Question: MATLAB PROBLEM problem 3.28 I can't get my Matlab code to work. how do I write this in Matlab? thanks Users/under-000/Desktop/Steven%20C%20Chapra%20Applied%20Numerical%20Methods%20with%20Matlab pdf na such as

 MATLAB PROBLEM problem 3.28 I can't get my Matlab code to

work. how do I write this in Matlab? thanks Users/under-000/Desktop/Steven%20C%20Chapra%20Applied%20Numerical%20Methods%20with%20Matlab pdf na

such as crystal growth, flud turbulence, and gal- loops and (b) using

MATLAB PROBLEM problem 3.28 I can't get my Matlab code to work. how do I write this in Matlab? thanks

Users/under-000/Desktop/Steven%20C%20Chapra%20Applied%20Numerical%20Methods%20with%20Matlab pdf na such as crystal growth, flud turbulence, and gal- loops and (b) using sum functions. axy formation. Devaney (1990) has written a nice little book 3.28 The pressure and temperature of the atmosphere ane that includes a simple algorithm to create an interesting fractal constantly changing depending on a number of factors in- pattern. Here is a step-by-step description of this algorithm: cluding altitude, latitude/longitude, time of day, and season. Step 1: Assign value to m and n and set hold on. Step 2: Start a for loop to terte over ii 1:100000 Step 3: Compute a random number, q = 3*rand (1) To take all these variations into account when considering the design and performance of flight vehicles is impracti- cal. Therefore, a standard atmosphere is frequently used to alue of q is less than I go to Step 5. Otherwise provide engineers and scientists with a common reference for their research and development. The International Stan- of the earth's atmosphere change over a wide range of altitudes or Step 6: If the value of q is less than 2 go to Step 7. Otherwise elevations. The following table shows values of temperature go to Step 6 then go to Step 9 go to Step 8. Step 5: Compute new values for m = m/2 and n = n/2 and dard Atmosphere is one such model of how conditions and pressure at selected altitudes. Base Temperature T(C) 15 -56.5 -56.5 -44.5 -2.5 Base Geopotential Lapse Rate Base Layer Index, / Layer Name Altitude Above MSL, h (km) C/km) Pressure, p (Pa) 101,325 -6.5 Troposphere Tropopause Stratosphere Stratosphere Stratopause Mesosphere Mesosphere Mesopause 20 32 47 51 71 22.632 5474.9 868.02 110.91 66.939 3.9564 0.3734 -2.5 2.8 -2.0 -58.5 84.852 -86.28 97 PROBLEMS

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