ASVAB Mechanical Comprehension Practice Test 733257 Results

Your Results Global Average
Questions 5 5
Correct 0 3.93
Score 0% 79%

Review

1

Which of the following surfaces would have the highest coefficient of friction?

77% Answer Correctly

ice

steel

concrete

marble


Solution

Coefficient of friction (μ) represents how much two materials resist sliding across each other.  Smooth surfaces like ice have low coefficients of friction while rough surfaces like concrete have high μ.


2

A fixed pulley has a mechanical advantage of:

68% Answer Correctly

1

2

-1

0


Solution

A fixed pulley is used to change the direction of a force and does not multiply the force applied. As such, it has a mechanical advantage of one. The benefit of a fixed pulley is that it can allow the force to be applied at a more convenient angle, for example, pulling downward or horizontally to lift an object instead of upward.


3

Hydraulics is the transmission of force through the use of which of the following?

73% Answer Correctly

torque

liquids

gear systems

air pressure


Solution

Hydraulics is the transmission of force through the use of liquids. Liquids are especially suited for transferring force in complex machines because they compress very little and can occupy very small spaces. Hydraulic pressure is calculated by dividing force by the area over which it is applied: P = F/A where F is force in pounds, A is area in square inches, and the resulting pressure is in pounds per square inch (psi).


4

Which of the following surfaces would have the lowest coefficient of friction?

85% Answer Correctly

ice

tile

concrete

leather


Solution

Coefficient of friction (μ) represents how much two materials resist sliding across each other.  Smooth surfaces like ice have low coefficients of friction while rough surfaces like concrete have high μ.


5

The steering wheel of a car is an example of which type of simple machine?

89% Answer Correctly

block and tackle

wheel and axle

first-class lever

fixed pulley


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.