ASVAB Mechanical Comprehension Practice Test 790692 Results

Your Results Global Average
Questions 5 5
Correct 0 3.12
Score 0% 62%

Review

1

The force exerted on an object due to gravity is called:

70% Answer Correctly

mass

density

potential energy

weight


Solution

Mass is an intrinsic property of matter and does not vary. Weight is the force exerted on the mass of an object due to gravity and a specific case of Newton's Second Law of Motion. Replace force with weight and acceleration with acceleration due to gravity on Earth (g) and the result is the formula for weight: W = mg or, substituting for g, weight equals mass multiplied by 9.8 m/s2.


2

Concurrent forces:

55% Answer Correctly

act in a common plane

act along the same line of action

act in a common dimension

pass through a common point


Solution

Collinear forces act along the same line of action, concurrent forces pass through a common point and coplanar forces act in a common plane.


3

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

89% Answer Correctly

wheel and axle

block and tackle

fixed pulley

first-class lever


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.


4

Which of the following is not a type of simple machine?

58% Answer Correctly

pulley

lever

gear

screw


Solution

The six types of simple machines are the lever, wheel and axle, pulley, inclined plane, wedge, and screw.


5

Force of friction due to kinetic friction is __________ the force of friction due to static friction.

40% Answer Correctly

opposite

higher than

the same as

lower than


Solution

The formula for force of friction (Ff) is the same whether kinetic or static friction applies: Ff = μFN. To distinguish between kinetic and static friction, μk and μs are often used in place of μ.