ASVAB General Science Practice Test 235219 Results

Your Results Global Average
Questions 5 5
Correct 0 3.46
Score 0% 69%

Review

1

Which of these layers is found directly below the Earth's crust?

71% Answer Correctly

outer core

continents

mantle

inner core


Solution

The crust is the Earth's outermost layer and is divided into oceanic and continental types. Oceanic crust is 3 miles (5 km) to 6 miles (10 km) thick and is composed primarily of denser rock. Continental crust is 20 to 30 miles (30 to 50 km) thick and composed primarily of less dense rock. The crust makes up approximately one percent of the Earth's total volume.


2

Which of the following is a decomposer?

89% Answer Correctly

mosquito

fungi

ferret

pine tree


Solution

Decomposers (saprotrophs) are organisms such as bacteria and fungi that break down the organic matter in the dead bodies of plants and animals into simple nutrients.


3

The energy posessed by a thrown baseball is an example of what kind of energy?

79% Answer Correctly

transitional

gravitational

potential

kinetic


Solution

Kinetic energy is the energy posessed by a moving object. Potential energy is stored energy in a stationary object based on its location, position, shape, or state.


4

Which of the following is the formula for work?

47% Answer Correctly

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

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

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

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


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:  \(W = \vec{F}\vec{d}\)


5

Which of the following is not a vector quantity?

62% Answer Correctly

acceleration

mass

momentum

velocity


Solution

Velocity and displacement are vector quantities which means each is fully described by both a magnitude and a direction.  In contrast, scalar quantities are quantities that are fully described by a magnitude only.  A variable indicating a vector quantity will often be shown with an arrow symbol:  \(\vec{v}\)