Exercise 12.3: An electron beam is incident on a potential barrier of height 0.03 eV and of infinite width. Find the reflection coefficient and transmission coefficient at the barrier if the energy of the incident electron beam be (a) 0.04 ev (b) 0.025 eV and (c) 0.03 eV.
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- Like a harmonic oscillator with a force constant of 1550 N/m of the nitrogen oxide molecule suppose you behave. The energy of the second excited vibrating state (in eV) Find.4.1. Using the nearly free-electron approximation for a one-dimensional (1-D) crystal lattice and assuming that the only nonvanishing Fourier coefficients of the crystal potential are v(n/a) and v(-π/a) in (4.73), show that near the band edge at k = 0, the dependence of electron energy on the wave vector k is given by where m* = Ek electron at k = 0. = Eo + = mo[1 − (32m²aª / hªлª)v(π/a)²]¯¹ is the effective mass of the ħ²k² 2m*Problem : Given the transfer function of a linear lung mechanics model S G(s) s3 + 3s2 + 2s a. Find the full-dimensional (3-D) controllable realization. b. Find a minimal realization. c. Verify the minimal realization is both controllable and observable.
- b. Prove that the conserved charge in energy-momentum tensor is given by TO pSolve the question below completely mentioning each and every stepNo Spacing Heading 1 Normal Aa v A A 困、 Paragraph Styles The action along a path is defined to be: S = [(K.E.-P. E.) dt Determine the physical units of action. Detail Feynman's approach to calculating the probability amplitude for an electron to go from one event A to another B using the "sum over all paths". A'Focus 12 1> 12
- Please provide Handwritten answer(A) for internal energy using the Legendre transform. Show how the Gibbs free energy state function is derived from the state function (B) What are the conditions for G to act as a potential function? (C) Show the mathematical expression for G as a potential function.Write a cogent description of the Bell inequality. Discuss variations and the current status of its experimental verifi cation.
- For the machine element shown, locate the y coordinate of the center of gravity.A) Report your answer as a decimal number with three signficant figures. B)Give your answer as a decimal number with three significant figures. C) How does the classical kinetic energy of the free electron compare in magnitude with the result you obtained in the previous part?7.9 For this hypothetical velocity distribution in a wide rectan- gular channel, evaluate the kinetic-energy correction factor a. Vm max PROBLEM 7.9