Which of the following is the correct value for the ratio of the specific charge of a proton to the specific charge of an alpha particle (\(^{4}_{2}He\))?
Assume the mass of a neutron is equal to the mass of a proton.
Oxford AQA International A-level · Physics (9630)
Constituents of the atom:练习题
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Which of the following statements regarding Rutherford's alpha-particle scattering experiment provides the most direct evidence for the existence of a small, massive, positively charged nucleus?
A specific ion has a charge of \( +4.8 \times 10^{-19} \text{ C} \) and a specific charge of \( 3.1 \times 10^{7} \text{ C kg}^{-1} \). Which of the following is most likely to be the nucleus of this ion?
Take \( 1u = 1.66 \times 10^{-27} \text{ kg} \) and \( e = 1.60 \times 10^{-19} \text{ C} \).
Two isotopes of the same element are ionized. Ion X is \( ^{35}_{17}\text{Cl}^{+} \) and Ion Y is \( ^{37}_{17}\text{Cl}^{+} \).
Which of the following correctly compares the specific charge of Ion X to Ion Y?
In a head-on collision between an alpha particle (mass \( m_{α} \), charge \( +2e \)) and a stationary nucleus (mass \( M \), charge \( +Ze \)), the alpha particle comes to rest at a distance \( d \) from the center of the nucleus. If the experiment is repeated with a nucleus of the same mass but half the proton number, and the initial kinetic energy is halved, what is the new distance of closest approach?
Calculate the specific charge of a lithium-7 nucleus, \({}^{7}_{3}Li\), in SI units.
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In the Rutherford scattering experiment, most alpha particles passed through the gold foil with negligible deflection. State the conclusion drawn from this observation regarding the structure of the atom.
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Determine the ratio of the specific charge of a hydrogen nucleus (proton) to the specific charge of an alpha particle.
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(a) Define the term specific charge of a particle and state its SI unit.
(b) A lithium ion, \(^{7}_{3}Li^{+}\), is formed by removing one electron from a neutral lithium atom. Calculate the specific charge of this lithium ion.
Assume the mass of a nucleon is \(1.67 \times 10^{-27}\) kg and the elementary charge is \(1.60 \times 10^{-19}\) C.
(c) Briefly explain how the results of the Rutherford alpha-particle scattering experiment provided evidence for the existence of a small, massive, and positively charged nucleus.
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(a) Radium-226 (\(^{226}_{88}Ra\)) decays into Radon (Rn) by emitting an alpha particle. Write the complete nuclear equation for this decay.
(b) Calculate the radius of a Radium-226 nucleus.
Use \(R_{0} = 1.25 \times 10^{-15}\) m.
(c) Using the relationship \(R = R_{0}A^{1/3}\), show that the density of nuclear matter is independent of the nucleon number \(A\). Assume the mass of a nucleus is approximately \(A \times u\), where \(u\) is the atomic mass unit.
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