Deck 5: Some Basic Nuclear Physics

Full screen (f)
exit full mode
Question
A simple method of calculating the age of the earth is based on the natural A simple method of calculating the age of the earth is based on the natural  <div style=padding-top: 35px>
Use Space or
up arrow
down arrow
to flip the card.
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
Tabulate the number of neutrons, protons, and electrons for neutral atoms of Tabulate the number of neutrons, protons, and electrons for neutral atoms of  <div style=padding-top: 35px>
Question
The total binding energy is a useful property for comparing the relative The total binding energy is a useful property for comparing the relative  <div style=padding-top: 35px>
Question
Calculate the energy associated with the β+ decay process in equation (5.19).
Note: be careful counting electrons.
Question
The measured decay rates of a radioactive material as a function of time are
shown in the table below.
(a) Calculate the half-life of the decay.
(b) Show that a semilogarithmic plot of the decay rate as a function of time is linear.
(c) Derive an analytical form of the linear relationship for part (b). The measured decay rates of a radioactive material as a function of time are shown in the table below. (a) Calculate the half-life of the decay. (b) Show that a semilogarithmic plot of the decay rate as a function of time is linear. (c) Derive an analytical form of the linear relationship for part (b).  <div style=padding-top: 35px>
Question
Using the energy stated in the text for the process in equation (5.28),
calculate the atomic mass of Using the energy stated in the text for the process in equation (5.28), calculate the atomic mass of  <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
Calculate the energy associated with the process in equation (5.18)
Question
Assume carbon Assume carbon    <div style=padding-top: 35px> Assume carbon    <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
Using the reaction energy given in the text for equation (5.27) calculate the Using the reaction energy given in the text for equation (5.27) calculate the  <div style=padding-top: 35px>
Question
At t = 0 there are At t = 0 there are   nuclei of a particular nuclide in a sample. The  <div style=padding-top: 35px> nuclei of a particular nuclide in a sample. The At t = 0 there are   nuclei of a particular nuclide in a sample. The  <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
   <div style=padding-top: 35px>    <div style=padding-top: 35px>
Question
Nuclide A has a half-life of 4 days, and nuclide B has a half-life of 16 days. Nuclide A has a half-life of 4 days, and nuclide B has a half-life of 16 days.  <div style=padding-top: 35px>
Question
(a) Write the equation for the α-decay of (a) Write the equation for the α-decay of    <div style=padding-top: 35px> (a) Write the equation for the α-decay of    <div style=padding-top: 35px>
Unlock Deck
Sign up to unlock the cards in this deck!
Unlock Deck
Unlock Deck
1/20
auto play flashcards
Play
simple tutorial
Full screen (f)
exit full mode
Deck 5: Some Basic Nuclear Physics
1
A simple method of calculating the age of the earth is based on the natural A simple method of calculating the age of the earth is based on the natural
At the time the earth was created the ratio of uranium isotopes was
64 At the time the earth was created the ratio of uranium isotopes was 64   65 66 65
66
2
    54     54 54
3
Tabulate the number of neutrons, protons, and electrons for neutral atoms of Tabulate the number of neutrons, protons, and electrons for neutral atoms of
The superscript gives The superscript gives   these elements to be  these elements to be The superscript gives   these elements to be
4
The total binding energy is a useful property for comparing the relative The total binding energy is a useful property for comparing the relative
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
5
Calculate the energy associated with the β+ decay process in equation (5.19).
Note: be careful counting electrons.
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
6
The measured decay rates of a radioactive material as a function of time are
shown in the table below.
(a) Calculate the half-life of the decay.
(b) Show that a semilogarithmic plot of the decay rate as a function of time is linear.
(c) Derive an analytical form of the linear relationship for part (b). The measured decay rates of a radioactive material as a function of time are shown in the table below. (a) Calculate the half-life of the decay. (b) Show that a semilogarithmic plot of the decay rate as a function of time is linear. (c) Derive an analytical form of the linear relationship for part (b).
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
7
Using the energy stated in the text for the process in equation (5.28),
calculate the atomic mass of Using the energy stated in the text for the process in equation (5.28), calculate the atomic mass of
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
8
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
9
Calculate the energy associated with the process in equation (5.18)
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
10
Assume carbon Assume carbon    Assume carbon
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
11
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
12
Using the reaction energy given in the text for equation (5.27) calculate the Using the reaction energy given in the text for equation (5.27) calculate the
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
13
At t = 0 there are At t = 0 there are   nuclei of a particular nuclide in a sample. The  nuclei of a particular nuclide in a sample. The At t = 0 there are   nuclei of a particular nuclide in a sample. The
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
14
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
15
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
16
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
17
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
18
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
19
Nuclide A has a half-life of 4 days, and nuclide B has a half-life of 16 days. Nuclide A has a half-life of 4 days, and nuclide B has a half-life of 16 days.
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
20
(a) Write the equation for the α-decay of (a) Write the equation for the α-decay of    (a) Write the equation for the α-decay of
Unlock Deck
Unlock for access to all 20 flashcards in this deck.
Unlock Deck
k this deck
locked card icon
Unlock Deck
Unlock for access to all 20 flashcards in this deck.