Course Home X https://openvellum.ecollege.com/course.html?courseld- 15544263&HeplD=c5fa803dae2fe486ce 2b2d26e3faasb@r10001 (HW 19 Dr.Z. recommends problem 2 2os O Kate, a bungee jumper, wants to jump off the edge of a bridge that spans a river below. Kate has a mass m, and the surface of the bridge is a height h above the water. The bungee cord, which has length L when unstretched, will first straighten and then stretch as Review Express the distance in terms of quantities given in the problem introdsetion. View Available Hints) Kate falls. d L+ Assume the following: The bungee cord behaves as an ideal spring once it begins to stretch, with spring constant k Kate doesn't actually jump but simply steps off the edge of the bridge and falls straight downward. Kate's height is negligible compared to the length of the bungee cord. Hence, she can be treated as a point particle. Suboit Previous Answers Correct Part B Use g for the magnitude of the acceleration due to gravity. If Kate just touches the surface of the river on her first downward trip (i.e.. before the first bounce), what ie the spring consient l gnore el deeipative foroes Express kin terms of L, h m, and g. View Available Hint(s) ΑΣΦΦ ? k Submit Nexd > Provide Feedback P Pearson Terms of UseI Privacy Policy I PermissionnsI Contact Us Copyright G 2019 Pearson Education Inc. All rights reserved. 23:2 31/10/2

Question

Part b

Course Home
X
https://openvellum.ecollege.com/course.html?courseld- 15544263&HeplD=c5fa803dae2fe486ce 2b2d26e3faasb@r10001
(HW 19
Dr.Z. recommends problem 2
2os O
Kate, a bungee jumper, wants to jump off the edge of a bridge that
spans a river below. Kate has a mass m, and the surface of the
bridge is a height h above the water. The bungee cord, which has
length L when unstretched, will first straighten and then stretch as
Review
Express the distance in terms of quantities given in the problem introdsetion.
View Available Hints)
Kate falls.
d L+
Assume the following:
The bungee cord behaves as an ideal spring once it
begins to stretch, with spring constant k
Kate doesn't actually jump but simply steps off the
edge of the bridge and falls straight downward.
Kate's height is negligible compared to the length of
the bungee cord. Hence, she can be treated as a
point particle.
Suboit
Previous Answers
Correct
Part B
Use g for the magnitude of the acceleration due to gravity.
If Kate just touches the surface of the river on her first downward trip (i.e.. before the first bounce), what ie the spring consient l gnore el deeipative foroes
Express kin terms of L, h m, and g.
View Available Hint(s)
ΑΣΦΦ
?
k
Submit
Nexd >
Provide Feedback
P Pearson
Terms of UseI Privacy Policy I PermissionnsI Contact Us
Copyright G 2019 Pearson Education Inc. All rights reserved.
23:2
31/10/2
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Course Home X https://openvellum.ecollege.com/course.html?courseld- 15544263&HeplD=c5fa803dae2fe486ce 2b2d26e3faasb@r10001 (HW 19 Dr.Z. recommends problem 2 2os O Kate, a bungee jumper, wants to jump off the edge of a bridge that spans a river below. Kate has a mass m, and the surface of the bridge is a height h above the water. The bungee cord, which has length L when unstretched, will first straighten and then stretch as Review Express the distance in terms of quantities given in the problem introdsetion. View Available Hints) Kate falls. d L+ Assume the following: The bungee cord behaves as an ideal spring once it begins to stretch, with spring constant k Kate doesn't actually jump but simply steps off the edge of the bridge and falls straight downward. Kate's height is negligible compared to the length of the bungee cord. Hence, she can be treated as a point particle. Suboit Previous Answers Correct Part B Use g for the magnitude of the acceleration due to gravity. If Kate just touches the surface of the river on her first downward trip (i.e.. before the first bounce), what ie the spring consient l gnore el deeipative foroes Express kin terms of L, h m, and g. View Available Hint(s) ΑΣΦΦ ? k Submit Nexd > Provide Feedback P Pearson Terms of UseI Privacy Policy I PermissionnsI Contact Us Copyright G 2019 Pearson Education Inc. All rights reserved. 23:2 31/10/2

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