By Fatskills Exam Guides Team — the exam nerds behind 28,500+ quizzes and 2.1M practice questions across 500+ global exams.
The Electromagnetic Spectrum is the range of all types of electromagnetic radiation. Photon Energy is the energy carried by a single photon, calculated using the formulas E=hν and E=hc/λ. This topic appears in exams to test your understanding of the relationship between energy, frequency, and wavelength of electromagnetic waves. Questions typically involve calculating photon energy or identifying the type of radiation based on its properties.
This topic is tested in physics, chemistry, and engineering exams, including AP Physics, IB Physics, and university-level introductory physics courses. It appears frequently, often carrying 10-15% of the total marks. It tests your ability to apply fundamental formulas and understand the characteristics of different types of electromagnetic radiation.
Intermediate
Question: Calculate the energy of a photon with a frequency of 5 x 10^14 Hz.Step 1: Identify the formula E=hν.Step 2: Substitute the values: E = (6.626 x 10^-34 J·s) x (5 x 10^14 Hz).Step 3: Calculate: E = 3.313 x 10^-19 J.Answer: 3.313 x 10^-19 J.
Question: Find the energy of a photon with a wavelength of 500 nm.Step 1: Convert wavelength to meters: 500 nm = 500 x 10^-9 m.Step 2: Use the formula E=hc/λ.Step 3: Substitute the values: E = (6.626 x 10^-34 J·s) x (3 x 10^8 m/s) / (500 x 10^-9 m).Step 4: Calculate: E = 3.976 x 10^-19 J.Answer: 3.976 x 10^-19 J.
Question: Determine the frequency of a photon with an energy of 2 x 10^-18 J.Step 1: Use the formula E=hν.Step 2: Rearrange to solve for ν: ν = E/h.Step 3: Substitute the values: ν = (2 x 10^-18 J) / (6.626 x 10^-34 J·s).Step 4: Calculate: ν = 3.018 x 10^15 Hz.Answer: 3.018 x 10^15 Hz.
Question: What is the energy of a photon with a frequency of 2 x 10^14 Hz? Options: A) 1.325 x 10^-19 J B) 2.652 x 10^-19 J C) 3.978 x 10^-19 J D) 4.614 x 10^-19 J Correct Answer: A) 1.325 x 10^-19 J Explanation: Use E=hν. E = (6.626 x 10^-34 J·s) x (2 x 10^14 Hz) = 1.325 x 10^-19 J.Why the Distractors Are Tempting: B and C are close but incorrect due to calculation errors. D is too high, suggesting a misunderstanding of the formula.
Question: Calculate the energy of a photon with a wavelength of 400 nm.Options: A) 3.313 x 10^-19 J B) 4.987 x 10^-19 J C) 5.505 x 10^-19 J D) 6.626 x 10^-19 J Correct Answer: B) 4.987 x 10^-19 J Explanation: Use E=hc/λ. E = (6.626 x 10^-34 J·s) x (3 x 10^8 m/s) / (400 x 10^-9 m) = 4.987 x 10^-19 J.Why the Distractors Are Tempting: A and C are close but incorrect due to conversion or calculation errors. D is too high, suggesting confusion with Planck's constant.
Question: What is the frequency of a photon with an energy of 1 x 10^-18 J? Options: A) 1.509 x 10^15 Hz B) 2.013 x 10^15 Hz C) 2.517 x 10^15 Hz D) 3.021 x 10^15 Hz Correct Answer: A) 1.509 x 10^15 Hz Explanation: Use E=hν. ν = (1 x 10^-18 J) / (6.626 x 10^-34 J·s) = 1.509 x 10^15 Hz.Why the Distractors Are Tempting: B, C, and D are close but incorrect due to calculation errors.
Question: Determine the wavelength of a photon with an energy of 5 x 10^-19 J.Options: A) 200 nm B) 300 nm C) 400 nm D) 500 nm Correct Answer: C) 400 nm Explanation: Use E=hc/λ. λ = (6.626 x 10^-34 J·s) x (3 x 10^8 m/s) / (5 x 10^-19 J) = 400 x 10^-9 m = 400 nm.Why the Distractors Are Tempting: A and B are too short, suggesting calculation errors. D is too long, suggesting a misunderstanding of the formula.
Question: Which type of electromagnetic radiation has the highest energy? Options: A) Radio waves B) Microwaves C) X-rays D) Gamma rays Correct Answer: D) Gamma rays Explanation: Gamma rays have the highest frequency and shortest wavelength, thus the highest energy.Why the Distractors Are Tempting: A and B have lower frequencies. C is close but not the highest.
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