The specialty wrench shown in the figure is designed for access to the hold-down bolt on certain automobile distributors. For the configuration shown, where the wrench lies in a vertical plane and a horizontal 290-N force F is applied at A perpendicular to the handle, calculate the moment Mo applied to the bolt at O. For what value of the distance d would the z-component of Mo be zero Assume a = 80 mm, d = 115 mm, h=170 mm, 0 = 26°. F Answers Moi a 0 d h -y i+ i j+ i k) N-m

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The specialty wrench shown in the figure is designed for access to the hold-down bolt on certain automobile distributors. For the
configuration shown, where the wrench lies in a vertical plane and a horizontal 290-N force F is applied at A perpendicular to the
handle, calculate the moment Mo applied to the bolt at O. For what value of the distance d would the z-component of Mo be zero?
Assume a = 80 mm, d = 115 mm, h = 170 mm, 0 = 26°.
F
Answers
Mo ( i
d= i
A
0
d
h
-y
i+ i
mm
j+
k) N-m
Transcribed Image Text:The specialty wrench shown in the figure is designed for access to the hold-down bolt on certain automobile distributors. For the configuration shown, where the wrench lies in a vertical plane and a horizontal 290-N force F is applied at A perpendicular to the handle, calculate the moment Mo applied to the bolt at O. For what value of the distance d would the z-component of Mo be zero? Assume a = 80 mm, d = 115 mm, h = 170 mm, 0 = 26°. F Answers Mo ( i d= i A 0 d h -y i+ i mm j+ k) N-m
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