ASVAB Mechanical Comprehension Practice Test 779804 Results

Your Results Global Average
Questions 5 5
Correct 0 3.22
Score 0% 64%

Review

1

The mechanical advantage of a wheel and axle is equal to the:

61% Answer Correctly

length of the axle

difference in the diameters of the wheels

ratio of the diameters of the wheels

difference in the lengths of the axles


Solution

A wheel and axle uses two different diameter wheels mounted to a connecting axle. Force is applied to the larger wheel and large movements of this wheel result in small movements in the smaller wheel. Because a larger movement distance is being translated to a smaller distance, force is increased with a mechanical advantage equal to the ratio of the diameters of the wheels. An example of a wheel and axle is the steering wheel of a car.


2

Two or more pulleys used together are called:

71% Answer Correctly

third-class lever

block and tackle

gears

wheel and axle


Solution

Two or more pulleys used together constitute a block and tackle which, unlike a fixed pulley, does impart mechanical advantage as a function of the number of pulleys that make up the arrangement.  So, for example, a block and tackle with three pulleys would have a mechanical advantage of three.


3

The force required to initally get an object moving is __________ the force required to keep it moving. 

76% Answer Correctly

higher than

lower than

the same as

opposite


Solution

For any given surface, the coefficient of static friction is higher than the coefficient of kinetic friction. More force is required to initally get an object moving than is required to keep it moving. Additionally, static friction only arises in response to an attempt to move an object (overcome the normal force between it and the surface).


4

A wedge converts force applied to its blunt end into force __________ its inclined surface.

57% Answer Correctly

parallel to

along

opposite to

perpendicular to


Solution

The wedge is a moving inclined plane that is used to lift, hold, or break apart an object. A wedge converts force applied to its blunt end into force perpendicular to its inclined surface. In contrast to a stationary plane where force is applied to the object being moved, with a wedge the object is stationary and the force is being applied to the plane. Examples of a wedge include knives and chisels.


5 If the green box weighs 70 lbs. and 10 lbs. of force is applied 3 ft. from the fulcrum at the blue arrow, how far from the fulcrum would the green box need to be placed to balance the lever?
55% Answer Correctly
0.43 ft.
0.11 ft.
1.29 ft.
0.14 ft.

Solution

To balance this lever the torques at the green box and the blue arrow must be equal. Torque is weight x distance from the fulcrum so the equation for equilibrium is:

Rada = Rbdb

where a represents the green box and b the blue arrow, R is resistance (weight/force) and d is the distance from the fulcrum.

Solving for da, our missing value, and plugging in our variables yields:

da = \( \frac{R_bd_b}{R_a} \) = \( \frac{10 lbs. \times 3 ft.}{70 lbs.} \) = \( \frac{30 ft⋅lb}{70 lbs.} \) = 0.43 ft.