Concept explainers
(a)
The transition in the Balmer series which produces the smallest frequency photon.
(a)
Answer to Problem 2SP
The transition in the Balmer series which produces the smallest frequency photon is
Explanation of Solution
Hydrogen spectrum lies in the visible, ultraviolet as well as infrared regions. Hydrogen spectrum is divided into different spectral series named as Lyman series, Balmer series, Paschen series, Brackett series and Pfund series. The wavelengths of lines in each series is determined using Balmer’s formula.
The Balmer’s formula is given as
From the Balmer’s formula it is clear that the photon having smallest frequency or longest wavelength will be emitted when the value of
Conclusion:
Thus the
(b)
The energy difference in joules for the two levels involved in the transition of part (a).
(b)
Answer to Problem 2SP
The energy difference in joules for the two levels involved in the transition of part (a) is
Explanation of Solution
Write the Balmer’s formula.
The value of
Substitute
Write the equation for the energy of a photon.
Here,
The value of
Substitute
The energy of the emitted photon is equal to the energy difference between the levels involved in the transition.
Conclusion:
Thus the energy difference in joules for the two levels involved in the transition of part (a) is
(c)
The frequency and wavelength of the photon emitted in the transition.
(c)
Answer to Problem 2SP
The frequency of the photon emitted in the transition is
Explanation of Solution
From part (b),
This gives,
Write the equation for the frequency of the photon.
Here,
Substitute
Conclusion:
Thus the frequency of the photon emitted in the transition is
(d)
The frequency and wavelength of the photon with the longest wavelength in the Lyman series.
(d)
Answer to Problem 2SP
The frequency of the photon with the longest wavelength in the Lyman series is
Explanation of Solution
The value of
Substitute
This gives,
Substitute
Conclusion:
Thus the frequency of the photon with the longest wavelength in the Lyman series is
Want to see more full solutions like this?
Chapter 18 Solutions
Physics of Everyday Phenomena
- (a) How many electrons can be in the n=4 shell? (b) What are its subshells, and how many electrons can be in each?arrow_forward(a) What is the minimum value of 1 for a subshell that has 11 electrons in it? (b) If this subshell is in the n=5 shell, what is the spectroscopic notation for this atom?arrow_forward(a) If one subshell of an atom has 9 electrons in it, what is the minimum value of l ? (b) What is the spectroscopic notation for this atom, if this subshell is part of the n=3 shell?arrow_forward
- (a) What is the momentum of a 0.0100-nm-wavelength photon that could detect details of an atom? (b) What is its energy in MeV?arrow_forwardA physicist is watching a 15-kg orangutan at a zoo swing lazily in a tire at the end of a rope. He (the physicist) notices that each oscillation takes 3.00 s and hypothesizes that the energy is quantized. (a) What is the difference in energy in joules between allowed oscillator states? (b) What is the value of n for a state where the energy is 5.00 J? (c) Can the quantization be observed?arrow_forwardHow do the allowed orbits for electrons in atoms differ from the allowed orbits for planets around the sun? Explain how the correspondence principle applies here.arrow_forward
- How do the allowed orbits for electrons in atoms differ from the allowed orbits for planets around the sun? Explain how the correspondence principle applies here.arrow_forward(a) List all possible sets of quantum numbers (n,l,ml,ms) for the n=3 shell, and determine the number of electrons that can be in the shell and each of its subshells. (b) Show that the number of electrons in the shell equals 2n2and that the number in each subshell is 2(2l+1).arrow_forwardThe ion Li2+ makes ail atomic transition from ail n = 4 state to ail n = 2 state, (a) What is the energy of the photon emitted during the transition? (b) What is the wavelength of the photon?arrow_forward
- Atomic and molecular spectra are discrete. What does discrete mean, and how are discrete spectra related to the quantization of energy and electron orbits in atoms and molecules?arrow_forwardA beryllium ion with a single electron (denoted Be3+) is in an excited state with radius the same as that of the ground state of hydrogen. (a) What is n for the Be3+ ion? (b) How much energy in eV is needed to ionize the ion from this excited state?arrow_forward(a) Calculate the velocity of an electron that has a wavelength of 1.00 m. (b) Through what voltage must the electron be accelerated to have this velocity?arrow_forward
- Modern PhysicsPhysicsISBN:9781111794378Author:Raymond A. Serway, Clement J. Moses, Curt A. MoyerPublisher:Cengage LearningPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningCollege PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage Learning
- College PhysicsPhysicsISBN:9781285737027Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningPhysics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning