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A 1. According to Maxwell's laws of electromagnetism, the orbital frequency (the mow number of complete orbits per second) of an electron will match the
A 1. According to Maxwell's laws of electromagnetism, the orbital frequency (the mow number of complete orbits per second) of an electron will match the frequency of the emitted radiation. el love a. If an electron were to spiral into the nucleus, what would happen to the electron's orbital frequency? centriplal acceleration. Frequency Will increase as it move toward nucleus @2009 Alberta Education nitted Of the electron and what is the wavelength of u. energy absorbed Investigating 5 $5-(-13.6) . d)- or 2.04 x 10 - 18 J 2. 75 ev cation14 Assignment Booklet Physics 30: Module 7 If an electron were to spiral into the nucleus, what would happen to the frequency b . of the emitted radiation? (1 mark) C. If an electron were to spiral into the nucleus, what kind of spectrum would be produced-a continuous or line spectrum? Explain. (1 mark) d. (1 mark) Look at the emission spectrum of hydrogen. What kind of spectrum is this? Does Rutherford's model predict the correct spectrum? tort (1 mark) A 2. According to Bohr, why did an atom not collapse in on itself while its electrons travelled around the nucleus? A 3. Using Bohr's model, explain what happens in the atom when a photon of light is (1 mark) a. emitted (1 mark) b . absorbed A 4. Earlier, when you read about the energy levels of hydrogen, you were introduced to an energy level diagram. On this diagram, the n = . energy level is represented. On the applet, complete an n = 1 to n = transition and observe the energy state data. 2009 Alberta Education
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