Relativity
White Dwarf
Explosions
Neutron Star
Black Hole
200

Nothing can go faster than the speed of this.

Light

200

Dying stars that are less than 8 solar masses leave behind this.

White Dwarf

200

Supernovae in our own galaxy are visible with this unclothed optical object.

Naked Eye

200

This is the remaining core after a supernova.

Neutron Star

200

This object is produced from a collapsed Neutron Star that is more than 3 solar masses.

Black Hole

400

This man developed these theories, Special and General.

Einstein

400

It would take about this many teaspoons of a white dwarf to weight about 15 tons.

One

400

One example of a visible supernovae is this one which occurred in 1054.

Crab Nebula

400

The size of a Neutron Star is comparable to this city.

New York City

400

Black Holes warp space-time so much that not even this can escape.

Light

600

The unification of space and time.

Spacetime

600

In the case of a white dwarf, there is not enough of this to overcome Electron Degeneracy Pressure.

Gravity

600

There are two types of this, which result from a massive star whose core collapses then recoils with an explosion.

Supernova

600
This amount of a Neutron star would weight about 10 million tons.

Teaspoon

600

These are the particles of light that cannot escape black hole gravity.

Photons

800

This will happen to matter in the presence of spacetime.

Warp

800

This extreme point of a White Dwarf is about 1.4 Solar masses.

Maximum

800

Heavy these are created through tremendous nuclear energy and sent into the universe upon a supernova explosion.

Elements

800

This is a Neutron star spinning very rapidly.

Pulsar

800

The Schwarzchild radius from which nothing can escape a black hole is called this.

Event Horizon

1000

General Relativity has been verified by _________ certain things like the precession of Mercury.

Predicting

1000

This color star is one that has less than 0.08 solar masses.

Brown

1000

If 4 Alpha particles combined, this element would be the result.

Oxygen

1000
A Neutron Star, though dense, cannot exceed 3 of these.

Solar Masses

1000

An object approaching a black hole, although it appears to stop moving, will experience these forces and be torn apart.

Tidal