Mathematical Analysis: Branch of mathematics

Mathematical analysis is a part of mathematics.

It is often shortened to analysis. It looks at functions, sequences and series. These have useful properties and characteristics that can be used in engineering. Mathematical analysis provides a rigorous logical foundation to calculus, which studies continuous functions, differentiation and integration. Mathematical analysis is a short version of its old name "infinitesimal analysis", with some of its key subfields including real analysis, complex analysis, differentiation equation and functional analysis.

Gottfried Wilhelm Leibniz and Isaac Newton developed most of the basis of mathematical analysis.

Parts of mathematical analysis

Limits

A foundational concept in mathematical analysis is the concept of limit. Limits are used to see what happens very close to things. Limits can also be used to see what happens when things get very big. For example, Mathematical Analysis: Parts of mathematical analysis, Related pages  is never zero, but as Mathematical Analysis: Parts of mathematical analysis, Related pages  gets bigger, Mathematical Analysis: Parts of mathematical analysis, Related pages  gets closer and closer to zero. The limit of Mathematical Analysis: Parts of mathematical analysis, Related pages  as Mathematical Analysis: Parts of mathematical analysis, Related pages  gets bigger is exactly zero. This is described by "The limit of Mathematical Analysis: Parts of mathematical analysis, Related pages  as Mathematical Analysis: Parts of mathematical analysis, Related pages  goes to infinity is zero", and written as Mathematical Analysis: Parts of mathematical analysis, Related pages .

The counterpart would be Mathematical Analysis: Parts of mathematical analysis, Related pages . When the Mathematical Analysis: Parts of mathematical analysis, Related pages  gets bigger, the limit goes to infinity. It is written as Mathematical Analysis: Parts of mathematical analysis, Related pages .

The fundamental theorem of algebra can be proven from some basic results in complex analysis. It says that every polynomial Mathematical Analysis: Parts of mathematical analysis, Related pages  with real or complex coefficients has a complex root (where a root is a number Mathematical Analysis: Parts of mathematical analysis, Related pages  satisfying the equation Mathematical Analysis: Parts of mathematical analysis, Related pages , and some of these roots may be the same).

Differential calculus

The function Mathematical Analysis: Parts of mathematical analysis, Related pages  is a line. The Mathematical Analysis: Parts of mathematical analysis, Related pages  shows the slope of the function and the Mathematical Analysis: Parts of mathematical analysis, Related pages  shows the position of the function on the ordinate. With two points on the line, it is possible to calculate the slope Mathematical Analysis: Parts of mathematical analysis, Related pages  with:

Mathematical Analysis: Parts of mathematical analysis, Related pages .

A function of the form Mathematical Analysis: Parts of mathematical analysis, Related pages , which is not linear, cannot be calculated like above. It is only possible to calculate the slope by using tangents and secants. The secant passes through two points and when the two points get closer, it turns into a tangent.

The new formula is Mathematical Analysis: Parts of mathematical analysis, Related pages .

This is called difference quotient. The Mathematical Analysis: Parts of mathematical analysis, Related pages  now gets closer to Mathematical Analysis: Parts of mathematical analysis, Related pages . This can be expressed with the following formula:

Mathematical Analysis: Parts of mathematical analysis, Related pages .

The result is called derivative or slope of f at the point Mathematical Analysis: Parts of mathematical analysis, Related pages .

Integration

The integration is about the calculation of areas.

The symbol Mathematical Analysis: Parts of mathematical analysis, Related pages 

is read as "the integral of Mathematical Analysis: Parts of mathematical analysis, Related pages  with respect to Mathematical Analysis: Parts of mathematical analysis, Related pages  from Mathematical Analysis: Parts of mathematical analysis, Related pages  to Mathematical Analysis: Parts of mathematical analysis, Related pages ", and refers to the area between the x-axis, the graph of function Mathematical Analysis: Parts of mathematical analysis, Related pages , and the lines Mathematical Analysis: Parts of mathematical analysis, Related pages  and Mathematical Analysis: Parts of mathematical analysis, Related pages . The Mathematical Analysis: Parts of mathematical analysis, Related pages  is the point where the area should start, and the Mathematical Analysis: Parts of mathematical analysis, Related pages  where the area should end.

Topics in analysis

Concepts in analysis

References

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Mathematical Analysis Parts of mathematical analysisMathematical Analysis Related pagesMathematical AnalysisCalculusComplex analysisContinuous functionDerivative (mathematics)Differential equationEngineeringFunction (mathematics)Functional analysisIntegralMathematicsReal analysisSequenceSeries

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