(a) In an HCl molecule, take the Cl atom to be the isotope 35Cl. The equilibrium separation of the H and Cl atoms is 0.127 46 nm. The
(a)
The longest wavelength in the rotational spectrum of HCl molecule when
Answer to Problem 11P
The longest wavelength in the rotational spectrum of
Explanation of Solution
Write the equation for the smallest energy difference between the rotational energy levels.
Here,
Write the equation for the wavelength.
Here,
Substitute equation (I) in the equation (II) and substitute
Write the equation for the reduced mass.
Here,
Write the equation for moment of inertia.
Here,
Conclusion:
Substitute equation (V) in equation (III).
Substitute
Substitute
Here,
Substitute
Thus, the longest wavelength in the rotational spectrum of HCl molecule when
(b)
The longest wavelength in the rotational spectrum of HCl molecule when
Answer to Problem 11P
The longest wavelength in the rotational spectrum of HCl molecule when
Explanation of Solution
From the equation (IV) for the reduced mass.
From the equation (VI) for wavelength.
Conclusion:
Substitute
Here,
Substitute
Thus, the longest wavelength in the rotational spectrum of HCl molecule when
(c)
The separation in wavelength between the doublet lines for the longest wavelength.
Answer to Problem 11P
The separation in wavelength between the doublet lines for the longest wavelength is
Explanation of Solution
Write the equation for the separation in wavelength between the doublet lines for the longest wavelength.
Here,
Conclusion:
Substitute
Thus, the separation in wavelength between the doublet lines for the longest wavelength is
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Chapter 42 Solutions
Bundle: Physics For Scientists And Engineers With Modern Physics, 10th + Webassign Printed Access Card For Serway/jewett's Physics For Scientists And Engineers, 10th, Multi-term
- The elements A and B crystallize in bcc and fcc structures, respectively. Suppose that (i) the crystals of A and B have the same density, and (ii) the nearest-neighbor distances in these crystals are equal. Calculate the ratio MA/MB, where MA and MB denote the masses of the A and B atoms, respectively.arrow_forwardEstimate kBT at room temperature, and convert this energy into electronvolts (eV). Using this result, answer the following: (a) Would you expect hydrogen atoms to be ionized at room temperature? (The binding energy of an electron in a hydrogen atom is 13.6 eV.) (b) Would you expect the rotational energy levels of diatomic molecules to be excited at room temperature? (It costs about 10−4 eV to promote such a system to an excited rotational energy level.)arrow_forwardThe mass of the most common silicon atom is 4.646 * 10-26 kg, and the mass of the most common oxygen atom is 2.656 * 10-26 kg. When a molecule of silicon monoxide (SiO) makes a transition between the l = 1 and l = 0 rotational levels, it emits a photon of wavelength 6.882 mm. Find the distance between the Si and O nuclei.arrow_forward
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- Physics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningModern PhysicsPhysicsISBN:9781111794378Author:Raymond A. Serway, Clement J. Moses, Curt A. MoyerPublisher:Cengage Learning