subject
Physics, 31.08.2019 04:20 mcccreamullinsr

In this problem, neglect spin and relativistic effects, and use the born approximation (a) suppose an electron scatters off a spherically symmetric potential v(r). write down (or compute if you don't reinernber) the formlula for the born approximation to the scattering amplitude f(9,の, in the form of a one- dimensional radial integral f(θ, φ)-j 0 (some function of r) × v (r) dr (b) now suppose that the electron scatters elastically off a spherically symmetric charge distribution, with charge density rho(r) centered at the origin. (this is not a local potential, but the answer to part (a) may still be useful.) calculate, in the born approximation (that is, to first order in the potential), the scattering amplitude f(0,p) and write it as where q is the momentum transferred between the incident and the scattered electron, and fr(q2) is the rutherford amplitude for scattering off a point charge here α is the fine-structure constant. the function f(q2) is called the "form factor. write an explicit formula for f(q2) in terms of p(r) (c) now specialize to an electron scattering elastically off a uniformly charged sphere, centered at the origin, with radius r and total charge ze. what is f(g2) as a function of q and r? hint: you might want the definite integral e-ursin(qr) dr and み 7 and the indefinite integrals r sin r drsinr- r cos x cos x dx = cos x + x sin x note: the scattering amplitude is defined so that its square is the differential cross section:

ansver
Answers: 1

Another question on Physics

question
Physics, 22.06.2019 11:00
Although longitudinal waves can travel through all media types what is the disadvantage of this type of wave transmission? a) he efficiency of he wave transmission is greatly diminished as the media becomes less dense b) the oscillation of one set of particles has a huge impact on neighboring particles c) particles become too close together as they bump into each other making it more likely to hit other particles down the line
Answers: 2
question
Physics, 22.06.2019 12:30
Hydrogen atoms are excited by a laser to the =4n=4 state and then allowed to emit. what is the maximum number of distinct emission spectral lines (lines of different wavelengths) that can be observed from this system? 8 6 2 7 4 5 1 3 calculate the wavelength of the 4⟶14⟶1 transition. =λ=
Answers: 2
question
Physics, 22.06.2019 17:10
The particles that are found in the nucleus of an atom are
Answers: 1
question
Physics, 22.06.2019 18:00
Which missing item would complete this alpha decay reaction ? > 228/88ra + 4/2he a.224/96 rn b. 232/90 th c. 230/92 u d. 235/92 u
Answers: 2
You know the right answer?
In this problem, neglect spin and relativistic effects, and use the born approximation (a) suppose a...
Questions
question
Chemistry, 21.01.2021 06:50
question
Mathematics, 21.01.2021 06:50
question
Mathematics, 21.01.2021 06:50
question
History, 21.01.2021 06:50
question
Mathematics, 21.01.2021 06:50
Questions on the website: 13722360