PHYSICS F/SCI.+ENGR.,CHAPTERS 1-37
5th Edition
ISBN: 9780134378060
Author: GIANCOLI
Publisher: RENT PEARS
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Chapter 41, Problem 13P
To determine
The total binding energy for
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(b) The deuteron is an 'iso-singlet'. Calculate the ratio of the cross-sections for the
following reactions:
i. p+p+d+n+
ii. p+nd+nº
iii. n+nd+π¯
2) Using semiempirical
mass formula to compute the total binding energy for 2¹ Ne.
(b) An old campfire is uncovered during an archaeological dig. Its charcoal is found to containless than 1/200 the normal amount of 14C. Estimate the minimum age of the charcoal (in years).Assume half life of 14C is 5730 years.
Chapter 41 Solutions
PHYSICS F/SCI.+ENGR.,CHAPTERS 1-37
Ch. 41 - Prob. 1QCh. 41 - Prob. 3QCh. 41 - Prob. 5QCh. 41 - How do we know there is such a thing as the strong...Ch. 41 - Prob. 7QCh. 41 - What is the experimental evidence in favor of...Ch. 41 - Prob. 9QCh. 41 - Prob. 10QCh. 41 - Prob. 16QCh. 41 - Prob. 2P
Ch. 41 - Prob. 3PCh. 41 - Prob. 4PCh. 41 - Prob. 5PCh. 41 - Prob. 6PCh. 41 - Prob. 7PCh. 41 - Prob. 8PCh. 41 - Prob. 9PCh. 41 - Prob. 10PCh. 41 - Prob. 11PCh. 41 - Prob. 12PCh. 41 - Prob. 13PCh. 41 - Prob. 21PCh. 41 - Prob. 26PCh. 41 - Prob. 62GPCh. 41 - Prob. 63GPCh. 41 - Prob. 64GPCh. 41 - Prob. 65GPCh. 41 - Prob. 83GP
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- Calculate the angle at which the (d, n) cross. section has a maximum for | = 0, 1, 2, 3 and 4. Assume a deuteron energy of 12.9 MeV. Use R = 1.2 fm.arrow_forwardI mass formula to compute the total binding energy for Fe. 5) Using the semiempiricalarrow_forwardDetermine the nuclear magnetic moment of Cl nucleus, using the Shell model. (for a 35 17 proton g, =1,g, 5.586 and for a neutron g, =0, g, =-3.826) %3D %3D (a) 4.79µy (b) 3.79y (c) 0 (d) 1.91uyarrow_forward
- 18) Find the total binding energy of 208Pbarrow_forward15. Suppose the nucleon-nucleon force were stronger, so that the deuteron had the following bound states: State A is the "well-known" ground state with the properties discussed in this chapter. State B is very close to state A. At a large energy gap AE THE FORCE BETWEEN NUCLEONS 115 C, D, E, F ΔΕ I = ? I = 1 A above states A and B are four states, C, D, E, and F. There are no other states near C, D, E, and F. (a) What is the most likely value of the relative orbital angular momentum of the nucleons in state B? What is the relative orientation of the nucleon intrinsic spins in state B, and what is the resulting value of the total angular momentum I in state B? (b) In states C, D, E, and F the nucleons have the same relative orbital angular momentum (but different from state A). Make a reasonable guess at the value of the orbital angular momentum and justify your choice. (c) By considering the possible couplings of the orbital angular momentum and the intrinsic spins of the two nucleons,…arrow_forwardThe binding energy of one neutron in 20Ca is: [Hint: ay = 15.85, as = 18.34, ac = 0.71, aa = 23.21, ap 12 (MeV)]arrow_forward
- (a) Show that if you assume the average nucleus is spherical with a radius r=r0A1/3, and with a mass at A u, then its density is independent at A. (b) Calculate that density in u/fm3 and kg/m3, and compare your results with those found in Example 31.1 for 56Fe.arrow_forward5 Answer the following questions: a) For a homogeneous nucleation process, sketch the dependence of the surface and bulk free energies on the radius of a spherical embryo using the equation below. kT AG, = 4rv*y -* inS V, AG > r b) Sketch the dependence of the free energy changes (AG,) on the radius of a spherical embryo when the supersaturation ratio (S) is greater than 1, equal to 1 and less than 1. AG c) Discuss the importance of supersaturation on precipitationarrow_forwardCalculate the binding energy of Oxygen-16. (Oxygen has an atomic number of 8 and Atomic Weight of 15.9949u) Group of answer choices A)182.7 MeV B)127.6 MeV C)479.5 MeV D) 80.2 MeV E) 279.9 MeVarrow_forward
- A sample of shale contains 0.055% 238U by weight. Calculate the number of spontaneous fi ssions in one day in a 106-kg pile of the shale by determining (a) the mass of 238U present, (b) the number of 238U atoms, (c) the fi ssion activity, and fi nally (d) the number of fi ssions. The spontaneous fi ssion activity rate of 238U is 6.7 fi ssions/kg*s.arrow_forwardCompute the approximate nuclear radius of: U (ن) (d) Nit -12 I allatiun c Actinium-89arrow_forwardEstimate the approximately value of the temperature necessary to overcome the Coulomb repulsion barrier of the D-T fusion reaction and discuss why this very high temperature is needed?arrow_forward
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