What is the relationship between mechanical advantage and velocity ratio for an ideal machine?
When using a combination of pulleys, what is the effect of adding more movable pulleys?
What happens to the velocity ratio if the displacement of load is equal to the displacement of effort?
Which of the following statements is true about mechanical advantage (M.A.)?
What is the primary function of a machine in terms of force application?
If the effort arm is shorter than the load arm, what can be inferred about the mechanical advantage?
Which class of lever is known to always act as a force multiplier?
Which type of lever is exemplified by the action of raising the weight of the body on the toes?
Which of the following best describes the principle of moments in levers?
In a block and tackle system, what is the general formula for the mechanical advantage?
Which class of lever has the fulcrum located between the effort and the load?
In a single movable pulley, how does the mechanical advantage compare to a fixed pulley?