Using your knowledge of these equations: Energy unit conversions between electron volts (eV) and joules, (J); Einstein's photon energy equation; Compton's momentum equation; de Broglie's wavelength equation Quantitatively compare a 3.1 eV photon and a 3.1 eV electron by completing the following data table (attached). Note: For any required calculation, be sure to include both your calculation and your answer.
Using your knowledge of these equations: Energy unit conversions between electron volts (eV) and joules, (J); Einstein's photon energy equation; Compton's momentum equation; de Broglie's wavelength equation Quantitatively compare a 3.1 eV photon and a 3.1 eV electron by completing the following data table (attached). Note: For any required calculation, be sure to include both your calculation and your answer.
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Using your knowledge of these equations:
- Energy unit conversions between electron volts (eV) and joules, (J);
- Einstein's photon energy equation;
- Compton's momentum equation;
- de Broglie's wavelength equation
Quantitatively compare a 3.1 eV photon and a 3.1 eV electron by completing the following data table (attached).
Note: For any required calculation, be sure to include both your calculation and your answer.
![Property
Photon
Electron
Energy (J)
Rest mass (kg)
Speed (m/s)
Wavelength (m)
Momentum (kg•m/s)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa64b13fe-fc2d-4845-ba01-8f09d1fc4376%2F49b7b7f4-7da8-4270-b60e-99bc5541e06f%2F9b8td3_processed.png&w=3840&q=75)
Transcribed Image Text:Property
Photon
Electron
Energy (J)
Rest mass (kg)
Speed (m/s)
Wavelength (m)
Momentum (kg•m/s)
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