Periodic Table
Groups & Periods
Atomic Structure
Waves & Radiation
Photon Power
100

What does the atomic number tell you?

The number of protons in the nucleus.

100

Are periods horizontal or vertical?

Horizontal.

100

Name the three main subatomic particles.

Protons, neutrons, electrons.

100

What is wavelength?

The distance between corresponding points of consecutive waves, such as crest to crest.

100

What is a photon?

A packet (quantum) of electromagnetic energy.

200

What is the chemical symbol for gold?

Au.

200

Are groups horizontal or vertical?

Vertical.

200

Which subatomic particle has a negative charge?

Electron.

200

What is frequency?

The number of complete wave cycles passing a point per second.

200

Which photon has more energy: red or violet?

Violet.

300

Which element has atomic number 8?

Oxygen (O).

300

What do elements in the same group often have in common?

Similar chemical properties/behavior.

300

Where are protons and neutrons found?

In the nucleus.

300

If wavelength increases, what happens to frequency for electromagnetic radiation?

Frequency decreases.

300

Higher frequency means ______ photon energy.

Higher.

400

Name an element in the same group as sodium.

lithium or potassium

400

Which group contains the alkali metals?

Group 1.

400

What did Rutherford's gold-foil experiment show?

Atoms are mostly empty space with a small, dense, positively charged
nucleus

400

Put these in increasing frequency: X-rays, radio waves, visible light.

Radio waves -> visible light -> X-rays.

400

Which carries more energy per photon: visible light or X-rays?

X-rays.

500

Choose two elements that should have similar chemical behavior and explain why.

they should be in the same group because elements in a group have similar valence-electron patterns and often similar chemical behavior.

500

Would potassium behave more like sodium or calcium?
Explain.

Sodium, because potassium and sodium are both in Group 1.

500

Why don't electrons simply fall into the nucleus?

Electrons occupy allowed quantum states/energy levels; they are not tiny planets orbiting classically

500

If wavelength gets shorter, what happens to frequency AND photon energy?

Frequency increases and photon energy increases.

500

Explain in your own words: 'Higher frequency = higher photon energy.'

As the frequency of electromagnetic radiation increases, each photon carries more energy.

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