Question: Solve for I using natural logarithms. 30 = 5(1.5') Round your answer to three decimal places. t= Solve for I using natural logarithms. 13 =

 Solve for I using natural logarithms. 30 = 5(1.5') Round youranswer to three decimal places. t= Solve for I using natural logarithms.13 = 46' Round your answer to three decimal places. t= Solvefor I using natural logarithms. 10 = 506006! Round your answer tothree decimal places. r= Solve for If using natural logarithms. get17:0 NOTE:Round your answer to three decimal places. Put the function P =
7(1.3)t in the form P = Poe\". NOTE: Round your answer tofour decimal places, if required. P= The concentration of the car exhaustfume nitrous oxide, N02, in the air near a busy road isa function of distance from the road. The concentration decays exponentially ata continuous rate of 2.54% per meter.1 At what distance from theroad is the concentration of N02 half what it is on the

Solve for I using natural logarithms. 30 = 5(1.5') Round your answer to three decimal places. t= Solve for I using natural logarithms. 13 = 46' Round your answer to three decimal places. t= Solve for I using natural logarithms. 10 = 506006! Round your answer to three decimal places. r= Solve for If using natural logarithms. get17:0 NOTE: Round your answer to three decimal places. Put the function P = 7(1.3)t in the form P = Poe\". NOTE: Round your answer to four decimal places, if required. P= The concentration of the car exhaust fume nitrous oxide, N02, in the air near a busy road is a function of distance from the road. The concentration decays exponentially at a continuous rate of 2.54% per meter.1 At what distance from the road is the concentration of N02 half what it is on the road? Round your answer to the nearest integer. At meters from the road the concentration of N02 in the air is half the concentration on the road. At what distance from the road is the concentration of N02 60% of what it is on the road? At a I meters from the road the concentration of N02 in the air is 60% of the concentration on the road. 1P. Rickwood, and D. Knight, "The Health Impacts of Local Trafc Pollution on Primary School Age Child ren", State ofAustralian Cities 2009 Conference Proceedings, www.be.unsw.edu.au, accessed March 24, 2016

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