Physical Universe
16th Edition
ISBN: 9780077862619
Author: KRAUSKOPF, Konrad B. (konrad Bates), Beiser, Arthur
Publisher: Mcgraw-hill Education,
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Chapter 9, Problem 56E
To determine
The quantum mechanical concept corresponds to electron’s orbit in ground state.
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Chapter 9 Solutions
Physical Universe
Ch. 9 - Prob. 1MCCh. 9 - Prob. 2MCCh. 9 - Prob. 3MCCh. 9 - Prob. 4MCCh. 9 - Prob. 5MCCh. 9 - Prob. 6MCCh. 9 - Prob. 7MCCh. 9 - Prob. 8MCCh. 9 - Prob. 9MCCh. 9 - Prob. 10MC
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- Early researchers were very excited when they were able to predict the energy of an electron at a particular distance from the nucleus in a hydrogen atom using the Bohr model. A photon promotes the electron in a hydrogen atom in its ground state (n=1) into an excited state (n=5). What would be the frequency of the emitted photon if it decays from an excited state back to the ground state?arrow_forwardDetermine the distance between the electron and proton in an atom if the potential energy UU of the electron is 15.2 eV (electronvolt, 1 eV =1.6×10−19 J). Give your answer in Angstrom (1 A = 10-10 m).arrow_forwardThe quantum state of an electron in an atom is described by quantum numbers n = 6, ℓ = 4, and mℓ = 1. The orbital total angular momentum of the electron is measured to be x × h/2π, where h is Planck’s constant. What is the number x(remember to use the scientific notation)?arrow_forward
- what is the speed of the electron in the fifth quantum level of hydrogen? express your answer as a multiple of 1.0 x 10^5 m/sarrow_forwardA) By what factor is the uncertainty of the electron's position(1.36×10-4 m) larger than the diameter of the hydrogen atom?(Assume the diameter of the hydrogen atom is 1.00×10-8 cm.) B) Use the Heisenberg uncertainty principle to calculate Δx for a ball (mass = 122 g, diameter = 8.50 cm) with Δv = 0.425 m/s. C) The uncertainty of the (above) ball's position is equal to what factor times the diameter of the ball?arrow_forwardA sodium atom in one of the states labeled “Lowest excited levels” in Fig. remains in that state, on average, for 1.6 * 10-8 s before it makes a transition to the ground state, emitting a photon with wavelength 589.0 nm and energy 2.105 eV. What is the uncertainty in energy of that excited state? What is the wavelength spread of the corresponding spectral line?arrow_forward
- The figure shows a model of the energy levels of an atom. The atom is initially in state W, which is the ground state for the atom. After a short amount of time, the atom then transitions to state X. The atom then transitions to state Y before transitioning to state Z. The atom then transitions back to state W. Which of the following descriptions is correct about the atom as it transitions from state W to each subsequent state until it finally returns to its original state?arrow_forwardWhich of the following is a permissable set of quantum numbers for an electron in a hydrogen atom? The atom may be in an excited state (ie. the electron need not be in its ground state). a) n = 6, l = -5, ml = +4, ms = +1/2 b) n = 4, l = -2, ml = +2, ms = -1/2 c) n = 2, l = 2, ml = +1, ms = -1/2 d) n = 5, l = 1, ml = -1, ms = +1/2 e) n = 3, l = 2, ml = -2, ms = -1arrow_forwardA sodium atom makes a transition from the first excited state to the groundstate, emitting a 589.0-nm photon with energy 2.105 eV. If the lifetime of this excited state is 1.6 × 10−8 s , what is the uncertainty in energy of this excited state? What is the width of the corresponding spectral line?arrow_forward
- In the mid-1800s, scientists observed four visible lines in the emission spectrum of the hydrogen atom. These lines had wavelengths of 410 nm, 434 nm, 486 nm, and 656 nm, where 1 nm = 10-⁹ m. This series of lines is part of what became known as the Balmer series, after Johann Balmer demonstrated that their wavelengths A could be described by the equation 1 2 = 1.1 x 107 Although this equation worked, it was some time before scientists understood why it worked. In the early 1900s, Niels Bohr proposed that the electron in a hydrogen atom could exist only in certain quantized energy states. These states were given by the equation E = -13.6/n² eV. He further proposed that when an electron moved from a higher energy state to a lower one, the excess energy was released as a packet, or quantum, of light known as a photon. The corresponding wavelength of a photon could then be found with the equation λ = hc/E, where E is the energy of the photon, h = 4.1 x 10-15 eV's is Planck's constant, and…arrow_forwardThe quantum state of an electron in an atom is described by quantum numbers n = 6, ℓ = 5, and mℓ = 2. The z-component orbital angular momentum of the electron is measured to be x × h/2π, where h is Planck’s constant. What is the number x (remember to use the scientific notation)?arrow_forwardThe two nuclei in the carbon monoxide (CO) molecules are 0.1128 nm apart. The mass of the carbon atom is 1.993x10-26 kg. The mass of the oxygen atom is 2.656x10-26 kg.What is the wavelength of the photon emitted in the transition from first excited state to the ground state? (Give your answer in mm.)arrow_forward
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