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Quantum Mechanics Part 2 - CC

Total questions: 10

Worksheet time: 5mins

Name
Class
Date
1.

Who was a big believer in the idea that there is symmetry in nature?

a)

Louis de Broglie

b)

Albert Einstein

c)

Erwin Schrodinger

d)

Matsumora Sensei

2.

What is the equation for light's momentum?

a)

light momentum = Planck's constant * wavelength

b)

light momentum = Planck's constant / wavelength

c)

light momentum = Planck's constant = wavelength

d)

light momentum * Planck's constant = wavelength

3.

What experiment was used to test if matter would act like waves?

a)

wave particle experiment

b)

particle behavior experiement

c)

double slit experiment

d)

light strainer experiement

4.

When the double slit experiment was performed with electrons, what happened?

a)

Nothing, they acted like matter

b)

they diffracted like light

5.

Whose equation is used to calculate the cloud/orbital shape?

a)

Heisenburg

b)

Schrodinger

c)

Einstein's

d)

de Broglie

6.

The idea that a particle can be in more than one state at the same time is an example of ________,

a)

quantum symmetry

b)

quantum leap

c)

wave functionality

d)

quantum superposition

7.

Schrodinger used what animal to explore his famous thought experiment?

a)

a dog

b)

a cat

c)

a bird

d)

an ant

8.

What says you can only know the position and momentum of a particle like an electron up to a certain amount of precision?

a)

Wave-Particle Duality

b)

Planck's Law

c)

Heisenberg's Uncertainty Principle

d)

Schrodinger's Principle of Duality

9.

Based on Heisenberg's Uncertainty Principle, ____.

a)

You can either be precise on the momentum or position of the electron, but not on both at the same time.

b)

You can measure with accuracy both the momentum and position of an electron at one point in time.

c)

Neither momentum or position of an electron can be measured.

10.

Applying the ______ to matter led to the development of a way to analyze the behavior of tiny particles more accurately than ever before.

a)

Schrodinger equation

b)

light

c)

Heisenberg Uncertainty Principle

d)

wave-particle duality