3.) In the figure below the Achilles tendon force of F₁ = 650 N is mobilized when the man tries to stand on his toes. As this is done, each of his feet is subjected to a reactive force of N₁ = 400 N. Determine the resultant moment of F, and Nf about the ankle joint A. 200 mm 65 mm |N₁ = 400 N 100 mm In the above figure the Achilles tendon force Ft is mobilized when the man tries to stand on his toes. As this is done, each of his feet is subjected to a reactive force of N₁ = 400 N. If the resultant moment produced by forces F₁ and Nt about the ankle joint A is required to be zero, determine the magnitude of Ft.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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3.) In the figure below the Achilles tendon
force of Ft = 650 N is mobilized when the
man tries to stand on his toes. As this is
done, each of his feet is subjected to a
reactive force of Nf = 400 N. Determine
the resultant moment of F and Nf about
the ankle joint A.
200 mm
65 mm
100 mm
N₁ = 400 N
In the above figure the Achilles tendon
force Ft is mobilized when the man tries
to stand on his toes. As this is done,
each of his feet is subjected to a reactive
force of N₁ = 400 N. If the resultant
moment produced by forces F₁ and N₁
about the ankle joint A is required to be
zero, determine the magnitude of Ft.
Transcribed Image Text:3.) In the figure below the Achilles tendon force of Ft = 650 N is mobilized when the man tries to stand on his toes. As this is done, each of his feet is subjected to a reactive force of Nf = 400 N. Determine the resultant moment of F and Nf about the ankle joint A. 200 mm 65 mm 100 mm N₁ = 400 N In the above figure the Achilles tendon force Ft is mobilized when the man tries to stand on his toes. As this is done, each of his feet is subjected to a reactive force of N₁ = 400 N. If the resultant moment produced by forces F₁ and N₁ about the ankle joint A is required to be zero, determine the magnitude of Ft.
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