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Bungee Cord Length Calculation. Web a bungee jumper of mass $75 kg$ is standing on a platform $53 m$ above a river. Web consider the bungee jump for a person with a mass of 80 kg using a bungee cord of medium stiffness and length 9.0 m.
The fully extended elastic part is 14. The bungee cord has more potential energy when it is stretched out than. Web you will record your data and use this information to find the total force acting on the bungee cord. Web consider the bungee jump for a person with a mass of 80 kg using a bungee cord of medium stiffness and length 9.0 m. The length of the upstretched bungee cord is 11m. Web the potential energy of the bungee cord depends on how much the cord has been stretched, i.e. Web the 8 bungee cord length is actually 1 ball plus 7 bungee (the elastic part). Web i went out to the warehouse and pulled ez grip bungee cord, 32 inches, # 3031dat to measure it for you. Web since the hooke’s law experiment apparatus is usually equipped with a retort stand, which is a stand that has a ruler and a pointer attached to the spring, but since i am using a. Web bungee cord length experiment.
This is known as the ‘elongation. Web the 8 bungee cord length is actually 1 ball plus 7 bungee (the elastic part). Web i went out to the warehouse and pulled ez grip bungee cord, 32 inches, # 3031dat to measure it for you. Data table for the 60 cm bungee cord data table describing the mass, the total length of the fall h, displacement x, and k value, calculated using the cwe theorem. This is known as the ‘elongation. The bungee cord has more potential energy when it is stretched out than. Web the potential energy of the bungee cord depends on how much the cord has been stretched, i.e. Then you will use an equation we call hooke's law to calculate the. Therefore, the ratio of the relaxed to fully. Web as others here have pointed out, the force of the bungee cord would vary, increasing as it is stretched. The spring constant is $65.6.