10. [2.0 pts] {Section C} Use the data from part C to calculate the wavelengths of...
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10. [2.0 pts] {Section C} Use the data from part C to calculate the wavelengths of the red and green lasers with associated uncertainty. Are these measured wavelengths consistent with the rated wavelengths on the lasers (given in your dataset)? Part C: Double-slit interference of lasers Hint: d=m-2 is a valid approximation of d-sine = m- A when & is small. The mean of y can be expressed as 9 = 2 × ( max + y min) 2 Additionally, you will need to express the uncertainty of y, i.e., 6y, in terms of ymax and y'min Ask your TA during Office Hour if you have questions. For red laser (λ = 650nm): For green laser (2= 532nm): - Ymax→→→→ Feed nin ولا سهل Ymax = 18.28mm, min = 15.67mm. Separation between slits: d = 0.25mm. Slit-screen distance: L = (1088.23±12.39)mm. —Ymax Ymax 14.96mm, min = 12.83mm. Separation between slits: d = 0.25mm. Slit-screen distance: L = (1088.23±12.39)mm. 10. [2.0 pts] {Section C} Use the data from part C to calculate the wavelengths of the red and green lasers with associated uncertainty. Are these measured wavelengths consistent with the rated wavelengths on the lasers (given in your dataset)? Part C: Double-slit interference of lasers Hint: d=m-2 is a valid approximation of d-sine = m- A when & is small. The mean of y can be expressed as 9 = 2 × ( max + y min) 2 Additionally, you will need to express the uncertainty of y, i.e., 6y, in terms of ymax and y'min Ask your TA during Office Hour if you have questions. For red laser (λ = 650nm): For green laser (2= 532nm): - Ymax→→→→ Feed nin ولا سهل Ymax = 18.28mm, min = 15.67mm. Separation between slits: d = 0.25mm. Slit-screen distance: L = (1088.23±12.39)mm. —Ymax Ymax 14.96mm, min = 12.83mm. Separation between slits: d = 0.25mm. Slit-screen distance: L = (1088.23±12.39)mm.
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Public Finance A Contemporary Application of Theory to Policy
ISBN: 978-1285173955
11th edition
Authors: David N Hyman
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