What is Quantum Tunneling

What is Quantum Tunneling

Assessment

Interactive Video

Physics, Science

11th Grade - University

Practice Problem

Hard

Created by

Wayground Content

FREE Resource

The video contrasts classical physics with quantum mechanics using a ball analogy. In classical physics, a ball cannot exceed its initial height due to energy conservation. Quantum mechanics, however, introduces a probabilistic nature where particles can appear in unexpected places, such as an electron inside an atom's nucleus, illustrating quantum tunneling.

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5 questions

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1.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

In classical mechanics, why can't a ball roll higher than its initial drop height?

Because of air resistance

Due to conservation of energy

Because of friction

Due to gravitational pull

2.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What is a key difference between classical and quantum mechanics?

Classical mechanics involves particles being in two places at once

Quantum mechanics is deterministic

Quantum mechanics is probabilistic

Classical mechanics is probabilistic

3.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

In quantum mechanics, where might you unexpectedly find a particle?

Only at the top of a mountain

Only at the bottom of a valley

Only on a flat surface

Inside a mountain

4.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What unusual behavior of electrons is explained by quantum mechanics?

Electrons orbiting in perfect circles

Electrons being stationary

Electrons sometimes being inside the nucleus

Electrons moving in straight lines

5.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

How does quantum mechanics challenge classical expectations about particle location?

Particles are always found in their expected locations

Particles can be found in unexpected locations

Particles never move from their initial position

Particles follow a predictable path

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