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Predict the most likely mode of decay an...

Predict the most likely mode of decay and product of decay for the nuclides `S^(35), F^(17)`

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The end product of radioactive decays is

Consider the fission of ._92^238U by fast neutrons. In one fission event , no neutrons are emitted and the final stable end products, after the beta decay of the primary fragments , are ._58^140Ce and ._44^99Ru . Calculate Q for this fission process. Given , m(._92^238U)=238.05079 u, m(._58^140 Ce) = 139.90543 u m(._44^99Ru) = 98.90594 u, m_n =1.008667 u

The initial number of radioactive atoms in a radioactive sample is N_0 . If after time t the number of becomes N, then N=N_0e^(-lambdat) , where lambda is known as the decay constant of the element. The time in which the number of radioactive atoms becomes half of its initial number is called the half-life (T) of the element. The time in which the number of atoms falls to 1/e times of its initial number is the mean life (tau) of the element. The product lambdaN is the activity (A) of the radioactive sample when the number of atoms is N. The SI unit of activity is bequerel (Bq)' where 1 Bq = 1 decay. s^(-1) , and Avogadro's number, N=6.023xx10^23 What is the ratio of activity of same amount of sodium-24 to that of iodine-131? [half life of sodium-24 is 15h.] (A) 1/70 (B) 1/7 (C) 7 (D) 70

The initial number of radioactive atoms in a radioactive sample is N_0 . If after time t the number of becomes N, then N=N_0e^(-lambdat) , where lambda is known as the decay constant of the element. The time in which the number of radioactive atoms becomes half of its initial number is called the half-life (T) of the element. The time in which the number of atoms falls to 1/e times of its initial number is the mean life (tau) of the element. The product lambdaN is the activity (A) of the radioactive sample when the number of atoms is N. The SI unit of activity is bequerel (Bq)' where 1 Bq = 1 decay. s^(-1) , The half-life of Iodine-131 is 8d. Its decay constant (in SI) is - (A) 10^(-6) (B) 1.45xx10^(-6) (C) 2xx10^(-6) (D) 2.9xx10^(-6)

The initial number of radioactive atoms in a radioactive sample is N_0 . If after time t the number of becomes N, then N=N_0e^(-lambdat) , where lambda is known as the decay constant of the element. The time in which the number of radioactive atoms becomes half of its initial number is called the half-life (T) of the element. The time in which the number of atoms falls to 1/e times of its initial number is the mean life (tau) of the element. The product lambdaN is the activity (A) of the radioactive sample when the number of atoms is N. The SI unit of activity is bequerel (Bq)' where 1 Bq = 1 decay. s^(-1) . The half-life of Iodine-131 is 8 d. Its mean life (in SI) is - (A) 4.79xx10^5 s. (B) 6.912xx10^5 s. (C) 9.974 xx 10^5 s. (D) 22.96xx10^5 s.

Which of the following will have the most negative electron gain enthalpy and which has the least negative? P, S, Cl, F. Explain your answer.

The initial number of radioactive atoms in a radioactive sample is N_0 . If after time t the number of becomes N, then N=N_0e^(-lambdat) , where lambda is known as the decay constant of the element. The time in which the number of radioactive atoms becomes half of its initial number is called the half-life (T) of the element. The time in which the number of atoms falls to 1/e times of its initial number is the mean life (tau) of the element. The product lambdaN is the activity (A) of the radioactive sample when the number of atoms is N. The SI unit of activity is bequerel (Bq)' where 1 Bq= 1 decay. s^(-1) . After how many days the activity of Iodine-131 will be 1/16 th of its initial value. [The half-life of Iodine-131 is 8 d.] (A) 24 d (B) 32 d (C) 40 d (D) 48 d

The initial number of radioactive atoms in a radioactive sample is N_0 . If after time t the number of becomes N, then N=N_0e^(-lambdat) , where lambda is known as the decay constant of the element. The time in which the number of radioactive atoms becomes half of its initial number is called the half-life (T) of the element. The time in which the number of atoms falls to 1/e times of its initial number is the mean life (tau) of the element. The product lambdaN is the activity (A) of the radioactive sample when the number of atoms is N. The SI unit of activity is bequerel (Bq)' where 1 Bq = 1 decay. s^(-1) . The half-life of Iodine-131 is 8 d. What is the activity (in Bq) of 1 g of Iodine? (A) 2.3xx10^15 (B) 4.6xx10^15 (C) 6.9xx10^15 (D) 9.2xx10^15

PATHFINDER-CHEMICAL KINETICS-QUESTION BANK
  1. Calculate the energy evolved (in joutes) per molecule of helium by the...

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  2. Which of the following elements is non radioactive ?

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  3. Predict the most likely mode of decay and product of decay for the nuc...

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  4. Find out the total number of alpha and beta particles emitted in the d...

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  5. Ten gram atoms of an alpha-active radioisotope are disintegrating in a...

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  6. The half-life of Th^(232) is 1.4xx10^(10) years and that of its daught...

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  7. Which of the following nuclide is likely to be radioactive?

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  8. A piece of wood was found to have C^(14)/C^(12) ratio 0.7 times that i...

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  9. In a sample of uranium ore the weight of Pb^(206) is 20.6% of the weig...

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  10. The rate of the elementary reaction 2NO +O2 to 2NO2 when the volume of...

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  11. For a general chemical change 2A =3B to products, the rates with respe...

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  12. For the reaction N2 O5 to 2NO2 + 1/2 O2. Given -(d[N2O5])/dt = k3 [N2...

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  13. Which of the following statement is false

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  14. if a is the initial concentration then time required to decompose hafe...

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  15. What will be the order of reaction for a chemical change having follow...

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  16. The rate constant for the reaction, 2N2O5to 4NO2+3.0xx 10^-5s^-1.if th...

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  17. Which is correct relation between dc/dt,dn/dt and dp/dt, where c,n,p r...

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  18. For a first order reaction the ratio of times to complete 99.9% and ha...

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  19. The decomposition of a hydrocarbon follows the equation k= (4.5 xx 10^...

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  20. A reaction (A) forms two products Ea2 =2Ea1 than K1 and K2 will be...

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