ASVAB General Science Practice Test 697720 Results

Your Results Global Average
Questions 5 5
Correct 0 2.75
Score 0% 55%

Review

1

Which of the following does not represent the freezing point of water?

49% Answer Correctly

32°F

0°F

273K

0°C


Solution

The Fahrenheit scale fixes the freezing point of water at 32°F, the Celsuis scale at 0°C, and the Kelvin scale at 273K.


2

Which of the following is not a characteristic of the Sun?

52% Answer Correctly

is a yellow dwarf star

makes up over 99% of the mass of the solar system

formed 2.6 billion years ago

is composed of hydrogen and helium


Solution

The Sun is a G-type main-sequence star (G2V) but is informally known as a yellow dwarf star. Composed of 73% hydrogen and 25% helium, the hot plasma that makes up the Sun reaches 9,900°F (5,505°C) at the surface. It formed approximately 4.6 billion years ago and makes up 99.86% of the mass in the solar system.


3

The coldest point in the Earth's atmosphere is reached in which atmospheric layer?

53% Answer Correctly

stratosphere

thermosphere

mesosphere

troposphere


Solution

In the mesosphere, temperature again drops as altitude increases until the coldest point in the Earth's atmosphere, the mesopause, is reached where temperatures fall to −225 °F (−143 °C).


4

Within DNA, a variety of a particular gene is called a(n):

55% Answer Correctly

heterozygous

homozygous

chromosome

allele


Solution

The gene is the base unit of inheritance and is contained within DNA. A gene may come in several varieties (alleles) and there are a pair of alleles for every gene. If the alleles are alike, a person is homozygous for that gene. If the alleles are different, heterozygous.


5

The formula  \(\vec{F_{g}} = { Gm_{1}m_{2} \over r^2}\) applies to which of Newton's laws?

66% Answer Correctly

second law of motion

universal gravitation

first law of motion

third law of motion


Solution

Newton's law of universal gravitation defines gravity: All objects in the universe attract each other with an equal force that varies directly as a product of their masses, and inversely as a square of their distance from each other. Expressed as a formula:  \(\vec{F_{g}} = { Gm_{1}m_{2} \over r^2}\) where r is the distance between the two objects and G is the gravitational constant with a value of 6.67 x 10-11.