ASVAB General Science Practice Test 555081 Results

Your Results Global Average
Questions 5 5
Correct 0 2.95
Score 0% 59%

Review

1

Which of the following is the formula for work?

47% Answer Correctly

\(W = {\vec{F} \over \vec{d} }\)

\(W = \vec{F}\vec{d}\)

\(W = {{F}\over{d}}\)

\(W = {F}{d}\)


Solution

Work is performed on an object when an applied force causes displacement along the same vector. Measured in joules (J) or newton-meter (Nm), work is calculated by multiplying force times displacement:  \(W = \vec{F}\vec{d}\)


2

The asteroids in the Kuiper belt are composed of which of the following?

61% Answer Correctly

minerals

gaseous methane, ammonia, and water

rock

frozen methane, ammonia, and water


Solution

The Kuiper Belt is similar to the asteroid belt but much larger. Extending beyond the orbit of Neptune, it contains objects composed mostly of frozen methane, ammonia, and water. Most notably, the Kuiper Belt is home to Pluto, a dwarf planet that, until a 2006 reclassification, was considered the ninth planet of the solar system.


3

Work is measured in:

75% Answer Correctly

watts

horsepower

joules or newton-meters

amps


Solution

Work is performed on an object when an applied force causes displacement along the same vector. Measured in joules (J) or newton-meters (Nm), work is calculated by multiplying force times displacement:  \(W = \vec{F}\vec{d}\)


4

Someone who has Rh-factor __________ blood cannot receive blood with a __________ type.

57% Answer Correctly

positive, antigen

positive, negative

antigen, negative

negative, positive


Solution

Blood transfer is limited by the type and Rh factor of the blood. Someone who has Rh-factor negative blood cannot receive blood with a positive type but a person with Rh-factor positive type blood can receive Rh-negative blood. Type O negative blood is the universal donor because it can be given to a person with any blood type. Type AB positive is the universal recipient meaning someone with this blood type can receive any other type of blood.


5

The formula for acceleration is which of the following?

56% Answer Correctly

\(\vec{a} = { \vec{F} \over m }\)

\(\vec{a} = { m \over \vec{F} }\)

\(\vec{a} = { m \over F }\)

\(\vec{a} = \vec{F} m\)


Solution

Newton's second law of motion leads to the formula for acceleration which is a measure of the rate of change of velocity per unit time and, if you solve for positive acceleration, reveals how much net force is needed to overcome an object's mass.  The formula for acceleration is  \(\vec{a} = { \vec{F} \over m }\) or, solving for force,  \(\vec{F} = m\vec{a}\).