Question

An electron is trapped in an infinitely deep one-dimensional well of width 0.286 nm. Initially the electron occupies the n =

0 0
Add a comment Improve this question Transcribed image text
Answer #1

a) Energy of electron in nth state is given as, b En = n² h² emez Eu6, - (16-1) (6.63 x 1034) (15) @x gillxio-3x (0-286x1092

Add a comment
Know the answer?
Add Answer to:
An electron is trapped in an infinitely deep one-dimensional well of width 0.286 nm. Initially the...
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
  • An electron is trapped in an infinite square-well potential of width 0.3 nm. If the electron...

    An electron is trapped in an infinite square-well potential of width 0.3 nm. If the electron is initially in the n = 4 state, what are the various photon energies that can be emitted as the electron jumps to the ground state? (List in descending order of energy. Enter 0 in any remaining unused boxes.) highest eV eV eV eV eV lowest eV

  • Suppose that an electron is trapped in a one- dimensional, infinite potential well of width 250...

    Suppose that an electron is trapped in a one- dimensional, infinite potential well of width 250 nm is excited from the 2nd excited state to the fifth excited state. What energy must be transferred to the electron in order to make this transition? Answer: 1.62 x 10^-4 eV Check Correct Marks for this submission: 2.00/2.00. What wavelength photon does this correspond to? Answer: 75.15*10^-4m Check Considering all of the possible ways that the excited electron can de-excite back down to...

  • Suppose that an electron trapped in a one-dimensional infinite well of width 118 pm is excited...

    Suppose that an electron trapped in a one-dimensional infinite well of width 118 pm is excited from its first excited state to the state with n = 8. (a) What energy (in eV) must be transferred to the electron for this quantum jump? The electron then de-excites back to its ground state by emitting light, In the various possible ways it can do this, what are the (b) shortest, (c) second shortest, (d) longest, and (e) second longest wavelengths (in...

  • An infinitely deep square well has width L 2.5 nm. The potential energy is V =...

    An infinitely deep square well has width L 2.5 nm. The potential energy is V = 0 eV inside the well (i.e., for 0 s xs L) Seven electrons are trapped in the well. 1) What is the ground state (lowest) energy of this seven electron system? Eground eV Submit 2) What is the energy of the first excited state of the system? NOTE: The first excited state is the one that has the lowest energy that is larger than...

  • An electron is trapped in a one-dimensional infinite well of width 370 pm and is in...

    An electron is trapped in a one-dimensional infinite well of width 370 pm and is in its ground state. What are the (a) longest, (b) second longest, and (c) third longest wavelengths of light that can excite the electron from the ground state via a single photon absorption?

  • neutron is trapped in an infinitely deep potential well 2.0fm in width. Determine (a) the four...

    neutron is trapped in an infinitely deep potential well 2.0fm in width. Determine (a) the four lowest possible energy states and (b) their wave functions. (c) What is the wavelength and energy of a photon emitted when the neutron makes a transition between the two lowest states? In what region of the EM spectrum does this photon lie?

  • An electron is trapped in an infinite well of width 10 nm. If the electron drops...

    An electron is trapped in an infinite well of width 10 nm. If the electron drops down 5 energy levels and in the process emits a photon with wavelength 640.15 nm, then what is the final energy of the electron? eV Submit Help

  • 5. An electron in a one-dimensional box of width L = .75 nm decays from the...

    5. An electron in a one-dimensional box of width L = .75 nm decays from the n = 3 state to the ground state by emitting two photons. What are their wavelengths?

  • An electron is trapped in a one-dimensional infinite well and is in its first excited state....

    An electron is trapped in a one-dimensional infinite well and is in its first excited state. The figure indicates the five longest wavelengths of light that the electron could absorb in transitions from this initial state via a single photon absorption: λa = 81.5 nm,λb = 31.1 nm,λc = 19.5 nm,λd = 12.6 nm, and λe = 7.83 nm. What is the width of the potential well? III-(nm)

  • Consider an electron in an infinite well of width 2.1 nm . What is the wavelength...

    Consider an electron in an infinite well of width 2.1 nm . What is the wavelength of a photon emitted when the electron in the infinite well makes a transition from the first excited state to the ground state? The value of h is 1.05457 × 10^−34 J · s, the Bohr radius is 5.29177 × 10^−11 m , the Rydberg constant for hydrogen is 1.09735 × 10^7 m−1 , the ground state energy for hydrogen is 13.6057 eV ,...

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