QUESTION IMAGE
Question
quantum mechanics
plancks equation
- what is the energy and frequency of photons with a wavelength of 632 nm?
de broglie wavelength
- an electron has the same de broglie wavelength as a 1024-nm photon. what is the speed of the electron?
Identify given values and constants
We identify the given values and physical constants for both questions.
For Question 3:
- Wavelength \(\lambda = 632\text{ nm} = 632 \times 10^{-9}\text{ m}\)
- Planck's constant \(h = 6.63 \times 10^{-34}\text{ J}\cdot\text{s}\)
- Speed of light \(c = 3.0 \times 10^8\text{ m/s}\)
For Question 4:
- Wavelength \(\lambda = 1024\text{ nm} = 1024 \times 10^{-9}\text{ m}\)
- Mass of an electron \(m_e = 9.11 \times 10^{-31}\text{ kg}\)
- Planck's constant \(h = 6.63 \times 10^{-34}\text{ J}\cdot\text{s}\)
Calculate frequency of the photon
We use the wave relation to find the frequency \(f\):
$$
f = \frac{c}{\lambda}
$$
Substituting the values:
$$
f = \frac{3.0 \times 10^8\text{ m/s}}{632 \times 10^{-9}\text{ m}} \approx 4.75 \times 10^{14}\text{ Hz}
$$
Calculate energy of the photon
We use Planck's equation to find the energy \(E\):
$$
E = \frac{hc}{\lambda} = hf
$$
Substituting the values:
$$
E = (6.63 \times 10^{-34}\text{ J}\cdot\text{s}) \times (4.7468 \times 10^{14}\text{ s}^{-1}) \approx 3.15 \times 10^{-19}\text{ J}
$$
Calculate speed of the electron
We use the de Broglie wavelength formula:
$$
\lambda = \frac{h}{p} = \frac{h}{m_e v}
$$
Rearranging to solve for the speed \(v\):
$$
v = \frac{h}{m_e \lambda}
$$
Substituting the values:
$$
v = \frac{6.63 \times 10^{-34}\text{ J}\cdot\text{s}}{(9.11 \times 10^{-31}\text{ kg}) \times (1024 \times 10^{-9}\text{ m})}
$$
Calculating the denominator:
$$
m_e \lambda = 9.11 \times 10^{-31} \times 1.024 \times 10^{-6} = 9.3286 \times 10^{-37}\text{ kg}\cdot\text{m}
$$
Calculating the speed:
$$
v = \frac{6.63 \times 10^{-34}}{9.3286 \times 10^{-37}} \approx 711\text{ m/s}
$$
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Question 3
- Energy (\(E\)): \(3.15 \times 10^{-19}\text{ J}\)
- Frequency (\(f\)): \(4.75 \times 10^{14}\text{ Hz}\)
Question 4
- Speed of the electron (\(v\)): \(711\text{ m/s}\)