Question

6. The bond length in HCI is approximately 1.3 À. Estimate the frequency in GHz of the lowest allowed rotational transition of the HCI molecule (1 GHz 1x10° Hz).

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
6. The bond length in HCI is approximately 1.3 À. Estimate the frequency in GHz of...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • .t 5. Calculate the frequency of the emitted photon for the rotational J-l --,-0 transition for I...

    bond length for 12C16O = 112.8 pm .t 5. Calculate the frequency of the emitted photon for the rotational J-l --,-0 transition for ICl O. Treat the molecule as a rigid rotator, using the bond length in Table 5.1. The observed frequency is 115.271208 GHz; how well do your results match this? .t 5. Calculate the frequency of the emitted photon for the rotational J-l --,-0 transition for ICl O. Treat the molecule as a rigid rotator, using the bond...

  • Calculate the frequency of the J = 10 ← 9 transition in the pure rotational spectrum...

    Calculate the frequency of the J = 10 ← 9 transition in the pure rotational spectrum of 12C16O. Assume the equilibrium bond length is 109.99pm. What is the Frequency in Hz? What is the corresponding wavenumber in cm-1?

  • Problem 15.63 A molecular bond can be modeled as a spring between two atoms that vibrate...

    Problem 15.63 A molecular bond can be modeled as a spring between two atoms that vibrate with simple harmonic motion. The figure shows an SHM approximation for the potential energy of an HCI molecule. Because the chlorine atom is so much more massive than the hydrogen atom it is reasonable to assume that the hydrogen atom (m-1.67x10-27kg) vibrates back and forth while the chlorine atom remains at rest. Potential energy U) 4 10-19 З 10-19 2 X 10-19 Part A...

  • The molecule 'H'F has a bond length of 0.9256 Å (9.256 x 10-11 m) and a...

    The molecule 'H'F has a bond length of 0.9256 Å (9.256 x 10-11 m) and a spring constant, k, of 920 Nm"! The atomic masses are 1.007825 g mol-' for 'H and 18.998403 g mol-' for ''F. (a) Calculate the energy difference between the two lowest rotational states for 'H°F? Express your answer in cm! Calculate the energy difference between the two lowest vibrational states for 'H'F? Express your answer in cm! Assuming that we have a 1 cm x...

  • Q 1: For particle in a box problem, answer the following questions, a) Why n=0 is...

    Q 1: For particle in a box problem, answer the following questions, a) Why n=0 is not an allowed quantum number? b) En = 0 is not allowed for particle in a box, why? c) Ground state wavefunction is orthogonal to the first excited state wavefunction, what does it mean? Q 2: An electronic system that is treated as particle in 3-D box with dimensions of 3Å x 3Å x 4Å. Calculate the wavelength corresponding to the lowest energy transition...

  • Q1) The lowest frequency available on a radio's AM dial is 570 kilohertz (kHz). What is...

    Q1) The lowest frequency available on a radio's AM dial is 570 kilohertz (kHz). What is the wavelength of this light? Select one: a. 1.8 X 10-6 m b. 5.3 X 102 m c. 1.8 X 10-7 m d. 5.3 X 104 m e. 1.9 X 10-3 m Q2) Many handheld laser pointers emit 650 nm light. What is the frequency of this light? Select one: a. 5.1 X 10-3 Hz b. 2.2 X 10-15 Hz c. 4.6 X 1014...

  • 1) HCl consists of one H and Cl atom separated by 0.127 nm, the bond length....

    1) HCl consists of one H and Cl atom separated by 0.127 nm, the bond length. The Cl atom has a partial charge of -0.177e and the H atom has a partial charge of +0.177e, where e = 1.602x10-19 C is the electron charge. What is the dipole moment of the molecule? 2) Now the HCl molecule is placed near a sodium ion Na+with charge +1e. As shown in the figure, the distance between the Cl and Na atoms is...

  • Atkins' Physical C... PZE.4 The force constant for the bond in CO is 1857 Nm ....

    Atkins' Physical C... PZE.4 The force constant for the bond in CO is 1857 Nm . Calculate the vibrational frequencies (in Hz) of 'C', 'C', C'80, and 'C'80. Use integer relative atomic masses for this estimate. harmonic the integra and then u 0. (b) Calc section). (c 297 P7E.5 In infrared spectroscopy it is common to observe a transition from the v=0 to v= 1 vibrational level. If this transition is modelled as a harmonic oscillator, the energy of the...

  • (4) Thermodynamic data suggests that copper monohalides (CuX) should exist as polymers in the gas...

    (4) Thermodynamic data suggests that copper monohalides (CuX) should exist as polymers in the gas phaso However, scientists have successfully synthesized CuX monomers and characterized them using microwave spectroscopy For Cu Br the J-13 14,J-1415 and J-1516 transitions occurred at 84421.34 MHz, 90449.25 MHz and 96476.72 MHz, respectively. Assuming Cu Br behaves as a 3D rigid rotor, answer the following questions. Note: Absorption frequency (in units of Hz) of a rotational transition (aka peak position in a microwave spectrum) corresponding...

  • mperial Valley College PROJECT #3 You may work in groups of up to 4 students. Each group turns in one homework, w...

    mperial Valley College PROJECT #3 You may work in groups of up to 4 students. Each group turns in one homework, wnitten on separate paper e,aat in tiny writing on this sheetl with llwri and all stens shoan doack All students in each group recee the same grade This assignment is due ot the begrring 덱 dass on"huidey July 27 (day of Find Exon This project is worth o total f 40points Homework will be graded not only on correctness,...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT