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You'll learn to solve linear diophantine equations. For that purpose, you will be given an interesting example.

At the end of the theorical explanation, you can practice or create 5 exercises to ma ...

You'll learn an algorithm and a method for calculating combinatorial numbers: Newton's binomial and Pascal's triangle.

At the end of the theorical explanation, you can practice or create 5 ...

You'll learn to solve equations where the unknown variable appears in the exponent.

At the end of the theorical explanation, you can practice or create 5 exercises to master this subject.

An introdu ...

You'll learn to identify systems of linear equations (M equations with n unknowns), and you will also learn to classify those systems depending on whether they have solutions or not.

At the end of ...

You'll learn to solve linear systems with constant coefficients (non homogeneous systems).

At the end of the theorical explanation, you can practice or create 5 exercises to master this subject.

Non ...

You'll learn to solve linear systems with constant coefficients (homogeneous systems).

At the end of the theorical explanation, you can practice or create 5 exercises to master this subject.

ODE' ...

You'll learn to solve homogeneous linear equations of order 2 without constant coefficients.

At the end of the theorical explanation, you can practice or create 5 exercises to master this subject.

...

You'll learn to solve logarithmic equations of second degree.

At the end of the theorical explanation, you can practice or create 5 exercises to master this subject.

Logarithmic equations of second ...

You'll learn to solve systems of logarithmic equations by using reduction or elimination, both used in solving systems of linear equations.

At the end of the theorical explanation, you can practice ...

You'll learn the basics about the equation of the ellipse with foci on the axis OY.

At the end of the theorical explanation, you can practice or create 5 exercises to master this subject.

Equation ...