test4 phys - T0)q%uv Y E 8 2T 31C"&n IE 2 T 2...

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D % 2 x 2 # % 2T 2 % x 2 ) 3&"v '(3&C"R"1C"dkjCR" 1C"C& 33m(&'3CCC'% w T0w'095C'u53) C5C'yQ$"313p3&"vs'r$) Cp0C"&V"1$""}v ) # 2 % ) 8 2 % 2 # ! 2 % x @ # % 2T 2 2 # % 2T @ ! 2 # ) 2 # ! % qT # ! 8 # @% x 2 %G I I C"'0CCwC"9E 1E U s'CCv&" 1Vcw&30Bnv0) l3Cs"Fuq @ % @ ! h # % T ) # 2 % ) 8 ) # % % 2 % @ ! t 5 # F D 0 5 # 2 9 8 0 5 # 2 0 ( # 6BWC4EC%6B4A@$7!6431)'&%%$"! (show your work! 6 points each (Ray diagram is 4 pts.)) 2) Suppose you have 2 lenses separated by 10.0 cm. Light from an object at 36.0 cm in front of the center of the first lens, enters the first lens, focal length, f = 70.0 cm, and then enters the second lens, focal length, f = 20.0 cm. Where is the image from this 2 lens system located? Please draw a ray diagram to illustrate your answer. Determine the overall magification as well. 70.0 cm 70.0 cm f f f f 20.0cm 20.0cm q(final) = (to the right of the 2nd lens) M(overall) = 3) You have performed a photoelectric effect experiment and have the data shown in the table below. From the data, please determine Plank's constant, h, and the work function for the material you used in the photoelectric apparatus. You will find it useful to graph the data in a convenient form for your calculations. (I.e. not all data points are useful for your estimate!) Show your work and briefly explain your results. Wavelength 579.1 (nm) 577.0 546.1 435.8 404.7 365.0 | Vstop | 0.02 (Volts) 0.00 0.03 0.60 0.81 1.14 O= (8 pts.) (8 pts.) h= Explanation of results and graph (4 pts.) 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This note was uploaded on 01/19/2009 for the course PHYS 116b taught by Professor Haglund during the Fall '07 term at Vanderbilt.

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