Find wave functions and energy spectrum of the particle

Assignment Help Other Engineering
Reference no: EM131112870

1. A nucleus with decay constant λ exists at time t = 0. What is the probability that it disintegrates between t and t + Δt?

2. A particle of mass m and electric charge e is placed in the one-dimensional harmonic oscillator potential of frequency w and the uniform electric field S along the same axis.

a. Find the wave functions and the energy spectrum of the particle.

b. With a particle in the ground state of the problem, at time t = 0 the electric field is suddenly switched off. Find the probability of finding the particle at t > 0 in the nth stationary state of the oscillator.

3. Consider a spherical cloud of radius r, at a distance d >> r from the Earth. Suppose that this cloud has uniform density p, temperature T and thermal emissivity ηv  (power per unit volume per unit frequency interval per unit solid angle), i.e. ηv is a function of T only.

a) Suppose the cloud is optically thick. Consider a small area element on the surface of the cloud, located at distance b from the line of sight passing through the center of the cloud, which subtends a solid angle dΩ as seen from the Earth. Find IvdΩ the power per unit area per unit frequency interval, received from this area element at the Earth.

b) Find the flux Φ, at the Earth from the center cloud, by using the result of a).

c) What is the effective temperature Teff of the cloud?

4. Using Eqs. (136) and (4.37), show that Urad, v = 3Prad,v for an isotropic radiation field. Prove Eq. (4.63).

6. Assume a γ-ray detector on board of a satellite. Its efiective area is 1500 cm2 and its angular position accuracy is Δθ ≈ 10o. After observing a Quasar for two weeks, it collects about 3000 photons with energy 1 GeV. Determine (a) I = ∫Ivdv and (b) Φ = ∫Φvdv.

7. The activity of a given material decreases by a factor 8 in a time interval of 30 days. What is its half-life, mean lifetime and decay constant.? If the sample initially had 1020 atoms, how many disintegrations have occurred in its second month of life?

8. The theories of grand unification predict that the proton is not a stable particle, although it has a long half-life. For a half-life of 1033 years, how many proton decays can we expect in one year in a mass of 103 tons of water?

9. Calculate the average velocity of a Maxwell-Boltzmann distribution.

10. Use the literature as a, source to prove Eq. (4.82).

11. Calculate the fraction of hydrogen atoms in the n = 2 state with respect to the ground state for 3 different temperatures: T1 = 6000 K, T2 = 107000 K, T3 = 30,000 K.

12. Use the Saha equation to calculate the temperature of recombination, which you can efine as the temperature when there is an equal amount of neutral hydrogen and free protons/electrons. You can simplify the hydrogen atom to be a single state at -13.6.

13. An atom with a single electron is in a heat bath at a temperature of T6 = 1 (T6 means that the temperature is given in units of 106 K). The atom is high Z, so the electron is bound at this temperature, and only three states have appreciable occupations. The ground state has spin 5/2. The first excited state, at 210 eV, has spin 3/2. The second excited state, at 380 eV, has spin 3/2. What are the occupation probabilities for these three states?

14. A nucleus is in a plasma at thermal equilibrium. Calculate the population probabilities of the ground state (E0 = 0) and of the first three excited states (E1 = 0.1 MeV, E2 = 0.5 MeV, E3 = 1.0 MeV) for two temperatures, T = 1.0 x 109 K and 3.0 x 109 K, and assume that all states have the same spin value.

15. Using Eq. (4.110) (a) calculate the cross section (in fm2) for the absorption of a photon with energy hv = I, where I is the ionization potential of a hydrogen atom at its ground state; (b) find the ration of the value obtained in (a) and Πa2H where AH is the Bohr radius.

16. As a mechanism for downward transitions (final energy smaller than initial energy), spontaneous emission competes with thermally stimulated emission (stimulated emission for which Planck radiation is the source). Show that at room temperature (T = 300 K) thermal stimulation dominates for frequencies much smaller than 5 x 1012 Hz, whereas spontaneous emission dominates for much larger frequencies. Which mechanism dominates for visible light.?

17. Generalize the Saha equation to consider the temperature for a process in the early universe where two protons and two neutrons combine directly to form 4He. That is, find the temperature where half of the neutrons are bound in 'He. Later we will compare this result with the big-bang nucleosynthesis predictions.

18. Negative hydrogen ions H-, which have a dissociation energy of 0.754 eV, play and important role in the opacity of the outer layers of the Sun. Assume and electron density is ne = 1026 M-3 and estimate the temperature (to one figure accuracy) at which the number densities of J and H- are equal.

Reference no: EM131112870

Questions Cloud

What is the most important concern when developing policies : Do you consider yourself more of a public-order advocate or a due-process advocate, in general - What are the positive aspects of your chosen position for purposes of counterterrorism?
Analyse the knowledge needs of an organisational situation : On successful completion of this unit, students will be able to: Analyse personal and organisational situations in terms of theories of knowledge;Analyse the knowledge needs of an organisational situation
Explain financial management : Management has different branches. List any three branches of management and explain financial management as a branch of management.
Determining the definition of management : Business people have defined management in various ways. Give your own definition of management.
Find wave functions and energy spectrum of the particle : Find the wave functions and the energy spectrum of the particle and calculate the average velocity of a Maxwell-Boltzmann distribution.
Process of choosing a course of action : Decision making is the process of choosing a course of action for dealing with a problem or opportunity. Discuss how you have gone about making a major decision, such as which college or university to attend.
Institute for healthcare improvement site : Register on the Institute for Healthcare Improvement site. This site is free, and when you are asked for an organization, use National American University.
Provide at least two examples of law enforcement agency : Provide at least three keys to successfully engaging the community with the police. Provide at least two examples of an effective response by a law enforcement agency to a community problem.
Advantages of entrepreneurial team : Define the term entrepreneurial teams. What are the advantages of entrepreneurial team?

Reviews

Write a Review

Other Engineering Questions & Answers

  Define the purpose of vhdl program segments

Describe some of the differences between analog and digital electronics - List common products that can have either a digital or analog output.

  Design the appropriate architecture for the project

You are required to design an energy meter based on CPLD (Complex Programmable Logic Device) that will smartly disconnect the supply when sufficient amount of energy units are consumed. The device needs to be programmed using VHDL computing language.

  Find the economic life with interest rate

Find the economic life, with interest rate 12%, of an asset. Initial cost is $5,500. Operation cost is $1,200 per year. Salvage value decreases 15% of new value per year.

  Overcoming the obstucal with good leblel diagram

Write short notes on the overcoming the obstucal with good leblel diagram

  Some purpose such as modeling or curve fitting

Use a For Loop to create an array containing 100 elements between 0 and 500.

  Dc bias point and small-signal model parameters

(a) Choose the value of Re such that Gv is maximized, subject to the constraint that vbe ≤10mV and the transistor stays in the active mode. What is the value of Gv?

  Find current that it will draw and resistance suddenly falls

Calculate the current (I) that it will draw and the resistance (R) of the heating elements. If for some reason the resistance suddenly falls to 2 Ω during use, what would be the consequences?

  Sketch the following periodic wave-forms

Problem 2. Sketch  the following periodic wave-forms

  Arena modify the airline terminal problem by adding agent

modify the airline terminal problem by adding agent breaks. the 16 hours are divided into two 8-hour shifts. agent

  Question 1case study discussiona the it strategy at

question 1case study discussiona the it strategy at nestleacute is almost entirely dictated by the business strategy of

  Players and spectators wear the same clothes

Consider a tennis match in cold weather where both players and spectators wear the same clothes. Which group of people will feel colder? Why?

  Engineering professional seminar

This Ethics Writing Assignment is meant to encourage you, the aspiring engineer, to examine how you will deal with potential ethical conflicts you will encounter in your career. You are encouraged to be thorough in developing your answers and disc..

Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd