ASVAB General Science Practice Test 703606 Results

Your Results Global Average
Questions 5 5
Correct 0 3.10
Score 0% 62%

Review

1

What part of the brain is responsible for the major senses (thinking, hearing, seeing)?

65% Answer Correctly

medulla

cerebrum

cerebellum

brainstem


Solution

The cerebrum is the major part of the brain and is responsible for the main senses (thinking, hearing, seeing).


2

Elements that belong to the same period in the Periodic Table of the Elements have the same number of:

50% Answer Correctly

atomic mass units

protons

electron shells

electrons


Solution

The rows of the Periodic Table are called periods and contain elements that have the same number of electron shells ordered from lower to higher atomic number. 


3

Acceleration is the rate of change of velocity per unit of time. Which of these is the formula for acceleration?

59% Answer Correctly

\(\vec{a} = { t \over \Delta \vec{v} }\)

\(\vec{a} = \Delta \vec{v} t \)

\(\vec{a} = { \vec{v} \over t }\)

\(\vec{a} = { \Delta \vec{v} \over t }\)


Solution

Acceleration is the rate of change of velocity per unit of time. In physics, the delta symbol (\(\Delta\)) represents change so the formula for acceleration becomes  \(\vec{a} = { \Delta \vec{v} \over t }\)


4

The first step in the water cycle is:

68% Answer Correctly

infiltration

evaporation

precipitation

reclamation


Solution

The water (hydrologic) cycle describes the movement of water from Earth through the atmosphere and back to Earth. The cycle starts when water evaporates into a gas from bodies of water like rivers, lakes and oceans or transpirates from the leaves of plants.


5

Velocity is the rate at which an object changes position. What is the formula for velocity? 

68% Answer Correctly

\(\vec{v} = { \vec{d} \over t } \)

none of these

\(\vec{v} = { t \over \vec{d} } \)

\(\vec{v} = \vec{d}t \)


Solution

Velocity is the rate at which an object changes position. Rate is measured in time and position is measured in displacement so the formula for velocity becomes  \(\vec{v} = { \vec{d} \over t } \)