ASVAB Mechanical Comprehension Practice Test 960287 Results

Your Results Global Average
Questions 5 5
Correct 0 2.66
Score 0% 53%

Review

1

The principle of conservation of mechanical energy states that, as long as no other forces are applied, what will remain constant as an object falls?

45% Answer Correctly

acceleration

potential energy

kinetic energy

total mechanical energy


Solution

As an object falls, its potential energy is converted into kinetic energy. The principle of conservation of mechanical energy states that, as long as no other forces are applied, total mechanical energy (PE + KE) of the object will remain constant at all points in its descent.


2

Which of the following represents the force a surface exerts when an object presses against it?

48% Answer Correctly

counter force

mass

friction

normal force


Solution

Normal force (FN) represents the force a surface exerts when an object presses against it.


3

What type of load doesn't create specific stress points or vary with time?

60% Answer Correctly

non-uniformly distributed load

concentrated load

static uniformly distributed load

impact load


Solution

A concentrated load acts on a relatively small area of a structure, a static uniformly distributed load doesn't create specific stress points or vary with time, a dynamic load varies with time or affects a structure that experiences a high degree of movement, an impact load is sudden and for a relatively short duration and a non-uniformly distributed load creates different stresses at different locations on a structure.


4 The green box weighs 45 lbs. and a 75 lbs. weight is placed 1 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?
57% Answer Correctly
0.56 ft.
1.67 ft.
45 ft.
0.42 ft.

Solution

To balance this lever the torques on each side of the fulcrum must be equal. Torque is weight x distance from the fulcrum so the equation for equilibrium is:

Rada = Rbdb

where a represents the left side of the fulcrum and b the right, R is resistance (weight) and d is the distance from the fulcrum.

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

da = \( \frac{R_bd_b}{R_a} \) = \( \frac{75 lbs. \times 1 ft.}{45 lbs.} \) = \( \frac{75 ft⋅lb}{45 lbs.} \) = 1.67 ft.


5

An inclined plane increases ___________ to reduce ____________.

58% Answer Correctly

force, distance

distance, force

force, power

distance, power


Solution

An inclined plane is a simple machine that reduces the force needed to raise an object to a certain height. Work equals force x distance and, by increasing the distance that the object travels, an inclined plane reduces the force necessary to raise it to a particular height. In this case, the mechanical advantage is to make the task easier. An example of an inclined plane is a ramp.