Lesson 3.8.1.5
3.8.1.5 Nuclear radius Quiz: AQA Physics, Unit 8
20 questions
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Lesson 3.8.1.5, Nuclear radius: 20 multiple choice questions for the AQA Physics (7408), Unit 8: Nuclear physics (A-level only), written with Revision Ninja.
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The 20 questions
-
Which expression relates the nuclear radius R to the nucleon number A?
- R = R0 x A^3, with R0 about 1.2 x 10^-15 m
- R = R0 x A^(1/2), with R0 about 1.2 x 10^-15 m
- R = R0 x A, with R0 about 1.2 x 10^-15 m
- R = R0 x A^(1/3), with R0 about 1.2 x 10^-15 m
-
What does R proportional to A^(1/3) imply about nuclear density?
- It is the same for all nuclei only if they have the same radius
- It increases with mass number, since heavier nuclei are denser
- It falls as nuclei get larger, since the radius grows
- It is constant for all nuclei, since volume is proportional to A
-
What is the typical size of a nuclear radius?
- about 10^-12 m
- about 10^-18 m
- about 10^-15 m
- about 10^-10 m
-
Using R0 = 1.2 x 10^-15 m, what is the radius of a copper nucleus with A = 64?
- 7.7 x 10^-15 m
- 1.2 x 10^-15 m
- 4.8 x 10^-15 m
- 16 x 10^-15 m
-
Taking R0 = 1.2 x 10^-15 m, what is the approximate density of a copper nucleus with A = 64? Take the nucleon mass as 1.67 x 10^-27 kg.
- 2.3 x 10^17 kg m^-3
- 1.0 x 10^3 kg m^-3
- 2.3 x 10^14 kg m^-3
- 2.3 x 10^20 kg m^-3
-
A nucleus with A = 216 has what ratio of radius to a nucleus with A = 27?
- 8
- 2
- 3
- 1.5
-
A student claims that the nucleus of lead-208 has twice the radius of calcium-40. Is the claim correct?
- Yes, the ratio is about 5, and a cube root gives 2
- Yes, the ratio is 2, since radius is proportional to A
- No, the ratio is about 1.7, since (208/40)^(1/3) = 1.73
- No, the ratio is about 5, since radius is proportional to A
-
A closest-approach estimate gives 4.6 x 10^-14 m for gold, but the nuclear radius is about 7 x 10^-15 m. Why is the closest approach larger?
- Electrons in the atom add to the radius of the nucleus
- The de Broglie wavelength of the alpha particle makes it appear bigger
- Gravitational attraction between the particle and the nucleus increases the apparent radius
- The alpha particle is stopped by Coulomb repulsion before touching the nucleus, so the estimate is an upper limit on the radius
-
Why does electron diffraction give a useful measure of nuclear radius?
- electrons interact with the nuclear charge electromagnetically, and the diffraction pattern depends on the nuclear size
- electrons only reach the outer shell, so the pattern shows the atom's size
- electrons are heavier than alpha particles and reach deeper into the nucleus
- electrons pass through the nucleus and measure its mass directly
-
Using R0 = 1.2 x 10^-15 m, what is the radius of a tellurium nucleus with A = 125?
- 25 x 10^-15 m
- 6.0 x 10^-15 m
- 1.2 x 10^-15 m
- 3.0 x 10^-15 m
-
What is the ratio of the volume of a nucleus with A = 8 to that of a nucleus with A = 1?
- 64
- 8
- 2
- 1
-
A nucleus of A = 27 has radius 3.6 x 10^-15 m. What is R0?
- 0.12 x 10^-15 m
- 1.2 x 10^-15 m
- 9.0 x 10^-15 m
- 3.6 x 10^-15 m
-
What is the radius of an iron-56 nucleus, using R0 = 1.2 x 10^-15 m?
- 1.2 x 10^-15 m
- 6.7 x 10^-15 m
- 2.8 x 10^-15 m
- 4.6 x 10^-15 m
-
Why is nuclear density approximately constant across different nuclei?
- nucleons become smaller in heavier nuclei
- nuclear density is set by the electron cloud, which is the same for all atoms
- radius grows as A^(1/3), so volume grows in direct proportion to the number of nucleons
- heavier nuclei have proportionally more space between their nucleons
-
The closest-approach estimate for a 7.7 MeV alpha particle on lead (Z = 82) is used. Which value is closest to the estimate? Use k = 9.0 x 10^9 N m^2 C^-2.
- 1.5 x 10^-14 m
- 6.1 x 10^-14 m
- 3.1 x 10^-15 m
- 3.1 x 10^-14 m
-
A nucleus has radius 3.0 fm, and R0 = 1.2 fm. What is its approximate nucleon number?
- 8
- 16
- 25
- 3
-
What is the ratio of the volumes of a nucleus with A = 125 and one with A = 1?
- 25
- 5
- 15 625
- 125
-
What is the approximate radius of a single proton nucleus (hydrogen-1), using R0 = 1.2 x 10^-15 m?
- 1.7 x 10^-15 m
- 1.2 x 10^-10 m
- 1.2 x 10^-15 m
- 0.6 x 10^-15 m
-
What does electron diffraction by a nucleus show in its intensity against angle graph?
- electrons absorbed by the nucleus at every angle
- minima whose angles depend on the nuclear size
- a repeating pattern set by the periodic table
- reflection only from the outer surface of the nucleus
-
Nuclear density is about 2.3 x 10^17 kg m^-3. How many times denser is this than water at 1000 kg m^-3?
- about 2 x 10^14 times
- about 2 x 10^7 times
- about 2 x 10^17 times
- about 2 x 10^3 times
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