Determine the resultant and its moment arm relative to origin. a. R = 36.5 lb, 69.3 degrees, 1.48 ft, 2.32 ft to the right of O, 1.92 ft below O b. R = 56.3 lb, 39.6 degrees, 1.48 ft, 2.32 ft to the left of O, 1.92 ft above O c. R = 36.5 lb, 69.3 degrees, 1.48 ft, 2.32 ft to the left of O, 1.92 ft above O d. R = 56.3 lb, 39.6 degrees, 1.48 ft, 2.32 ft to the right of O, 1.92 ft below O
Determine the resultant and its moment arm relative to origin. a. R = 36.5 lb, 69.3 degrees, 1.48 ft, 2.32 ft to the right of O, 1.92 ft below O b. R = 56.3 lb, 39.6 degrees, 1.48 ft, 2.32 ft to the left of O, 1.92 ft above O c. R = 36.5 lb, 69.3 degrees, 1.48 ft, 2.32 ft to the left of O, 1.92 ft above O d. R = 56.3 lb, 39.6 degrees, 1.48 ft, 2.32 ft to the right of O, 1.92 ft below O
Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter2: Matter And Energy
Section: Chapter Questions
Problem 11RQ: The density of tungsten is 1210 lb/ft3. What would be its specific volume?
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Determine the resultant and its moment arm relative to origin.
a. R = 36.5 lb, 69.3 degrees, 1.48 ft, 2.32 ft to the right of O, 1.92 ft below O
b. R = 56.3 lb, 39.6 degrees, 1.48 ft, 2.32 ft to the left of O, 1.92 ft above O
c. R = 36.5 lb, 69.3 degrees, 1.48 ft, 2.32 ft to the left of O, 1.92 ft above O
d. R = 56.3 lb, 39.6 degrees, 1.48 ft, 2.32 ft to the right of O, 1.92 ft below O
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