A wheel barrow is used to lift a 150 lb load. The length from the wheel axle to the center of the load is 2 ft. The length from the wheel and axle to the effort is 6 ft. a. What is the ideal mechanical advantage of the system? b. Using static equilibrium calculations, calculate the effort force needed to overcome the resistance force in the system.

Respuesta :

Answer:

[tex]3:1[/tex]

[tex]50\ \text{lb}[/tex]

Explanation:

[tex]F_r=150\ \text{lb}[/tex]

Mechanical advantage is will be the ratio of the distances from the wheel axle of the forces.

[tex]MA=\dfrac{6}{2}\\\Rightarrow MA=3:1[/tex]

The ideal mechanical advantage of the system is [tex]3:1[/tex].

The moment in the system is conserved so moment about the wheel axle is

[tex]M_e=M_r\\\Rightarrow 6F_e=2F_r\\\Rightarrow F_e=\dfrac{2F_r}{6}\\\Rightarrow F_e=\dfrac{2\times 150}{6}\\\Rightarrow F_e=50\ \text{lb}[/tex]

The required effort force is [tex]50\ \text{lb}[/tex].

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