A horizontal aluminum rod 4.9 cm in diameter projects 4.4 cm from a wall. A 970 kg object is suspended from the end of the rod. The shear modulus of aluminum is 3.0-1010 N/m². Neglecting the rod's mass, find (a) the shear stress on the rod and (b) the vertical deflection of the end of the rod. (a) Number i Units (b) Number i Units

Mathematics For Machine Technology
8th Edition
ISBN:9781337798310
Author:Peterson, John.
Publisher:Peterson, John.
Chapter64: Volumes Of Spheres And Composite Solid Figures
Section: Chapter Questions
Problem 28A: Compute the number of cubic centimeters of material in the locating saddle shown. Round the answer...
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A horizontal aluminum rod 4.9 cm in diameter projects 4.4 cm from a wall. A 970 kg object is suspended from the end of the rod. The shear modulus of aluminum is 3.0*10^10 N/m^2. Neglecting the rod's mass, find (a) the shear stress on the rod and (b) the vertical deflection of the end of the rod.

A horizontal aluminum rod 4.9 cm in diameter projects 4.4 cm from a wall. A 970 kg object is suspended from the end of the rod. The
shear modulus of aluminum is 3.0-1010 N/m2. Neglecting the rod's mass, find (a) the shear stress on the rod and (b) the vertical
deflection of the end of the rod.
(a) Number
i
Units
(b) Number
i
Units
Transcribed Image Text:A horizontal aluminum rod 4.9 cm in diameter projects 4.4 cm from a wall. A 970 kg object is suspended from the end of the rod. The shear modulus of aluminum is 3.0-1010 N/m2. Neglecting the rod's mass, find (a) the shear stress on the rod and (b) the vertical deflection of the end of the rod. (a) Number i Units (b) Number i Units
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