(4)+The-sandbag-in-the-figure-below-weighs-50-lb.--The-coefficient-of-friction-between-the-rope-and- the-tree-branch-is-0.4. What are the maximum-and-minimum-forces-that-the-man-can-exert-and- maintain equilibrium-if-he-weighs 150-lb-and-the-coefficient-of-friction-between-his-shoes-and- the-ground-is-0.3?¶ Branch Rope Sandbag 50 lb
(4)+The-sandbag-in-the-figure-below-weighs-50-lb.--The-coefficient-of-friction-between-the-rope-and- the-tree-branch-is-0.4. What are the maximum-and-minimum-forces-that-the-man-can-exert-and- maintain equilibrium-if-he-weighs 150-lb-and-the-coefficient-of-friction-between-his-shoes-and- the-ground-is-0.3?¶ Branch Rope Sandbag 50 lb
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:(4)+The-sandbag-in-the-figure-below-weighs-50-lb.--The-coefficient-of-friction-between-the-rope-and-
the-tree-branch-is-0.4. What are the maximum-and-minimum-forces-that-the-man-can-exert-and-
maintain equilibrium-if-he-weighs 150-lb-and-the-coefficient-of-friction-between-his-shoes-and-
the-ground-is-0.3?¶
Branch
Rope
Sandbag
50 lb
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