Quantum Mechanics Part 1 - CC

Quantum Mechanics Part 1 - CC

9th Grade - University

12 Qs

quiz-placeholder

Similar activities

Atomic Structure

Atomic Structure

8th Grade - University

15 Qs

Rates of reaction

Rates of reaction

11th - 12th Grade

16 Qs

Atoms and the Periodic Table

Atoms and the Periodic Table

7th - 9th Grade

10 Qs

Quantum Theory

Quantum Theory

University

10 Qs

Fission/Fusion Quiz

Fission/Fusion Quiz

10th Grade

10 Qs

Unit 3 Review

Unit 3 Review

9th Grade

17 Qs

Waves and particles

Waves and particles

9th Grade

7 Qs

Dual Nature of Light

Dual Nature of Light

11th Grade - University

15 Qs

Quantum Mechanics Part 1 - CC

Quantum Mechanics Part 1 - CC

Assessment

Quiz

Science

9th Grade - University

Hard

NGSS
HS-PS4-3, HS-PS4-4, HS-PS4-1

Standards-aligned

Created by

Theresa Brown

Used 13+ times

FREE Resource

12 questions

Show all answers

1.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A ________ is basically the idealized version of a radiating object.

frequency

light ray

black hole

blackbody

Tags

NGSS.HS-PS4-1

NGSS.HS-PS4-3

2.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

This law's equation predicts that the higher the radiation emitted from a blackbody the higher the intensity.

Planck's Law of Blackbody Radiation

Einstein's theory of relativity

Rayleigh-Jeans Law

Kirchhoff's Law

Tags

NGSS.HS-PS4-3

NGSS.HS-PS4-4

3.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

At what point in experiments did the results not fit the Rayleigh-Jeans Law equation?

at ultraviolet frequencies and higher

at infrared frequencies and lower

below ultraviolet frequencies

the results always fit

Tags

NGSS.HS-PS4-4

4.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What term describes the contradiction of the principle of the conservation of energy?

Congressional Meetings

The Infrared Contradiction

The Visible Light Cataclysm

The Ultraviolet Catastrophe

5.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What is the equation for Planck's Law?

Energy of a photon = Planck's constant * frequency of light

Energy of a photon = Planck's constant / frequency of light

Energy of a photon * Planck's constant = frequency of light

Energy of a photon = Planck's constant = frequency of light

Tags

NGSS.HS-PS4-1

NGSS.HS-PS4-3

6.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Energy could only fit in discreet packets called _____.

particles

blackbodies

protons

quanta

7.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Eventually these discreet packets got called ____ because of Einstein's work.

particles

blackbodies

photons

quanta

Tags

NGSS.HS-PS4-3

Create a free account and access millions of resources

Create resources
Host any resource
Get auto-graded reports
or continue with
Microsoft
Apple
Others
By signing up, you agree to our Terms of Service & Privacy Policy
Already have an account?