Question

Activity 27-4. Nuclear fission [Accompanies Section 27-4] A uranium nucleus (235U) absorbs a neutron. (2 The result is a uranActivity 27-4 [continued]. (b) Using your results from part (a), explain why energy is released in the neutron-induced fissioThe illustration shows one possible way that a nucleus of uranium-235 (235U) can undergo neutron-induced fission. (a) Rank the following objects in order of their binding energy per nucleon, from largest to smallest. If any two objects have the same binding energy per nucleon, state this. Explain how you made your ranking. (i) The uranium-235 (235U) nucleus (ii) The tellurium-134 (134Te) nucleus (iii) The zirconium-99 (99Zr) nucleus (iv) The three neutrons Activity 27-4 [continued]. (b) Using your results from part (a), explain why energy is released in the neutron-induced fission of 235U shown in the figure on the preceding page. (c) Once the 236U* nucleus fissions, the 134Te nucleus and 99Zr nuclei actually accelerate away from each other. What is the force that causes this acceleration? Explain your reasoning. (i) The strong nuclear force that acts between the individual nucleons of the 134Te nucleus (ii) The strong nuclear force that acts between the individual nucleons of the 99Zr nucleus (iii) The strong nuclear force that acts between the 134Te nucleus and the 99Zr nucleus (iv) The electric force that acts between the individual protons of the 134Te nucleus (v) The electric force that acts between the individual protons of the 99Zr nucleus (vi) The electric force that acts between the 134Te nucleus and the 99Zr nucleus (vii) More than one of the above

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Solution:

Part (a): From the given data, the binding energy per nuclion form higher to lower order is arrange as followes:

235 92 > 73134 Zr. 52 > 3 xn 40 (1)

Here, no one have the same binding energy per nuclion.

Here we made the ranking of binding energy per nuclion on the basis of their size.

Part (b): Since heavy size nuclius has more binding energy per nuclion compare to smaller size nuclius. So, when a heavy size nuclius is breaks into two or more smaller size nuclius, then the energy is released in this process.

Part (c): Once after fission of U235, the nuclius T134 and Zr99 accelerate away from each other due to the electric force that acts between the nuclius T134 and Zr99. So, obtion (vi) is correct.

Add a comment
Know the answer?
Add Answer to:
The illustration shows one possible way that a nucleus of uranium-235 (235U) can undergo neutron-induced fission....
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Activity 27-4. Nuclear fission (Accompanies Section 27-4] 1 A uranium nucleus (235U) absorbs a neutron. The...

    Activity 27-4. Nuclear fission (Accompanies Section 27-4] 1 A uranium nucleus (235U) absorbs a neutron. The result is a uranium nucleus (236U) in an excited state. 3 The excited uranium nucleus fissions into two smaller, more tightly bound nuclei... ...as well as a few neutrons. These can trigger the fission of other 235U nuclei. 3 neutrons Neutron + 2350 236U 134 Te 9976 Z = 0 protons Z = 92 protons N = 1 neutron N = 143 neutrons A=Z+N...

  • A Uranium-235 atom undergoes fission in the following net reaction (induced fission involves an intermediate step...

    A Uranium-235 atom undergoes fission in the following net reaction (induced fission involves an intermediate step as U-236 which we will ignore): U-235 --> X + Y + 2n U-235 is the 'parent', X and Y are 'daughters' (= fission products), n = free neutron. 1 u = atomic mass unit = 1.66 x 10-27 kg mn = mass of a neutron = 1.008665 u mp = mass of a proton = 1.007825 u 1 eV = 1.602 x 10-19...

  • Consider a fission reaction where a Uranium-235 nucleus absorbs a neutron and then splits to Strontium,...

    Consider a fission reaction where a Uranium-235 nucleus absorbs a neutron and then splits to Strontium, Xenon, and some neutrons. If the strontium nucleus has a mass number of 93 and the Xenon nucleus has a mass number of 140, how much energy is released in a single reaction? Use the attached table for the atomic masses of the nuclei. Give your answer in MeV and with 4 significant figures. Neutron 0 1 1.008665 Uranium 92 235 235.043923 Strontium 38...

  • Write a nuclear equation for the fission of uranium−235 by neutron bombardment to form strontium−90, an...

    Write a nuclear equation for the fission of uranium−235 by neutron bombardment to form strontium−90, an isotope of xenon, and three neutrons. ( Give all nuclei in the form A X Z . )

  • Consider a fission reaction where a Uranium-235 nucleus absorbs a neutron and then splits to Strontium,...

    Consider a fission reaction where a Uranium-235 nucleus absorbs a neutron and then splits to Strontium, Xenon, and some neutrons. If the strontium nucleus has a mass number of 89 and the Xenon nucleus has a mass number of 144, how much energy is released in a single reaction? Use the attached table for the atomic masses of the nuclei. Give your answer in MeV and with 4 significant figures. (Hint: Balance the reaction first). Isotope Masses for Fission A...

  • In one fusion reaction that occurs in the cores of certain stars, a nucleus of helium-4...

    In one fusion reaction that occurs in the cores of certain stars, a nucleus of helium-4 (4He, with two protons and two neutrons) fuses with a nucleus of neon-20 (20Ne, with 10 protons and 10 neutron) to form a nucleus of magnesium-24 (24Mg, with 12 protons and 12 neutrons). A gamma-ray photon (γ) is also produced: 4He + 20Ne → 24Mg + γ (a) Rank the following nuclei in order of their binding energy per nucleon, from largest to smallest....

  • When a neutron collides with a uranium -235 nucleus it can induce a variety of fission...

    When a neutron collides with a uranium -235 nucleus it can induce a variety of fission reactions. one such reaction is 235/92 U + 1/0n. 140/54 Xe + 94/38 Sr + 2 1/0 n The following mass values are known 140/54 Xe: 139.921620u. 94/38 Sr : 93.915367u. 235/92U:235.043924u. 1/0n: 1.08665 u. How much energy is released in this reaction?

  • Activity 27-5. Nuclear fusion [Accompanies Section 27-5] In one fusion reaction that occurs in the cores...

    Activity 27-5. Nuclear fusion [Accompanies Section 27-5] In one fusion reaction that occurs in the cores of certain stars, a nucleus of helium-4 (-He, with two protons and two neutrons) fuses with a nucleus of neon-20 (2°Ne, with 10 protons and 10 neutron) to form a nucleus of magnesium-24 (24Mg, with 12 protons and 12 neutrons). A gamma-ray photon (y) is also produced: He + 20Ne + 24 Mg + y (a) Rank the following nuclei in order of their...

  • a) Calculate the energy released in the neutron-induced fission n + 235U --> 92Kr + 142Ba...

    a) Calculate the energy released in the neutron-induced fission n + 235U --> 92Kr + 142Ba + 2n given the neutron is 1.008665 u, the mass of is 235 U 235.043924 u, the mass of 92Kr is 91.926269 u, and the mass of 142Ba is 141.916361 u. b) Confirm that the total number of nucleons and total charge are conserved in this reaction. The atomic mass is 1.66053904 X 10-27 kg.

  • possible options When fission of Uranium-235 Is Initiated by a neutron it can result in many...

    possible options When fission of Uranium-235 Is Initiated by a neutron it can result in many different products. Fill in the correct isotope to complete each reaction. S. CU + n_Cs1 U+in-Kr+ "U + 'n Set - 2 n +3 in +3 in nmann 144 11.44 Rb Ba CSCe Se Kr | zr Te xe Ny Sr Th Reset

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT