The tension in each rope of a swing at the lowest point is 412 N when a 36.0-kg girl is swinging. The two ropes are each 3.06 m long. What is the girl's speed at the lowest point?
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The tension in each rope of a swing at the lowest point is 412 N when a 36.0-kg girl is swinging. The two ropes are each 3.06 m long. What is the girl's speed at the lowest point?
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- A 445 N boy swings on a 3.0 m long swing. If his horizontal speed at the lowest point is 3.0 m/s, what total force must the ropes holding the swing be able to withstand?An adventurous archeologist (m = 85.5 kg) tries to cross a river by swinging from a vine. The vine is 11.0 m long, and his speed at the bottom of the swing is 7.50 m/s. The archeologist doesn't know that the vine has a breaking strength of 1,000 N. Does he make it safely across the river without falling in? Yes NoA girl is swinging on a swing. At the highest point, she is 3.8 meters from the ground. At the lowest point, she is 0.5 meters from the ground. Neglecting friction and air resistance, what will be her maximum speed? 10.4 m 3.8 m 0.5 m O 8.6 m/s O 8.0 m/s O 3.13 m/s O 13.9 m/s Her maximum speed depends on her mass.
- Tarzan plans to cross a gorge by swinging in an arc from a hanging vine. If his arms are capable of exerting a force of 1350 N on the rope, what is the maximum speed he can tolerate at the lowest point of his swing? His mass is 78 kg and the vine is 5.2 m long.the child has a mass of 23.7kg. The chains each have a length of 3.22m. As the child swings, she moves along a path which is part of a vertical circle.When the child is at the lowest point of the swinging path, the chains exert a total upward force of 366N and the child's speed is ________m/s.Note: Speed is always a positive number.Tarzan plans to cross a gorge by swinging in an arc from a hanging vine. If his arms are capable of exerting a force of 1400 N on the rope, what is the maximum speed he can tolerate at the lowest point of his swing? His mass is 80kg and the vine is 4.8m long.
- An adventurous archeologist (m = 83.5 kg) tries to cross a river by swinging from a vine. The vine is 12.0 m long, and his speed at the bottom of the swing is 8.85 m/s. The archeologist doesn't know that the vine has a breaking strength of 1,000 N. Does he make it safely across the river without falling in? O Yes O No Need Help? Read ItTarzan wants to use a vine to swing over a canyon to get to the other side of a cliff. He is able to exert a maximum force of 1270 N on the vine, what is the fastest speed Tarzan can have at the lowest point of his swing? His mass is 81.1 kg and the vine is 3.8 m long. (Answer to 1 decimal place and take g = 9.8m/s2)A 2.0 kg ball at the end of a 1.8 m string swings in a vertical plane. At its lowest point the ball is moving with a speed of 16 m/s. (a) What is its speed (in m/s) at the top of its path? m/s (b) What is the tension (in N) in the string when the ball is at the bottom and at the top of its path? bottom of its path Ntop of its path N †
- A 2.0 kg ball at the end of a 1.8 m string swings in a vertical plane. At its lowest point the ball is moving with a speed of 16 m/s. (a) What is its speed (in m/s) at the top of its path? m/s (b) What is the tension (in N) in the string when the ball is at the bottom and at the top of its path? bottom of its path Ntop of its path NA movie stunt performer is filming a scene where he swings across a river on a vine. The safety crew must use a vine with enough strength so that it doesn't break while swinging. The stunt performer's mass is 88.0 kg, the vine is 10.5 m long, and the speed of the stunt performer at the bottom of the swing has been determined to be 8.80 m/s. What is the minimum tension force (in N) the vine must be able to support without breaking? N=A movie stunt performer is filming a scene where he swings across a river on a vine. The safety crew must use a vine with enough strength so that it doesn't break while swinging. The stunt performer's mass is 82.0 kg, the vine is 11.0 m long, and the speed of the stunt performer at the bottom of the swing has been determined to be 8.60 m/s. What is the minimum tension force (in N) the vine must be able to support without breaking?