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Methodology part.
Start your methodology by summarising the processes and techniques used in solving equations, defining/estimating parameters and initial conditions, and analysing the data. A good methodology is one that is clear and enables the reader to follow your rationale and repeat your work.
Summarising your 12 methodology in a schematic/flowchart will often help the reader understand it. Specifically: .
Describing the process of researching or estimating parameters for the equations obtained in section
1, outlining their values. Calculating the critical points of the equations obtained in the model in section 1 with regards to the variable in each equation.
Describing the methodology employed to solve the models derived in the previous section, showing an example of code for the solution of this system of equations
Use the finite difference method to calculate the temperature at the point specified since it is easier.
In a shell-and-tube heat exchanger, one fluid passes through a central tube while another fluid flows through an outer shell in the opposite direction. The purpose is to heat the fluid passing through the central tube.
Write a Matlab function to perform numerical integration of a set of evenly spaced data points using the trapezoidal rule
Write a MATLAB function [speed] = planetary (N, emesh, first, last, arm) that computes the speed of a given link in a single-stage planetary gear train.
Write a program to calculate and plot the error in the numerical estimate of the derivative.
Create the graph, which contains a piecewise function where a line exists in the first interval, a parabola in the second interval, and the sine function in the third interval.
Develop a simulation program
Create a three dimensional diagram of function.
Open a named pipe and to read data from the pipe in matlab
Write the commands that will create the matrix.
Lagrange interpolating polynomial of degree
Digital Signal Processing
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