ASVAB Mechanical Comprehension Practice Test 9668 Results

Your Results Global Average
Questions 5 5
Correct 0 3.29
Score 0% 66%

Review

1

A a seesaw / teeter-totter is an example of which of the following?

69% Answer Correctly

third-class lever

inclined plane

first-class lever

second-class lever


Solution

A first-class lever is used to increase force or distance while changing the direction of the force. The lever pivots on a fulcrum and, when a force is applied to the lever at one side of the fulcrum, the other end moves in the opposite direction. The position of the fulcrum also defines the mechanical advantage of the lever. If the fulcrum is closer to the force being applied, the load can be moved a greater distance at the expense of requiring a greater input force. If the fulcrum is closer to the load, less force is required but the force must be applied over a longer distance. An example of a first-class lever is a seesaw / teeter-totter.


2

Friction between two or more solid objects that are not moving relative to each other is called:

73% Answer Correctly

kinetic friction

static friction

gravitational friction

dynamic friction


Solution

Static friction is friction between two or more solid objects that are not moving relative to each other. An example is the friction that prevents a box on a sloped surface from sliding farther down the surface.


3

Power is the rate at which:

62% Answer Correctly

friction is overcome

work is done

input force is transferred to output force

potential energy is converted into kinetic energy


Solution

Power is the rate at which work is done, P = w/t, or work per unit time. The watt (W) is the unit for power and is equal to 1 joule (or newton-meter) per second. Horsepower (hp) is another familiar unit of power used primarily for rating internal combustion engines. 1 hp equals 746 watts.


4

The science that deals with motion and the forces that produce motion is called which of the following?

57% Answer Correctly

mechanics

aeronautics

physics

engineering


Solution

Mechanics deals with motion and the forces that produce motion.


5 If you lift a 46 lbs. rock 11 ft. from the ground, how much work have you done?
71% Answer Correctly
4 ft⋅lb
None of these is correct
1012 ft⋅lb
506 ft⋅lb

Solution
Work is force times distance. In this case, the force is the weight of the rock so:
\( W = F \times d \)
\( W = 46 \times 11 \)
\( W = 506 \)