throwing them upward and watching them fall, so this problem should describe a familiar experience. To simulate…If a 3.58 kg object is placed on a frictionless incline of 59.5 º and released from rest, what is speed of the object down the incline after traveling a distance of 1.06 m? Enter a number rounded to 2 decimal places and assume it has proper SI units.
- The figure below shows a motorcycle leaving the end of a ramp with a speed of 30.4 m/s and following the curved path shown. At the peak of the path, a maximum height h above the top of the ramp, the motorcycle's speed is 28.3 m/s. What is the maximum height h? Ignore friction and air resistance. (Enter your answer in m.)In the figure, a 3.6 kg block slides along a track from one level to a higher level after passing through an intermediate valley. The track is frictionless until the block reaches the higher level. There a frictional force stops the block in a distance d. The block's initial speed is vo = 6.8 m/s, the height difference is h = 0.99 m, and uk = 0.592. Find d. d H = 0- Number Units the tolerance is +/-5%Please answer the question correctly. Thank you!!
- pervious question: OK, same sort of track, but now with d = 2.12 m. Now suppose the blocks starts on the track at x = 4.10 m. The block is given a push to the left and begins to slide up the track, eventually reaching its maximum height at x = 0, at which point it turns around and begins sliding down. What was its initial speed in this case? New question Here we go again this time, d = 4.09 m. Suppose the block starts on the track at x = 0. What minimum initial velocity (moving to the right) must the block have such that it will leave the track at x = 0 and go into freefall? 12.24 m/s 11.15 m/s 8.96 m/s 6.34 m/sA small block slides down a frictionless track whose shape is described by y = (x^2) /d for x<0 and by y = -(x^2)/d for x>0. The value of d = 4.15m, and x and y are measured in meters as usual. Now suppose the blocks starts on the track at x = 3.35 m. The block is given a push to the left and begins to slide up the track, eventually reaching its maximum height at x = 0, at which point it turns around and begins sliding down. What was its initial speed in this case? 4.05 m/s 7.28 m/s 5.15 m/s 4.97 m/sQUESTION 6 A small block slides down a frictionless track whose shape is described by y = (x^2) /d for x<0 and by y = -(x^2)/d for x>0. The value of d is 4.93 m, and x and y are measured in meters as usual. Suppose the block starts from rest on the track, at x = -2.42 m. What will the block s speed be when it reaches x = 0? A 4.83 m/s B 3.42 m/s C 2.05 m/s D 7.25 m/s
- >V=0 d (m A block of mass m is on an inclined ramp. The ramp makes an angle with respect to the horizontal, as shown. The ramp has friction, with coefficient of kinetic friction and static friction μs. This experiment takes place on earth. The block has an initial speed of v up the ramp. It travels a distance d along the ramp before it stops. There are no numbers in this problem! Answer all questions in terms of the given variables (g, m, µk, µs, 8, v, d) only. Do not use any other variables. a) Draw a free body diagram clearly showing all the forces acting on the block while it is moving up the ramp. b) Calculate the work done by the Normal force as the block travels the distance d. Is it positive, negative, or zero? c) Calculate the work done by the Weight force as the block travels the distance d. Is it positive, negative, or zero? d) Calculate the work done by the Friction force as the block travels the distance d. Is it positive, negative, or zero? e) If the block comes to rest,…The power required to drag an object through a viscous fluid (like honey) is P = -bv², where v is the speed of the object. What are the Sl units of b? O kg /s kg /s? O kg / m O kg/m? O kg / m·s none of theseA force F = (cx – 3.00x² )î acts on a particle as the particle moves along an x axis, with F in newtons, x in meters, andca constant. At x = 0 m, the particle's kinetic energy is 20.0 J; at x = 3.00 m, it is 11.0 J. Find c. Number Units