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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- For the following pulley system, if the end of cable A is pulled down with a 2 m/s speed, determine block speed B-1 attachment - 4. An SUV travels a 1.30 km levelled road from Bonifacio Rotunda to Citylights Hotel ip a mininum time of 45.60 sec. The SUV starts from rest at the Rotunda, travels at a constant speed for some time and will stop at Citylights Hotel. Given that the car accelerates and decelerates at 2.53 m/s, determine: a. The maximum speed (in kph) b. The time (in seconds) it travels at this speed • Assume that the time for accelerating and decelerating are equal.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/s
- B/ Calculate the impulse of the force for 3 seconds for the following cases: (b) (a) FN) F= (61) N2. A car is to be driven up a 7° incline road. Determine the automobiles braking distance from 30 m/s if the braking distance at 25 m/s speed is 45m when applied on a horizontal plane. Determine the braking distance going down a 5% incline. Assume the braking force is independent of the slope.4-An amusement park ride consists of a car which is attached to the cable OA. The car rotates in a horizontal circular path and is brought to a speed V, = 1.2 m/sec when r= 3.6m. The cable is then pulled in at the constant rate of 0.15m/s. Determine the speed of the car in 3s. (6-STEP METHOD)
- Help!!! Answer correctlyPlease 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 L
- When the driver applies the brakes of a light truck traveling at 23 km/h, it skids 2 before stopping. How far will the truck skid if it is traveling 86 when the brakes are applied?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.