Question

Line spectrum of Hydrogen wavelength, A (nm) hm) E = Ru (Canada - Constans) Where RM2.18 10- J, and initial and final represe
Now use the formulas E hy and c - Avto convert those energy values into wavelengths on nanometers) (E is the energy in J,h is
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Griven, from the first stable wo obtain the energy neoded bor transition between 1:6 and n=2 ve e from not to risa). to and n7 mo a5 ya Es er ingen se contras) alex018 Cher 30.4578 x10-18] 6.63 410 34 x 3 x105 dabc = 0.4578x10-18 434.46 mm) nzu yn=2

Upvote if you find the answer is helpful. Thank you and have a nice day

Add a comment
Know the answer?
Add Answer to:
Line spectrum of Hydrogen wavelength, A (nm) hm) E = Ru (Canada - Constans) Where RM2.18...
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
  • Post-Lab Problems Part D-The Rhydberg Equation: What do the spectral lines of Hydrogen tellus? Look again...

    Post-Lab Problems Part D-The Rhydberg Equation: What do the spectral lines of Hydrogen tellus? Look again at the line spectrum you for Hidrogen Sinsel drogen is such a simple element having only one electron), we can model and predict its behavior with relatively) simple equations wavelength, 1 (nm) 1 1 1 1 (final) (ninitial Where Re-2.18 10""), and in and test represent the initial and final energy levels of the electron--that is, the electron starts at the energy level and...

  • 6) Calculate the wavelength, in nanometers, of the light emitted by a hydrogen atom when its...

    6) Calculate the wavelength, in nanometers, of the light emitted by a hydrogen atom when its electron drops from the n the H atom are given by En-2.18 x 10-18 J (1/n2). (c = 3.00 x 108 m/s; h= 6.63 x 10-34 J. 7 to the n 4 principal energy level. Recall that the energy levels of s) A) 4.45 x 10-20 nm B)2.16 x 10-6 nm C) 9.18 x 10-20 nm D) 1.38 x 1014 nm E) 2.17 x...

  • How long is the wavelength in nanometers (nm) of a photon that has 2.12 x 10−13...

    How long is the wavelength in nanometers (nm) of a photon that has 2.12 x 10−13 kJ of energy? H o w l o n g i s t h e w a v e l e n g t h i n n a n o m e t e r s ( n m ) o f a p h o t o n t h a t h a s 2 . 12 x 10 - 13...

  • The hydrogen atomic emission spectrum includes a UV line with a wavelength of 92.323 nm. Photons...

    The hydrogen atomic emission spectrum includes a UV line with a wavelength of 92.323 nm. Photons of this wavelength are emitted when the electron transitions to n_t = 1 as the final energy state. Is this line associated with a transition between different excited states or between an excited state and the ground state? different excited states between an excited state and the ground state What is the energy of the emitted photon with wavelength 92.323 nm? What was the...

  • Lab Section: Experiment #11: The Atomic Spectrum of Hydrogen Advanced Study Assignment 1. Found in the...

    Lab Section: Experiment #11: The Atomic Spectrum of Hydrogen Advanced Study Assignment 1. Found in the gas phase, the beryllium trication, Be has an energy level formula analogous to that of the hydrogen atom, since both species have only one electron. The energy levels of the Belon are given by the equation E, = -2100-kl/mole n = 1.2.3. - Calculate the energies in kl/mole for the four lowest energy levels of the Belon. a kl/mole kl/mole kJ/mole kl/mole b. One...

  • Chemist Hydrogen Spectrum Drac 8 m/s = 4.487 X 10' Lab A10 W est 2010 (2)...

    Chemist Hydrogen Spectrum Drac 8 m/s = 4.487 X 10' Lab A10 W est 2010 (2) 1. For each of the obse of the observed wavelengths in the hydrogen spectrum, calculate the energy of each photon emited. 110nm - E-hc 6.626 xE-345s 3.00xE8 m/s - 4.8483 x 1015 j 7 41xE-7AM 104 nm -> E he= 6.626x E-3935 <0.00 xE8 ms - 4.481 -19 4.34E-7m. 186 nm - E= he = 6.626 xE-34 35 X 3.00 xE8B/s, 4.090 x 10...

  • 1) The line spectrum of hydrogen includes lines at 447, 502, 587, and 668 nm. Which...

    1) The line spectrum of hydrogen includes lines at 447, 502, 587, and 668 nm. Which of these wavelengths would be associated with the greatest amount of energy? A) 447 B) 502 C) 587 D) 668 E) cannot be determined 2) What is the total number of orbitals in the shell designated by n- 42 A) 7 B) 16 C) 4 D) 3 E) none of these 3) How many electrons are there in a 3p orbital? A) 2 B)...

  • 26. A sodium vapor lamp has a power output of 300 W. If 390 nm is...

    26. A sodium vapor lamp has a power output of 300 W. If 390 nm is the average wavelength of the source, about how many photons are emitted per secood? (h 1 nm- 10* m) 6.63 x 10Js, c 3.00x 10* m/s, and a. 10 b, 1021 e, 10s d. 10 27. The "seeing" ability or resolution of radiation is determined by its wavelength. If the size of an atom is approximately 10* m, how fast must an electron travel...

  • fill in the blanks pls LI TIe (kJ/photon) for each calibrated wavelength and then esponding energy...

    fill in the blanks pls LI TIe (kJ/photon) for each calibrated wavelength and then esponding energy (k.J/mol) per mole by using Avogadro's number. (.5d (c) Using Figurel determines the values of quantum numbers ni and for the initial and Trattatert the transitions that give rise to each line. ectr 1 . is с я Wavelength from the calibration graph (nm) Photon energy Value of n (initial state) Value of n (final state) (kJ/mol) S4L10a 419, к) п 430.00 219Kfa 2...

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