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Nuclear Fission and Fusion

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Presentation on theme: "Nuclear Fission and Fusion"— Presentation transcript:

1 Nuclear Fission and Fusion

2 Warm - Up What do you know, or think you know, about nuclear fission and fusion?

3 Objectives Today I will be able to:
Distinguish between different types of radiation with respect to their penetration power. Complete a Venn Diagram to compare and contrast nuclear fission and fusion. Review atom concepts to prepare for an exam

4 Homework Study for the Atom Exam on Monday/ Tuesday of Next Week
Keep working on data collection for STEM fair

5 Agenda Warm – up Collect STEM introductions
Review Gamma, Positron and Electron Capture Radioactivity Equation Practice Nuclear Chemistry Notes Fission vs. Fusion Venn Diagram Atom Exam Review Exit Ticket

6 Radiation Composition & Symbol Is shielded or stopped by? Alpha Beta Gamma

7 Radiation Composition & Symbol Is shielded or stopped by? Alpha 2 p+ and 2 n0 Beta Stream of high speed e- Gamma Very high energy electromagnetic radiation

8 Shielding Radiation , aluminum
Which type of radiation is the most penetrating? gamma rays Which type of radiation do you think is most dangerous? gamma rays Sun glasses have UVA and UVB protection. The UV-A stand for ultra violet alpha particles and the UV-B stands for ultra violet beta particles. Almost all sunglasses offer 100% UVA protection. Be sure to get 100% UVB protection as well.

9 Radiation Composition & Symbol Is shielded or stopped by? Alpha 2 p+ and 2 n0 paper Beta Stream of high speed e- Clothing, wood Gamma Very high energy electromagnetic radiation Concrete, lead

10 Nuclear Fission A heavy nucleus splits into more stable nuclei of intermediate mass.

11 Atomic Bombs Atomic bombs are an example of Fission Reactions.
“Little boy” and “Fat man” were Atomic bombs made from fission reactions with uranium and plutonium respectively. A fission chain reaction is started and continues until the bomb destroys itself.

12 Little Boy and Fat Man

13 Nuclear Power Plants map: Nuclear Energy Institute

14 Nuclear Power Plants Uranium-235 undergoes nuclear fission and releases thermal (heat) energy. This turns water to steam which spins turbines. The turbines produce electrical energy. Nuclear waste is fuel rods with unreacted uranium and radioactive products of fission. Right now this waste is buried in waste management facilities, like Yucca Mountain.

15 Maryland Nuclear Power Plant
Calvert Cliffs is Maryland’s nuclear power plant

16 http://www. cleanenergyinsight

17 Nuclear Fusion Low-mass nuclei combine to form a heavier, more stable nucleus.

18 Hydrogen Bombs Hydrogen bombs are an example of nuclear fusion.
Two isotopes of hydrogen, 2H and 3H, fuse together and produce a lot of energy in the process. H-bombs release significantly more energy than atomic bombs.

19 The Sun: Nuclear Fusion
+ + + Energy Four hydrogen nuclei (protons) Two beta particles (electrons) One helium nucleus

20 Nuclear Fission Nuclear Fusion

21 Release huge amounts of energy
Nuclear Fission Nuclear Fusion High temp and pressure are used to combine light atoms to make heavier atoms Ex: Fuels the sun and stars & Hydrogen Bombs A heavy atom splits into two or more lighter nuclei Ex: Atomic Bombs & Nuclear reactors Release huge amounts of energy Produce nuclear waste

22 Comparing Fission and Fusion

23 Did You Know ?

24 The Next Slide The next slide shows a great flow diagram that links a lot of radioactive decay concepts.

25 http://images4. wikia. nocookie

26 Exit Ticket


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