# Find the tension in an elevator cable if the 1000 kg

You weigh 500 Newtons, so your mass is about 50 kg." This assignment is a step-by-step analysis of the elevator problem. A good deal of the work has been done for you - in which case it is your job to study the answers given and use them as a pattern and guide for the answers that you supply.

- Aug 17, 2021 · If the tension in the cable of 1000 kg Asked by admin @ 16/08/2021 in Science viewed by 25 persons C-6 If the tension in the cable of 1000 kg elevator is 1000 kg weight, the elevator(1) is accelerating, upwards(2) is accelerting downwards(3) may be at rest …
- C-6 If the tension in the cable of 1000 kg elevator is 1000 kg weight, the elevator (1) is accelerating, upwards (2) is accelerting downwards (3) may be at rest or accelerating (4) may be at rest or in uniform motion
- ~9810N T = mg + ma where T is tension force, m is mass g is gravitational field strength and a is acceleration. if an object is stationary, then it has a constant velocity of 0. its constant velocity means that its acceleration a is also 0. if a is 0, then ma is also 0. this leaves us with T = mg for the elevator when it is stationary, we are given that the mass m is 1000kg. we can assume that ...
- ~9810N T = mg + ma where T is tension force, m is mass g is gravitational field strength and a is acceleration. if an object is stationary, then it has a constant velocity of 0. its constant velocity means that its acceleration a is also 0. if a is 0, then ma is also 0. this leaves us with T = mg for the elevator when it is stationary, we are given that the mass m is 1000kg. we can assume that ...
- A higher force pulling on the rope results in a higher tension, for example if the elevator were on a more massive planet with a higher gravity, or if someone stood below the fish and pulled downward on it. Another such source of pulling force is if rather than the fish being accelerated downward, the elevator were accelerated upward. ...
- What is the maximum tension in the cable of an elevator with a maximum total mass of 1000 kg if it is programmed to reach its ascending speed in 2.0 s, 1.0 m above its starting point?
- A 3.70x10³kg elevator is being raised by a cable that exerts a 4.00x10⁴N force upwards. Determine the acceleration of the elevator. Begin by drawing a free body diagram. There are only two forces acting on the elevator: the force of tension acting up and the force of gravity acting down.
- Find the tension in an elevator cable if the 1000 kg elevator is descending with an acceleration of 1.8 m/s^2, downward. Who are the experts? Experts are tested by Chegg as specialists in their subject area. We review their content and use your feedback to keep the quality high. T = m (g- ….
- A ½ kg object is suspended from the ceiling of an accelerating boxcar . shown to the right (figure 6.13 Ex 6.8). If a = 3 m/s 2, find (a) the angle that the string makes with the vertical (b) the tension in the string. sin θ = ma / mg sin θ = 3 / 9.8. θ = 17° cos θ = mg / F Tension. F Tension = mg / cos θ. F Tension = 5.12 Newtons. Or

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1000-kg compartments separated by 50 meters that spin in a circle (r=25 m). The compartments spins once every 10 seconds. a) What is the acceleration at the extreme end of the compartment? Give answer in terms of “g”s. b) If the two compartments are held together by a cable, what is the tension in the cable?

It has a moment of inertia of I = 50 kgm2. The forces acting on the object are F 1 = 100 N, F 2 = 200 N, and F 3 = 250 N acting at different radii R 1 = 60 cm, R 2 = 42 cm, and R 3 = 28 cm. Find the angular acceleration of the object.

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an elevator and its load have a total mass of 1000 kg. find the tension in the supporting cable if the elevator originally moving downward at 10m/s is brought to rest with a constant acceleration after moving a distance of 50m? A level, Mechanics. An object of mass 100 kg is suspended by two identical cables.

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Jun 14, 2019 · The total mass of an elevator with a 80 kg man in it is 1000 kg. This elevator moving upward with a speed of 8 m/sec, is brought to rest over a distance of 16m. Calculate (a) the tension T in the cables supporting the elevator and (b) the force exerted on the man by the elevator floor.

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