6. The tension in a rope that is being used to drag an object with a mass 100 kg across the floor is given by the equation below where T is tension in Newtons and is the angle between the rope and the surface. (Friction has already been factored into the equation.) Determine the angle that minimizes the tension in the rope (to the nearest hundredth of a radian). Remember to check. T= 3000 3sin8+4cos ose</

Algebra: Structure And Method, Book 1
(REV)00th Edition
ISBN:9780395977224
Author:Richard G. Brown, Mary P. Dolciani, Robert H. Sorgenfrey, William L. Cole
Publisher:Richard G. Brown, Mary P. Dolciani, Robert H. Sorgenfrey, William L. Cole
Chapter8: Introduction To Functions
Section8.10: Inverse Variation
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Question 6
6. The tension in a rope that is being used to drag an object with a mass 100 kg across the floor is
given by the equation below where T is tension in Newtons and is the angle between the rope
and the surface. (Friction has already been factored into the equation.) Determine the angle that
minimizes the tension in the rope (to the nearest hundredth of a radian). Remember to check.
3000
3sing+4cos
0≤0<=
Transcribed Image Text:6. The tension in a rope that is being used to drag an object with a mass 100 kg across the floor is given by the equation below where T is tension in Newtons and is the angle between the rope and the surface. (Friction has already been factored into the equation.) Determine the angle that minimizes the tension in the rope (to the nearest hundredth of a radian). Remember to check. 3000 3sing+4cos 0≤0<=
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