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A rescue helicopter lifts a 79.0-kg person straight up by means of a cable. The person has an upward acceleration of 0.70 m/s2 and is lifted from rest through a distance of 11 m. What is the tension in the cable?

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A rescue helicopter lifts a 79-kg person straight up by means of a cable. The person has an upward acceleration of 0.70 m / s 2 0.70 \mathrm { m } / \mathrm { s } ^ { 2 } 0.70 m / s 2 and is lifted from rest through a distance of 11 m.. Use the work-energy theorem and find the final speed of the person.

SOLVEDThe concepts this problem are similar to those in Multiple


A rescue helicopter lifts a $79-\mathrm{kg}$ person straight up by means of a cable. The person has an upward acceleration of $0.70 \mathrm{~m} / \mathrm{s}^{2}$ and is lifted from rest through a distance of $11 \mathrm{~m}$. (a) What is the tension in the cable? How much work is done by

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Question. the answer must be. (a) 826N. (b) 10,732 J. (c) 10,065 J. (d) 3.8 m/s. Transcribed Image Text: Work - Energy Theorem 7. During a flood, a rescue helicopter was used to lift a 79-kg person to safety. The has an upward acceleration of 0.65 m/s and is lifted from rest to a yertical person distance of 13 m.

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This problem has been solved! You'll get a detailed solution from a subject matter expert that helps you learn core concepts. See Answer Question: A rescue helicopter lifts a 79 kg person straight up my meansof a cable.

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A rescue helicopter lifts a 79-kg person straight up by means of a cable. The person has an upward acceleration of 0.70 m/s2 and is lifted from rest through a distance of 11 m. (a) What is the tension in the cable? How much work is done by (b) the tension in the cable and (c) the person s weight?

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A rescue helicopter lifts a 79-kg person straight up by means of a cable. The person has an upward acceleration of 0.70 m/s2 and is lifted from rest through a distance of 11 m. (a) What is the tension in the cable? How much work is done by (b) the tension in the cable and (c) the person's weight?

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A rescue helicopter lifts a 79-kg person straight up by means of a cable. The person has an upward acceleration of 0.70 m/s2, and is lifted from rest through a distance of 11 m. Use the work energy theorem (conservation of energy) and find the final speed of the person. a. 15.4 m/s. b. 3.92 m/s. c. 34.9 m/s. d. 55.3 m/s

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a rescue helicopter was used to lift a 79-kg person to safety. The person has an upward acceleration of .65m/s2 and is lifted from rest to vertical distance of 13m. (a) What is the tension on the cable? (b) What is the work done by the tension? (c) What is done by th

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A rescue helicopter lifts a 79-kg person straight up by means of a cable. The person has an upward acceleration of 0.70 \mathrm { m } / \mathrm { s } ^ { 2 } .70m/s2 and is lifted from rest through a distance of 11 m. What is the tension in the cable? How much work is done by Solution Answered 4 months ago Create an account to view solutions

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A rescue helicopter lifts a 90 kg person straight up by means of a cable. The person has an upward acceleration of 0.70 m/s2 and is lifted from rest through a distance of 10 m. What is the tension in the cable and how much work is done by the tension in the cable? Use the work-energy theorem to find the final speed of the person as well. 2.

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A rescue helicopter lifts a 79 kg person straight up by means of acable. The person has an upward acceleration of .70m/s2 and is lifted from rest through a distance of11m. (a) What is the tension in the cable? Howmuch work is done by (b) the tension in the cable and (c) theperson's weight?

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A rescue helicopter lifts a 79 kg person straight up by means of a cable. the person has an upward acceleration of 0.70 m/s2 and is lifted from rest through a distance of 11 m. Using vertical equilibrium we have that, T-mg=ma. The tension in the cable = 79(9.8+0.7) = 829.5 N. Work done by tension cable is T_{s} = 829.5×11= 9124.5 joules

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A rescue helicopter lifts a 79-kg person straight up by means of a cable. The person has an upward acceleration of 0.70 m/s2 and is lifted from rest through a distance of 11 m. (a). A 75.0-kg skier rides a 2830-m-long lift to the top of a mountain. The lift makes an angle

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