
De Broglie Wavelength
Authored by Hardeep Grewal
Chemistry
11th Grade
NGSS covered
Used 55+ times

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15 questions
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1.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What did Max Planck tell about light?
Light travels in the form of small packets of energy called photons.
Light travels in the form of small packets of energy called quanta.
Light travels in the form of electromagnetic radiation.
Light is made up of tiny particles called corpuscles.
Tags
NGSS.HS-PS4-3
2.
MULTIPLE SELECT QUESTION
30 sec • 1 pt
Multiple answers can be correct: Energy of light is proportional to:
Directly proportional to frequency
Inversely proportional to wavelength.
Directly proportional to speed of light.
Independant of speed and wavelength
Tags
NGSS.HS-PS4-1
3.
MULTIPLE CHOICE QUESTION
15 mins • 1 pt
Which equation is used to calculate the wavelength associated with matter?
c = λν
λ = c/ν
λ = h / mv
λ = ch / E
Tags
NGSS.HS-PS4-1
4.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What do the different parts of the de Broglie equation (λ = h / mv) equal?
h = Planck's constant, m = meters, v = frequency
h = Planck's constant, m = meters, v = velocity
h = Planck's constant, m = mass, v = frequency
h = Planck's constant, m = mass, v = velocity
Tags
NGSS.HS-PS4-3
5.
MULTIPLE CHOICE QUESTION
15 mins • 1 pt
How did the Heisenberg Uncertainty Principle affect the quantum mechanical model?
You can't know the speed and position of the electron at the same time.
You can know the speed and position of the electron at the same time.
You can't know the mass and charge of an electron at the same time.
You can't know the frequency and wavelength at the same time.
6.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What does it mean to be "quantized"?
The electron's mass is very small.
The electron is actually a wave.
The position & speed of the electron cannot be known at the same time.
The electron is limited to certain positions in the atom because of specific, fixed energy levels.
7.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
The position & speed of the electron cannot be known at the same time.
Planck
Heisenberg
de Broglie
Schrodinger
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