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  2. Cauchy principal value - Wikipedia

    en.wikipedia.org/wiki/Cauchy_principal_value

    Depending on the type of singularity in the integrand f, the Cauchy principal value is defined according to the following rules: . For a singularity at a finite number b + [() + + ()] with < < and where b is the difficult point, at which the behavior of the function f is such that = for any < and = for any <. (See plus or minus for the precise use of notations ± and ∓.)

  3. Principal value - Wikipedia

    en.wikipedia.org/wiki/Principal_value

    Principal value. In mathematics, specifically complex analysis, the principal values of a multivalued function are the values along one chosen branch of that function, so that it is single-valued. A simple case arises in taking the square root of a positive real number. For example, 4 has two square roots: 2 and −2; of these the positive root ...

  4. Complex logarithm - Wikipedia

    en.wikipedia.org/wiki/Complex_logarithm

    Complex logarithm. A single branch of the complex logarithm. The hue of the color is used to show the argument of the complex logarithm. The brightness of the color is used to show the modulus of the complex logarithm. The real part of log (z) is the natural logarithm of |z|. Its graph is thus obtained by rotating the graph of ln (x) around the ...

  5. Argument (complex analysis) - Wikipedia

    en.wikipedia.org/wiki/Argument_(complex_analysis)

    Figure 1. This Argand diagram represents the complex number lying on a plane.For each point on the plane, arg is the function which returns the angle . In mathematics (particularly in complex analysis), the argument of a complex number z, denoted arg(z), is the angle between the positive real axis and the line joining the origin and z, represented as a point in the complex plane, shown as in ...

  6. Cauchy stress tensor - Wikipedia

    en.wikipedia.org/wiki/Cauchy_stress_tensor

    Principal stresses are often expressed in the following equation for evaluating stresses in the x and y directions or axial and bending stresses on a part. [14]: p.58–59 The principal normal stresses can then be used to calculate the von Mises stress and ultimately the safety factor and margin of safety.

  7. Compound interest - Wikipedia

    en.wikipedia.org/wiki/Compound_interest

    P is the original principal sum; r is the nominal annual interest rate; n is the compounding frequency; t is the overall length of time the interest is applied (expressed using the same time units as r, usually years). The total compound interest generated is the final value minus the initial principal: [10]

  8. Mohr's circle - Wikipedia

    en.wikipedia.org/wiki/Mohr's_circle

    Mohr's circles for a three-dimensional state of stress. Mohr's circle is a two-dimensional graphical representation of the transformation law for the Cauchy stress tensor. Mohr's circle is often used in calculations relating to mechanical engineering for materials' strength, geotechnical engineering for strength of soils, and structural ...

  9. Inverse trigonometric functions - Wikipedia

    en.wikipedia.org/wiki/Inverse_trigonometric...

    When only one value is desired, the function may be restricted to its principal branch. With this restriction, for each in the domain, the expression ⁡ will evaluate only to a single value, called its principal value. These properties apply to all the inverse trigonometric functions.

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