Mark the following on the spectrum scale and indicate the region of the spectrum (IR, UV, etc) in which each lies. For each, find a more precise value for frequency and wavelength in standard units than you can read from the plot. (1) Bond vibration corresponding to a wavelength: 6.5 um (find E in J) (2) Energy required to break a CH bond: 413 kl/mol (Find 2 in nm) (3) Energy required to remove an inner electron from a C atom: 308 eV (Find 2 in nm) (4) One of the rotational frequencies of a molecule: 12 GHz = 12,000 MHz (2in cm) (5) lonization energy of hydrogen atom: 13.6 ev(ain nm, E in k5/mol) (6) Frequency of a radio station: 91.7 MHz (Find 2 in m) (7) The energy of the n=4 to n=2 transition in H atom (Find in nm)
Mark the following on the spectrum scale and indicate the region of the spectrum (IR, UV, etc) in which each lies. For each, find a more precise value for frequency and wavelength in standard units than you can read from the plot. (1) Bond vibration corresponding to a wavelength: 6.5 um (find E in J) (2) Energy required to break a CH bond: 413 kl/mol (Find 2 in nm) (3) Energy required to remove an inner electron from a C atom: 308 eV (Find 2 in nm) (4) One of the rotational frequencies of a molecule: 12 GHz = 12,000 MHz (2in cm) (5) lonization energy of hydrogen atom: 13.6 ev(ain nm, E in k5/mol) (6) Frequency of a radio station: 91.7 MHz (Find 2 in m) (7) The energy of the n=4 to n=2 transition in H atom (Find in nm)
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:**Spectrum Scale Problems for Educational Purposes**
Mark the following on the spectrum scale and indicate the region of the spectrum (IR, UV, etc.) in which each lies. For each, find a more precise value for frequency and wavelength in standard units than you can read from the plot.
1. **Bond vibration corresponding to a wavelength: 6.5 μm**
- *Task:* Find energy (E) in joules.
2. **Energy required to break a CH bond: 413 kJ/mol**
- *Task:* Find wavelength (λ) in nm.
3. **Energy required to remove an inner electron from a C atom: 308 eV**
- *Task:* Find wavelength (λ) in nm.
4. **One of the rotational frequencies of a molecule: 12 GHz = 12,000 MHz**
- *Task:* Find wavelength (λ) in nm.
5. **Ionization energy of hydrogen atom: 13.6 eV**
- *Task:* Find wavelength (λ in nm) and energy (E in kJ/mol).
6. **Frequency of a radio station: 91.7 MHz**
- *Task:* Find wavelength (λ) in meters.
7. **The energy of the n=4 to n=2 transition in hydrogen atom**
- *Task:* Find wavelength (λ) in nm.
This exercise engages students in understanding and converting different forms of energy and wavelengths on the electromagnetic spectrum.
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