Planets
Sun and Stars
Gravity and Orbits
Galaxies and Space
Mystery Science
100

The planet closest to the Sun.

What is Mercury?

100

What type of object is the Sun?

A star.

100

What force keeps planets in orbit around the Sun?

Gravity

100

The galaxy that contains our solar system.

What is the Milky Way?

100

I am rocky.
I am the third planet from the Sun.
I have one natural satellite.

Who am I?

Earth

200

The largest planet in our solar system.

What is Jupiter?

200

Why does the Sun appear much larger and brighter than other stars?

It is much closer to Earth.

200

What object provides most of the gravitational pull that keeps the planets in their orbits?

The Sun

200

A huge collection of stars, gas, dust, and other matter held together by gravity.

What is a galaxy?

200

I am not a planet.
Planets orbit me.
I provide most of the gravitational pull controlling planetary orbits in our solar system.

Who am I?

The Sun

300

Put these planets in order from closest to farthest from the Sun: Mars, Venus, Mercury, Earth.

Mercury → Venus → Earth → Mars


300

Give two characteristics scientists can use to describe or compare stars.

color, size, temperature, brightness, mass, etc.
300

True or false: There is no gravity in space. Explain your answer.

False. Gravity acts throughout space and is responsible for phenomena such as planets orbiting stars and moons orbiting planets.

300

Put these in order from smallest scale to largest scale:

Milky Way — Earth — Universe — Solar System


Earth → Solar System → Milky Way → Universe

300

A student created this model:

Earth → Milky Way → Solar System → Universe

They say it shows smallest to largest.

What is wrong with the model?

The Milky Way and solar system need to switch places.

Correct model:
Earth → Solar System → Milky Way → Universe

400

Give two differences between the inner planets and the outer planets.

inner planets are smaller, rocky, denser, closer to the Sun, have fewer moons, and lack rings; outer planets are larger gas/ice giants, farther from the Sun, have many moons, and have ring systems.

400

A student says, “The Sun must be the largest star because it looks larger than every other star in the sky.” What is wrong with this reasoning?

The Sun appears larger because it is much closer to Earth. Apparent size does not prove it is the largest star.


400

Why doesn't Earth simply fly away from the Sun as it moves through space?

The Sun's gravity continually pulls Earth toward the Sun, changing the direction of Earth's motion and keeping Earth in orbit.


400

Which statement is correct, and explain why?

A. The Milky Way is inside our solar system.
B. Our solar system is inside the Milky Way.
C. The Milky Way and solar system are the same thing.
D. Our solar system is larger than the Milky Way.

B. Our solar system is one small part of the Milky Way galaxy.

400

Which object doesn't belong with the others, and why?

Mercury — Venus — Earth — Jupiter


Jupiter. Mercury, Venus, and Earth are rocky inner planets; Jupiter is an outer gas giant.


500

A planet is large, has rings, has many moons, and is made mostly of gas. Would you expect to find this planet in the inner or outer solar system? Explain using two pieces of evidence.

Outer solar system. Large size, rings, many moons, and gaseous composition are characteristics of the outer planets.

500

Answer: No. How bright a star appears depends on both its actual luminosity and its distance from Earth.

Two stars appear equally bright from Earth. Can you conclude that they are the same distance from Earth? Explain.

No. How bright a star appears depends on both its actual luminosity and its distance from Earth.

500

Planet.   Distance from Sun    Time to Orbit Sun

A              58 million km         88 days

B             150 million km        365 days

C              228 million km       687 days

D              778 million km       4,333 days

What pattern do you notice between a planet's distance from the Sun and the amount of time it takes to orbit?


As distance from the Sun increases, orbital period generally increases. For example, A is only 58 million km away and takes 88 days, while D is 778 million km away and takes 4,333 days.


500

Object.     Approximate Diameter

Earth                  12,742 km

Jupiter               139,820 km

Sun                   1,392,700 km

Approximately how many Earth diameters would fit across the diameter of the Sun?

A. 11
B. 50
C. 109
D. 1,000

C — approximately 109 Earths.

500

A scientist-in-training writes:


“Earth orbits the Sun because Earth is the largest object in the solar system. Gravity only works on planets, so it does not affect stars or galaxies.”


Identify TWO scientific errors and correct them.

  • Earth does not orbit the Sun because Earth is largest; the Sun is much more massive and its gravity plays the dominant role in Earth's orbit.
  • Gravity does not only affect planets. It acts between objects with mass and plays a role in stars, solar systems, and galaxies.