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A telemetry system is used to quantify kinematic values of a ski jumper immediately before she leaves the ramp. According to the system
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Vector Mechanics for Engineers: Dynamics
- A telemetry system is used to quantify kinematics values of a ski jumper immediately before she leaves the ramp, as shown. The system gathers the following information: r= 500 ft 0 = 25° e= 0.07 rad/s Ö= 0.06 rad/s? Determine (a) the velocity of the skier immediately before she leaves the jump, (b) the acceleration of the skier at this instant, (c) (5 additional points if your solve this correctly) the distance of the jump d neglecting lift and air resistance. Note: In projectile motion, if the initial angle of projection 0 is below the horizontal, the initial y-component of the velocity is directed downward. i=-105 f/s F = -10 ft/s? 30 10 tarrow_forwardCan you please answer this ? Thank youarrow_forwardCar A is moving with constant speed v on the straight and level highway. The police officer in the stationary car P attempts to measure the speed v with radar. If the radar measures “line-of sight” velocity, what velocity v' will the officer observe? Evaluate your general expression for the values v = 74 mi/hr, L = 605 ft, and D = 19 ft, and draw any appropriate conclusions.arrow_forward
- I want clear expaination of that question with correct answerarrow_forward> Question 3 [2/108]: The sphere P travels in a straight line with speed v = 10 m/s. For the instant depicted, determine the corresponding values of r and è as measured relative to the fixed x - y coordinate system. } K 1 I 5 m 211- P 1 30⁰ 4 m Question 4 [2/109]: If the 10-m/s speed of the previous problem is constant, determine the values of * and at the instant shown.arrow_forwarda) the time required for the car to reach the velocity of 72m/s from its initial condition at t=0 b) the acceleration of the car when the velocity is 30 m/s c) the di[lacement of the car at t=10s.arrow_forward
- I need Correct Handwritten Solution. Double check.arrow_forwardThe slider block A is moving downward at va = 5 m/s. (Figure 1) Part A Determine the x and y components of the velocity of the block B at the instant shown. Express your answers using three significant figures separated by a comma. ΠΥΠ ΑΣ φ vec ? (vB)2, (VB)y = m/s Submit Request Answer Part B Figure Determine the x and y components of the velocity of the block C at the instant shown. Express your answers using three significant figures separated by a comma. 300 mm vec 250 mm D 400 mm (vc)z, (vc)y = m/s 300 mm 30 Submit Request Answerarrow_forwardAt time zero, a particle is at x = 4.0 m and y = 3.0 m and its velocity v is given in diagram H. The particle has a uniform acceleration a of given by the equation in diagram H. What is the object’s position at time t = 4.0 s? SEE ATTACHED DIAGAM WHICH ONE IS CORRECT? A. None of the other answers B. (20, -21) m C. (33, 18) m D. (44, -9.0) marrow_forward
- Assume suitable value for any missing data. Two cars A and B are travelling in the lane of an adjacent highway at the position and speed shown in the figure (this instant is called t = 0). Car A is moving at an equivalent speed of 0.54 m/s, and Car B is 0.36 m/s. It moves at a constant deceleration rate of /s^2. (a) Find when and where A overtakes B. (b) Find the speed of each car at that moment.arrow_forwardsolve part c and darrow_forward6. A ball is rotating about the origin with a constant radius of 10cm. a. For the values of 0, 0, and O shown on the figure, what are the radial (a,) and theta (a) components of the acceleration of the ball. b. What is the acceleration vector of the ball expressed in rectangular coordinates, in terms of i and j unit vectors? Y r = 10cm 10 = -40° X 0 = 4 rad/s Ö = 6 rad/s²arrow_forward
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