Answer:
Wl = 1740 N
Step-by-step explanation:
maximum lift weight unaided = force exerted (F) = 650 N
length of the wheelbarrow (L) = 1.4 m
weight of the wheelbarrow (w) = 80 N
distance of center of gravity of the wheel barrow from the wheel = 0.5 m
distance of center of gravity of the load from the wheel = 0.5 m
find the weight of the load (Wl)
from the diagram attached we can see that there is going to be a rotation about the axis A. let clockwise rotation be positive
ΣT = (F x 1.4) - ((Wl x 0.5) + (w x 0.5) = 0
(F x 1.4) = ((Wl x 0.5) + (w x 0.5)
Wl =
![((F x 1.4) - (w x 0.5))/(0.5)](https://img.qammunity.org/2020/formulas/physics/high-school/qflgfeg24olhkzjvbsdpyr2jkjd48s2kd1.png)
Wl =
![((650 x 1.4) - (80 x 0.5))/(0.5)](https://img.qammunity.org/2020/formulas/physics/high-school/gebmn6rhfcv5u7374drhox6jrdksflapps.png)
Wl = 1740 N