When the mechanism is released from rest in the position where 0 = 40°, the 6.9-kg carriage drops and the 9.4-kg sphere rises. Determine the velocity v of the sphere when 0 = 180°. Neglect the mass of the links and treat the sphere as a particle. 255 mm 9.4 kg 255 mm 255 mm 6.9 kg Part 1 Using the fixed pivot point as the datum, find the potential energies in postion 1 (when 0 = 40°) and in position 2 (when 0 = 180°). Answers: V1 = NOm V2 = i NOm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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When the mechanism is released from rest in the position where 0 = 40°, the 6.9-kg carriage drops and the 9.4-kg sphere
rises. Determine the velocity v of the sphere when 0 = 180°. Neglect the mass of the links and treat the sphere as a
particle.
255 mm
9.4 kg
255 mm
255 mm
6.9 kg
Part 1
Using the fixed pivot point as
(when 0 = 180°).
datum, find the potential energies in postion 1 (when 0 = 40°) and in position 2
Answers:
V1 =
i
NOm
V2 =
i
NOm
Transcribed Image Text:When the mechanism is released from rest in the position where 0 = 40°, the 6.9-kg carriage drops and the 9.4-kg sphere rises. Determine the velocity v of the sphere when 0 = 180°. Neglect the mass of the links and treat the sphere as a particle. 255 mm 9.4 kg 255 mm 255 mm 6.9 kg Part 1 Using the fixed pivot point as (when 0 = 180°). datum, find the potential energies in postion 1 (when 0 = 40°) and in position 2 Answers: V1 = i NOm V2 = i NOm
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