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state the equation that you use Semiconductor Germanium has a density of 5323 a. cm- and...
could you please answer all parts of this question. like and comment are rewarded. A3. (a) In a proton-antiproton collider experiment, the p and p beams have equal and opposite momenta. In the experiment, the following process occurs p+p+ Dº + Dº The Dº meson is unstable and decays via Dº + K+ + The K+ meson has a lifetime of tK = 1.23 x 10-8s and a decay length of 6.50 m in the rest frame of the Dº...
Question 1 (a) A convex lens with a focal length of 15 cm is placed 25 cm from a lighted object. At what distance will an image be formed? Will it be real? (b) An object is placed 10 cm from a concave mirror. The focal length is 5 cm. Determine the image distance and the magnification of the image. (c) Light in vacuum is incident on the surface of a glass slab. In the vacuum, the beam makes an...
need help with 2!! I attatched the given informarion. please let me know what values you are using! 2. Consider the beta decay of tritium (eq 2). He + je (2) As you did in Question 1 for the neutron decay of H-2, determine the following for the beta decay of H-3: (a) the rest mass of the reactant (in kg, with six significant figures); (b) the sum of rest masses of the products (in kg, with six significant figures);...
I can answer the multiple choice, I just need help with the fill ins. Question 1 (1 Point) This assignment is set up for sequential assessment. Complete each question and submit the answer before moving on to the next question. Correct answers for each question will be made available once the maximum number of attempts have been made for each submission. Nuclear Physics - Nuclear Structure Nuclear Structure Z O Proton r=ro41/3 radius N Neutron A = Z+N A ro...
I can answer the multiple choice, I just need help with the fill ins. Question 1 (1 Point) This assignment is set up for sequential assessment. Complete each question and submit the answer before moving on to the next question. Correct answers for each question will be made available once the maximum number of attempts have been made for each submission. Nuclear Physics - Nuclear Structure Nuclear Structure Z O Proton r=ro41/3 radius N Neutron A = Z+N A ro...
a) solve q value b/c) draw Feynman diagram 3. (a) Calculate the Q-value (in MeV) for the following reaction (see the table on page 4): p+ → Aº + Kº + Tº (c) Draw a possible Feynman diagram for the reaction above at the quark level. The quark composition of the particles are as follows: p: uud, nt :ūd, Aº: uds, Kº: ds, Tº: uū. Partide name Symbol Anti- particle Spin Mass (MeV/c) B L L . S antiparticles have...
could you please answer all parts of this question. like and comment are rewarded. Compulsory question: [8] A1. (a) Consider the following processes (i) + +n+p+et te (ii) H+ e + e + D (iii) + +et+ve (iv) K+ + + + V Use conservation laws to determine which of these processes are allowed. For processes that are not allowed, state which conservation laws are violated. For processes that are allowed, specify by which interaction (electromagnetic, weak or strong) they...
The power density (Watts per kg) produced by a given nuclear reaction in a gas of density ρ between species a and b with mass fractions X, charge numbers Z and atomic mass numbers A varies as 1/6 1/3] where Q and So are constants for the given reaction, m is the reduced mass, and Eg is the Gamow energy: th (MKS units). (a) Show that the dependence of e at a temperature T near To can be approximated as...
thank u so much! 6. One form of nuclear radiation, beta decay, occurs when a neutron changes into a proton, an electron, and a neutral particle called an antineutrino: n → pt + e + De, where ve is the symbol for an antineutrino. When this change happens to a neutron within the nucleus of an atom, the proton remains behind in the nucleus while the electron and neutrino are ejected from the nucleus. The ejected electron is called a...
The ideal gas law, discovered experimentally, is an equation of state that relates the observable state variables of the gas. pressure, temperature, and density (or quantity per volume$$ \eta V=N k_{\mathrm{B}} T(\mathrm{or} p V=n \mathrm{RT}) $$Where \(N\) is the number of atoms, \(n\) is the number of moles, and \(R\) and \(k_{\mathrm{B}}\) are ideal gas constants such that \(R=N_{\mathrm{A}} k_{\mathrm{B}}\), where \(N_{A}\) is Avogadro's number. In this problem. you should use Boltzmann's constant instead of the gas constant \(R\).Remaıkably. the...