ASVAB Mechanical Comprehension Practice Test 129362 Results

Your Results Global Average
Questions 5 5
Correct 0 3.17
Score 0% 63%

Review

1 If the green box weighs 70 lbs. and is 4 ft. from the fulcrum, how much force would need to be applied at the blue arrow to balance the lever if the arrow's distance from the fulcrum is 7 ft.?
62% Answer Correctly
80 lbs.
40 lbs.
13.33 lbs.
10 lbs.

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 Rb, our missing value, and plugging in our variables yields:

Rb = \( \frac{R_ad_a}{d_b} \) = \( \frac{70 lbs. \times 4 ft.}{7 ft.} \) = \( \frac{280 ft⋅lb}{7 ft.} \) = 40 lbs.


2

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

73% Answer Correctly

gear systems

air pressure

liquids

torque


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).


3 What is the mechanical advantage of this inclined plane if the length of the ramp is 15 ft. and the height of the green box is 3 ft.?
82% Answer Correctly
10
7
5
2

Solution

The mechanical advantage (MA) of an inclined plane is the effort distance divided by the resistance distance. In this case, the effort distance is the length of the ramp and the resistance distance is the height of the green box:

MA = \( \frac{d_e}{d_r} \) = \( \frac{15 ft.}{3 ft.} \) = 5


4

Which of the following statements about this pulley configuration is false?

48% Answer Correctly

This is a block and tackle pulley configuration

Mechanical advantage is the number of ropes that support the resistance

Changes the direction of and multiplies the effort force

Only multiplies the effort force


Solution

A block and tackle is a combination of one or more fixed pulleys and one or more movable pulleys where the fixed pulleys change the direction of the effort force and the movable pulleys multiply it. The mechanical advantage is equal to the number of times the effort force changes direction and can be increased by adding more pulley wheels to the system. An easy way to find the mechanical advantage of a block and tackle pulley system is to count the number of ropes that support the resistance.


5

The principle of moments defines equilibrium in terms of:

53% Answer Correctly

speed

power

energy

torque


Solution

According to the principle of moments, you can maintain equilibrium if the moments (forces) tending to clockwise rotation are equal to the moments tending to counterclockwise rotation. Another name for these moments of force is torque.