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All you have to do is to place the accelerometer in 9 different static positions and record the x, y & z values.

The procedure exploits the fact that, in static conditions, the modulus of the accelerometer output vector matches that of the gravity acceleration. The calibration model incorporates the bias and scale factor for each axis and the cross-axis symmetrical
factors. The parameters are computed through Gauss-Newton...



Gauss numerical integration of univariate funcitons by 7-point Gaussian quadrature. Very accuracy and fast.



IMPLEMENTATION OF GAUSS SEIDEL METHOD IN MATLAB used in the load flow problem



This Matlab program Solve N-equation with Gauss elimination method and check results with Matlab Function.



This file implement Gauss Siedel Iterative Method on MATLAB
Gauss Siedel Iterative Method is a technique of Numerical Computation of finding roots of Linear equations.



Generates points and weights for Gauss Laguerre Quadrature, to a tolerance, tested for N < 300
Finds zeros and improves via recursion



It draws the Newton fractal of any given complex-variable function.



This script will determine the lower-upper factorization of a square matrix "A" through Gauss elimination.



It estimates the Newton Raphson optimization procedure for (m) unknowns of (n) non-linear equations. In case no Jacobian vector is presented, then the initial Jacobian vector is estimated by Broyden Method (multivariate secant approach) and it is...



This code evaluates the root of transcendental equation with the help of Newton Raphson method with enhanced features like vanishing of differential of a function, Infinite cycling for root due to a poor initial approximation or when a root exists...



Computes the Gauss hypergeometric function 2F1(a,b;c;z) and its derivative for real z, z<1 by integrating the defining differential equation using the Matlab differential equation solver ode15i.

If 2F1 is to be evaluated for many...



Generally application is selecting Gauss-Legendre Quadratic integration method. In this sub function is directly application of homogen integration technique for triangular area and tetrahedral volumes.

This tetrahedral sub functions...



This script takes the input function adn solve it with the help of newton-Raphson



Power System Load Flow Analysis using Gauss Siedel for infinite number of iterations

If you are downloading this file to submit an assignment or doing your homework than "Best of Worst Luck".



Usage: Newton(@funfcn,X0[,Options[,Params]);
funfcn is a function script with the following interface:
function F = function(X)
% ...
or a string containing the code as shown below,
were F is the vector of the...



Solves the linear least squares problem with nonnegative variables using the newton's algorithm in:
Portugal, Judice and Vicente, A comparison of block pivoting and interior point algorithms for linear least squares problems with nonnegative...



Thee purpose,
1. Speed up the convergence of correcting for each points (By newton method).
2. To find the first few points by this method instead of R.K. method.
3. To apply for higher order polynomial fitting.



Newton's method for solving a system of nonlinear equations, see http://en.wikipedia.org/wiki/Newton's_method

Newton(X,F,X0) solves nonlinear system F(x)=0 by Newton's method, using the given initial approximation X0. The derivative...



Newton's Method for Divided Differences.

The following formula is solved:
Pn(x) = f(x0) + f[x0,x1](x-x0) + f[x0,x1,x2](x-x0)(x-x1) + ... + f[x0,x1,..,xn](x-x0)(x-x1)..(x-x[n-1])
Where:
f[x0,x1] = (f(x1-f(x0))/(x1-x0)