Determine the constant speed at which the cable at A must be drawn in by the motor to hoist the load 9 m in 3.0 s. A C B
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- The mine car "C" is being pulled up the incline using the motor "M" and the "rope and puney arrangement shown. Determine the speed "vp" at which the point "P" on the cable must be traveling toward the motor to move the car up the plane with a constant speed of v= 5 m/s. M Ans. vp = 15 m/sDetermine the velocity of Block D assuming link 2 is moving at 5 rad/s. The image is to scale with the indicated 4.5 cmChoose from the given choices/options below the question. I will rate you with “LIKE/UPVOTE," if it is COMPLETE STEP-BY-STEP SOLUTION. If it is INCOMPLETE SOLUTION and there are SHORTCUTS OF SOLUTION, I will rate you with “DISLIKE/DOWNVOTE.” THANK YOU FOR YOUR HELP.
- Please include the free body diagram. Don't use chatgpt4 Problem Norm the Niner has a running start when he catches on to the zipline at the top of the cliff with speed vo. After traveling a distance L he hits the ground running at a speed 200. • Write down an expression, in terms of L and vo, for the average acceleration a, during his descent. • Write down an expression, in terms of L and vo, for the total time T of the descent (assume constant average acceleration). • Show that Norm is 11/16ths of the way down the zipline when the elapsed time is t = (3/4)T (assume constant average acceleration). Vo L1. Draw a FBD of the skier during the lifting process. Ensure you include all forces and a coordinate system. 2. Obtain the equation of motion of the skier as a function of the only unknowns x (and/or its derivatives) and T (ie express all other quantities numerically). 3. The skier starts their journey up the ski lift at t = 0, and they reach the top of the slope at tend=224 s. The skier’s position, x, as a function of time, t, over this time period is given by: Obtain the analytical expression of the tension with respect to time and compute the maximum tension value. Note: The coordinate x is parallel to the slope (in the same direction as the motion of the skier) as marked in the diagram above.
- 1. Draw a FBD of the skier during the lifting process. Ensure you include all forces and a coordinate system. 2. Obtain the equation of motion of the skier as a function of the only unknowns x (and/or its derivatives) and T (ie express all other quantities numerically). 3. The skier starts their journey up the ski lift at t = 0, and they reach the top of the slope at tend=224 s. The skier’s position, x, as a function of time, t, over this time period is given by: (image of expression) Obtain the analytical expression of the tension with respect to time and compute the maximum tension value. Note: The coordinate x is parallel to the slope (in the same direction as the motion of the skier) as marked in the diagram above.4. Determine an equation for the power exerted from the bar onto the skier with respect to time. 5. Using the power equation, determine how much energy is imparted from the bar to the skier during the lift.6. The skier then reaches the top of the peak and proceeds to ski…Solve Prob. 7.10 assuming that the pick-up truck has front-wheel drive.Figure Q3 shows a pulley system that involves a load m. Knowing that the cables at A and B are moving with a velocity of 6 m/s in the direction of the arrows, as shown in Figure Q3. Assess the direction and velocity of the load m.
- The 16-ft-long cord is attached to the pin at C and passes over the two pulleys at A and D. The pulley at A is attached to the smooth collar that travels along the vertical rod. When sp = 6 ft, the end of the cord at B is pulled downward with a velocity of 3.7 ft/s and is given an acceleration of 3 ft/s². (Figure 1) Figure SA -3 ft -3 ft B D SB ▶ Determine the velocity of the collar at this instant. Express your answer to three significant figures and include the appropriate units. Enter positive value if the velocity is upward and negative value if the velocity is downward. VA = Submit Part B a A = O μA Submit Value Request Answer Determine the acceleration of the collar at this instant. Express your answer to three significant figures and include the appropriate units. Enter positive value if the acceleration is upward and negative value if the acceleration is downward. μA Value Ć Request Answer Units ? Units ?Please help with the attached problemA load is being lifted by the pully system shown below. If the end of the rope at point A isbeing pulled down with a speed of ?A = ?2 m/s, determine the speed of the load being lifted at C when t = 5s.