ASVAB Mechanical Comprehension Practice Test 909241 Results

Your Results Global Average
Questions 5 5
Correct 0 3.26
Score 0% 65%

Review

1

One Horsepower (hp) is equal to how many watts?

76% Answer Correctly

1492

746

1

9.8


Solution

Power is the rate at which work is done, P = w/t, or work per unit time. The watt (W) is the unit for power and is equal to 1 joule (or newton-meter) per second. Horsepower (hp) is another familiar unit of power used primarily for rating internal combustion engines. 1 hp equals 746 watts.


2

Which of the following will increase the mechanical advantage of a second-class lever?

55% Answer Correctly

move the fulcrum between the force and the object being lifted

move the object being lifted closer to the fulcrum

move the object being lifted farther away from the fulcrum

decrease the length of the lever


Solution

A second-class lever is used to increase force on an object in the same direction as the force is applied. This lever requires a smaller force to lift a larger load but the force must be applied over a greater distance. The fulcrum is placed at one end of the lever and mechanical advantage increases as the object being lifted is moved closer to the fulcrum or the length of the lever is increased. An example of a second-class lever is a wheelbarrow.


3

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

77% Answer Correctly

steel

ice

marble

concrete


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.


4 If the green box weighs 70 lbs. and is 9 ft. from the fulcrum, how much weight would need to be placed at the blue arrow to balance the lever if the arrow's distance from the fulcrum is 8 ft.?
63% Answer Correctly
0 lbs.
78.75 lbs.
315 lbs.
19.69 lbs.

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

Rb = \( \frac{R_ad_a}{d_b} \) = \( \frac{70 lbs. \times 9 ft.}{8 ft.} \) = \( \frac{630 ft⋅lb}{8 ft.} \) = 78.75 lbs.


5

The science that deals with motion and the forces that produce motion is called which of the following?

57% Answer Correctly

mechanics

engineering

aeronautics

physics


Solution

Mechanics deals with motion and the forces that produce motion.