Radioactive Decay (DP IB Physics: SL): Exam Questions

4 hours58 questions
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An isotope of Am95 241   undergoes alpha-decay. 

Which letter on the N-Z graph below represents the correct proton-neutron product of the decay?

7-1-discrete-energy--radioactivity-sl-mcqs-easy-q6-question-diagram
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    Uranium−238 undergoes radioactive decay to become Thorium−234. A second decay occurs and the product is protactinium−234.

    The decay sequence can be represented in equation form, where i, j and k are particles.:

    U92238Th90234 + iTh90234Pa91234 + j + k

    What are the correct names of these particles?

     

    i

    j

    k

    A

    alpha

    beta−minus

    electron anti−neutrino

    B

    beta−positive

    beta−minus

    alpha

    C

    beta−minus

    neutron

    photon

    D

    alpha

    beta−positive

    neutron

      3
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      What are the correct numbers of protons, neutrons and electrons in a neutral atom of U92234?

       

      protons

      neutrons

      electrons

      A

      92

      92

      92

      B

      92

      142

      92

      C

      142

      92

      142

      D

      234

      142

      92

        4
        1 mark

        What is the charge on, and mass of, an electron neutrino and during what process is an electron neutrino produced?

         

        charge /e

        mass / u

        production of neutrino

        A

        +1

        zero

        during β+ decay

        B

        −1

        +1

        during β decay

        C

        zero

        zero

        during β+ decay

        D

        zero

        0.0005

        during β decay

          5
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          A sample of californium−239 has an activity of 4000 Bq. The half−life of californium−239 is 1 minute.

          What will the activity be after 4 minutes?

          • 4000 Bq

          • 1000 Bq

          • 500 Bq

          • 250 Bq

          6
          1 mark

          Energy-mass equivalence is given by ΔE = Δmc2

          Using the given equation, determine which of the following is a valid unit of mass.

          • MeV

          • MeVc

          • MeVc2

          • eV

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          The average binding energy per nucleon of Neon−20 (Ne1020) nucleus is 8.0 MeV.

          What is the total energy required to separate the nucleons of one nucleus of Ne1020?

          • 0 MeV

          • 8 MeV

          • 160 MeV

          • 800 MeV

          8
          1 mark

          The graph shows the binding energy per nucleon against nucleon number.

          7-2-nuclear-reactions-sl-mcqs-easy-q4-question

          Which row in the table gives possible elements found on the graph at positions X, Y and Z?

           

          X

          Y

          Z

          A.

          Uranium

          Calcium

          Xenon

          B.

          Hydrogen

          Uranium

          Iron

          C.

          Calcium

          Hydrogen

          Iron

          D.

          Hydrogen

          Iron

          Uranium

            9
            1 mark

            Which statement is a definition of binding energy per nucleon?

            • The difference between an atom's mass and the sum of the masses of its nucleons

            • The binding energy of a nucleus divided by the number of nucleons in the nucleus

            • The energy required to break a nucleus into its constituent protons and neutrons

            • The amount of kinetic energy required for fusion to occur

            10
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            Following the development of the atomic bomb, scientists discovered that they could create elements heavier than uranium by bombarding nuclei with neutrons. 

            Two incomplete examples are given below:

            Reaction 1:  U92238 + n01  U......

            Reaction 2:  P94239u + 2n01  A......m + e10

            What are the missing products of these reactions?

             

            Reaction 1

            Reaction 2

            A.

            U92239

            Am95240

            B.

            U92239

            Am95241

            C.

            U92237

            Am95237

            D.

            U92237

            Am95241

              1
              1 mark

              Two samples P and Q of different radioactive isotopes have the same initial activity. Sample P has a third of the number of atoms as sample Q. The half-life of P is T seconds.

              What is the half-life of sample Q?

              • T3

              • T32

              • 3T

              • 32T

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              The half-life of a radioactive isotope is 10 days. What is the approximate percentage of the sample remaining after 25 days?

              • 20

              • 19

              • 16

              • 15

              3
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              A pure sample of a radioactive nuclide undergoes a decay resulting in a stable daughter nuclide. What fraction of the sample is made up of the daughter nuclide after five half-lives?

              • 116

              • 132

              • 1516

              • 3132

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              U92238 decays to thorium-234 by emitting an alpha particle and two gamma rays. Thorium-234 then decays into protactinium via beta decay.

              Which point on the N-Z graph below represents the position of the granddaughter nucleus, protactinium?

              q1
                5
                1 mark

                The half-life of carbon-14 is 6000 years.

                An ancient elephant tusk has been uncovered and its age is unknown. A 20 g sample of the tusk has an activity of 1.25 Bq due to carbon-14.

                A 80 g sample of tusk taken from a living elephant has an activity of 20 Bq.

                Use this information to determine the age of the ancient tusk.

                • 3000 years

                • 12 000 years

                • 18 000 years

                • 24 000 years

                6
                1 mark

                Fluorodeoxyglucose is a compound used as a tracer in medical imaging. The isotope fluorine-18 is used, which is a positron emitter.

                The way these positrons interact with electrons in the body allows PET (positron emission tomography) scanners to determine the rate of respiration certain cells are performing.

                Fluorine-18 decays into an isotope of oxygen.

                Which equation below represents the correct nuclear equation for this decay?

                • F918O818+β+10+υe

                • F918O818+β10+υe¯

                • F918O918+β+10+υe

                • F918O818+β+10+υe¯

                7
                1 mark

                Protactinium-231 (Pa91231) is a radioactive element, it decays by alpha radiation and then beta-minus decay as shown below:

                 Pa91231A+ αB+β+υe¯

                What proton number and mass number will element B have?

                 

                Proton Number

                Mass Number

                A.

                89

                229

                B.

                90

                229

                C.

                89

                227

                D.

                90

                227

                  8
                  1 mark

                  A radioactive source is known to emit β radiation. A Geiger-Muller tube is used to measure the count rate at increasing distances from the source.

                  Which graph correctly represents the variation in count rate over these distances for β radiation?

                  q16_discrete-energy-_-radioactivity_ib-sl-physics-mcq
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                    Unstable nuclei make up 10% of a sample’s mass. The count rate of the sample is measured over a time period of 8 hours.

                    q17_discrete-energy-_-radioactivity_ib-sl-physics-mcq

                    After some time has passed, the percentage of the sample which is unstable reduces to 2.5%. What is the count rate of the source at this time?

                    • 90 cpm

                    • 60 cpm

                    • 45 cpm

                    • 30 cpm

                    10
                    1 mark

                    A source is known to be radioactive but the type of radiation being emitted is unknown.

                    A Geiger-Müller tube is placed close to the source and different materials are placed between the two. A table of the count rates recorded for each material is shown below. The background count rate is 15 counts per minute.

                    Material

                    Count rate recorded / counts per minute

                    Paper

                    528

                    Nothing

                    1064

                    Thick lead

                    17

                    Aluminium

                    524

                    What types of radiation are being emitted by the source?

                    • α, β and γ

                    • α only

                    • β and γ

                    • α and γ

                    11
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                    Three of the four isotopes below are the same element. Which isotope represents a different element?

                     

                    Nucleon number

                    Neutron number

                    A.

                    233

                    141

                    B.

                    235

                    143

                    C.

                    238

                    146

                    D.

                    239

                    146

                      12
                      1 mark

                      The image below shows a simplified version of the binding energy per nucleon E of nuclei versus the nucleon number N. Which of the following positions represents nuclei that are the most stable?

                      q11_nuclear-reactions_ib-sl-physics-mcq
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                        The rest mass of a nucleus of Boron-11 (B511) can be considered as mB. The rest-masses of a neutron and proton can be considered as mN and mP respectively. Which of the following equations is the correct representation for the binding energy of Boron-11?

                        • (5mP + 6mNmB)c2

                        • (5mP + 6mN + mB)c2

                        • (5mP + 11mNmB)c2

                        • (6mP + 5mNmB)c2

                        14
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                        The binding energy per nucleon is 7.98 MeV for an atom ofblank subscript 8 superscript 16 O . Approximately how much energy would be needed to completely separate the nucleons of this atom?

                        • 33.2 MeV

                        • 63.9 MeV

                        • 88.5 MeV

                        • 127.7 MeV

                        15
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                        The mass defect for Helium-4 is 5.04 × 10–29 kg. What is the binding energy of Helium-4 closest to?  

                        • 0.02 MeV

                        • 28 MeV

                        • 190 MeV

                        • 1225 MeV

                        16
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                        Two identical nuclei of mass m fuse to form a single heavier nucleus (with no other products) with mass M. Which of the following statements is correct?

                        • m = M

                        • 2m = M

                        • 2m > M

                        • 2m < M

                        17
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                        Nitrogen-14 can be transformed into Oxygen-17 by bombardment with high energy alpha particles, as described in the nuclear reaction equation below:

                        N714+He24O817+H11

                        The total rest mass of the reactants is 18.006 u and total rest mass of the products is 18.007 u.

                        Which of the following statements about this reaction is correct?

                        • A mass of 0.001 u has been converted to about 1 MeV of energy

                        • The kinetic energy of the products exceeds the kinetic energy of the reactants by about 1 MeV 

                        • The kinetic energy of the reactants exceeds the kinetic energy of the products by about 1 MeV

                        • The mass defect of this reaction is 0.002 u

                        18
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                        The graph below shows how the average binding energy per nucleon varies with nucleon number for stable nuclei.

                        q20_nuclear-reactions_ib-sl-physics-mcq-tif

                        Approximately how much energy is released when the nucleus X70181 forms?

                        • 7.90 MeV

                        • 1430 MeV 

                        • 533 MeV

                        • 888 MeV

                        19
                        1 mark

                        Which statement about nuclear binding energy is correct?

                        • It is the energy equivalent of the mass of the neutrons in a nucleus

                        • It is the energy required to separate nucleons in a nucleus

                        • It is the energy required to overcome the electrostatic force between nucleons in the nucleus

                        • It is the energy required to remove a single nucleon from a nucleus

                        1
                        1 mark

                        A pure sample of a radioactive nuclide of mass m has a half-life of T1/2 and an initial activity of A0.

                        What is the half-life and initial activity of a pure sample of the same radioactive nuclide of mass 3m?

                         

                        Half-life 

                        Initial activity

                        A.

                         T1/2

                        A0

                        B.

                        3T1/2

                        13 A0

                        C.

                         T1/2

                        3A0

                        D.

                        3T1/2

                        3A0

                          2
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                          A particular nucleus, XZA decays to form Yza, which then has two possible decay paths, resulting in either an isotope of Thallium (Tl) or Polonium (Po), as shown.

                          7-1-sl-mcq-hard-q2-phy

                          Which isotope could not be XZA?

                          • Pb82215

                          • Po84214

                          • At85218

                          • Pb82214

                          3
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                          The decay series for Thorium–232 can be plotted as shown.

                          7-1-ib-sl-hard-mcqs-q3-question

                          According to the diagram, how many possible routes are available for Thorium–232 to decay to a stable nucleus of lead−208?

                          • 2

                          • 4

                          • 10

                          • 12

                          4
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                          The diagram shows the decay chain for a particular isotope.

                          7-1-sl-mcq-hard-q4-phy

                          What are the isotopes labelled 1, 2 and 3?

                           

                          1

                          2

                          3

                          A

                           T90230h

                           A85218t

                           P82210b

                          B

                           U92234

                           A85218t

                           P82210b

                          C

                           U92234

                           P84218o

                           T81210l

                          D

                           T90230h

                           P84218o

                           P82210b

                            5
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                            Polythene film is made by extruding polythene and drawing it into a long sheet which is wound onto a roll, as shown in the diagram below.

                            7-1-sl-mcq-hard-q5-phy

                            The manufacturer has to carefully choose a radioactive isotope which will effectively remove any electrostatic charge that has built up on the film. The manufacturer also has to consider the point X, Y or Z at which the radioactive isotope should be placed along the assembly line.

                            At which point should the radioactive isotope be placed, and which type of radiation should the manufacturer choose to remove excess electrostatic charge?

                             

                            Point

                            Type of radiation

                            A

                            X

                            alpha

                            B

                            X

                            gamma

                            C

                            Y

                            beta

                            D

                            Z

                            alpha

                              6
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                              Radioactive isotopes are used in medical imaging.

                              For example, two isotopes of iodine, 123-I and 131-I are both used by radiographers, who give them to patients in the form of iodide before taking scans.

                              The possible decay equations for these isotopes are:

                              1. I53123  T52123e + _____

                                    2. I53131  X54131e + _____

                              Which is a correct difference between these two decays?

                              • In decay 1, an electron neutrino is emitted, but in decay 2 an anti-electron neutrino is emitted

                              • In decay 1, an electron has been absorbed but in decay 2 a neutron has been absorbed

                              • In decay 1, an anti-electron neutrino is emitted, but in decay 2 an electron neutrino is emitted

                              • In decay 1, a neutron became a proton but in decay 2 a proton became a neutron

                              7
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                              The graph shows the how the neutron-proton ratio of stable nuclei changes as proton number increases.

                              7-1-sl-mcq-hard-q8-phy

                              What other changes with increasing proton number are suggested by the graph?

                              1. The charge-mass ratio increases

                              2. The charge-mass ratio decreases

                              3. The likelihood of α-decay increases

                              4. The likelihood of β-positive decay increases

                              5. Protons outnumber neutrons in large nuclei, with a rapidly increasing ratio

                              • 1 and 3

                              • 2 and 3

                              • 2, 4 and 5

                              • 2, 3 and 5

                              8
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                              The charge to mass ratio, Qm, is also known as the specific charge.

                              What is the ratio of specific charge of Li37 nucleusspecific charge of O2+ ion816?

                              • 67

                              • 76

                              • 247

                              • 724

                              9
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                              A nucleus XZA has a mass M. 

                              Which of the following expressions correctly represents the binding energy per nucleon of this nucleus in terms of the speed of light c, the mass of a proton mp and the mass of a neutron mn

                              • (Zmp+AmnMA)c2

                              • (Zmp+(AZ)mnMZ)c2

                              • (Zmp+(ZA)mnMA)c2

                              • (Zmp+(AZ)mnMA)c2

                              10
                              1 mark

                              A nuclear reaction can be written in the form:

                              W+X=Y+Z

                              Energy is released during this reaction. 

                              Which of the following is correct regarding the masses m and the binding energies b of the nuclides?

                               

                              Binding energy

                              Mass

                              A.

                              bW+bX<bY+bZ

                              mW+mX<mY+mZ

                              B.

                              bW+bX>bY+bZ

                              mW+mX<mY+mZ

                              C.

                              bW+bX<bY+bZ

                              mW+mX>mY+mZ

                              D.

                              bW+bX>bY+bZ

                              mW+mX>mY+mZ

                                11
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                                One possible fission reaction for uranium−235 is:

                                U92235 BaX141 +KrZY +3n01

                                The proton number of barium is 20 more than the proton number of krypton. The measured mass of this nucleus is M.

                                Which expression gives the mass defect associated with the krypton nucleus?

                                • 56mp+35mnM

                                • 36mp+55mnM

                                • 36mp+55mnM

                                • 56mp+55mn+M