Mathematics, 30.07.2021 01:00 Carlyalexis641
Use your calibrated wavelengths to calculate the Rydberg Constant: a. Recall Equation 11-3: 1 = 1 2 − 1 (11-3) Hydrogen’s 4 lines correspond to n = 3, 4, 5, and 6 respectively. You will have λ (your calibrated wavelength) and n (its corresponding integer); that is enough data to solve, algebraically, for RH. b. Tabulate an RH for each of your calibrated wavelengths. c. Calculate your average RH and its average deviation; use its average deviation as your uncertainty in RH: δRH
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You have learned about the six trigonometric functions, their definitions, how to use them, and how to represent them graphically. the sine, cosine, and tangent trigonometric functions can be paired with their reciprocal functions, cosecant, secant, and cotangent, respectively. think about how each function is related to its reciprocal function.how are the graphs of the reciprocal functions related to their corresponding original functions? what happens to the graphs of the reciprocal functions as x approaches the zeros of the original functions? describe how you would teach friends with different learning styles (visual-spatial, aural-auditory, verbal-linguistic, physical-bodily-kinesthetic, logical-mathematical, social-interpersonal, and solitary-intrapersonal) how to graph the reciprocal functions
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Use your calibrated wavelengths to calculate the Rydberg Constant: a. Recall Equation 11-3: 1 = 1 2...
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