ASVAB Mechanical Comprehension Practice Test 977328 Results

Your Results Global Average
Questions 5 5
Correct 0 3.07
Score 0% 61%

Review

1 If the radius of the axle is 3 and the radius of the wheel is 6, what is the mechanical advantage of this wheel and axle configuration?
41% Answer Correctly
-3
3
0.5
2.0

Solution

The mechanical advantage of a wheel and axle is the input radius divided by the output radius:

MA = \( \frac{r_i}{r_o} \)

In this case, the input radius (where the effort force is being applied) is 3 and the output radius (where the resistance is being applied) is 6 for a mechanical advantage of \( \frac{3}{6} \) = 0.5


2

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

73% Answer Correctly

air pressure

liquids

torque

gear systems


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

Which of the following is not a type of bridge?

74% Answer Correctly

truss

block

arch

cable


Solution

The six basic bridge forms are beam, truss, arch, cantilever, cable, and suspension.


4

Which of the following is the formula for hydraulic pressure?

58% Answer Correctly

P = F/A2

P = F/A

P = FA

P = FA2


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).


5

What is work?

60% Answer Correctly

The movement of an object by a force

Force per unit time

Force per unit distance

The potential for exertion


Solution

Work is accomplished when force is applied to an object: W = Fd where F is force in newtons (N) and d is distance in meters (m). Thus, the more force that must be applied to move an object, the more work is done and the farther an object is moved by exerting force, the more work is done. By definition, work is the displacement of an object resulting from applied force.