oval curve - translation to russian
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oval curve - translation to russian

CLOSED CURVE RESEMBLING AN ELLIPSE
Super Ellipse; Hyperellipse; Hypoellipse; Lamé curve; Fat ellipse; Fat circle; Lamé oval; Super ellipse; Supercircle; Lame curve; Lame oval; Super-ellipse; Lamé Curves; Lamé curves; Lamé Curve; Superellipses
  • log(1/2) / log (7/9)}} ≈ 2.758
  • Variations of a superellipse with different exponents
  • Examples of superellipses for <math>a=1, \ b=0.75</math>
  • [[Squircle]], the superellipse with ''n''&nbsp;=&nbsp;4, ''a''&nbsp;=&nbsp;''b''&nbsp;=&nbsp;1
  • 2}}, ''a''&nbsp;=&nbsp;''b''&nbsp;=&nbsp;1
  • 2}}, ''a''&nbsp;=&nbsp;''b''&nbsp;=&nbsp;1

oval curve      

математика

овальная кривая

овал

the Oval         
  • The pavilion end in 1891
  • The Oval Gasholder
  • Surrey v Yorkshire (OCS stand in background)
  • 200px
  • The clock by the Members' entrance to the pavilion
CRICKET GROUND IN KENNINGTON, SOUTH LONDON
The Oval Cricket Ground; Kennington Oval; Brit Oval; Oval Cricket Ground; Oval cricket ground; The Brit Oval; Brit Insurance Oval; Kia Oval; Oval cricket field; The Kia Oval; AMP Oval; Fosters Oval; Foster's Oval; The Oval (cricket ground); Surrey Cricket Ground
«Овал» (площадка для игры в крикет в Лондоне)
egg-shaped         
  • To the definition of an oval in a projective plane
  • To the definition of an ovoid
  • An oval with two axes of symmetry constructed from four arcs (top), and comparison of blue oval and red ellipse with the same dimensions of short and long axes (bottom).
  • A [[speed skating rink]] is often called an oval
SHAPE
Ovaloid; Ovoid; Egg shaped; Egg-shaped; Egg (geometry); Egg shape; Oval (geometry); Oval-shaped; Ovalular; Egg curve; Oviform
яйцевидный, в форме яйца; овальный

Definition

Bezier curve
<graphics> A type of curve defined by mathematical formulae, used in computer graphics. A curve with coordinates P(u), where u varies from 0 at one end of the curve to 1 at the other, is defined by a set of n+1 "control points" (X(i), Y(i), Z(i)) for i = 0 to n. P(u) = Sum i=0..n [(X(i), Y(i), Z(i)) * B(i, n, u)] B(i, n, u) = C(n, i) * u^i * (1-u)^(n-i) C(n, i) = n!/i!/(n-i)! A Bezier curve (or surface) is defined by its control points, which makes it invariant under any affine mapping (translation, rotation, parallel projection), and thus even under a change in the axis system. You need only to transform the control points and then compute the new curve. The control polygon defined by the points is itself affine invariant. Bezier curves also have the variation-diminishing property. This makes them easier to split compared to other types of curve such as Hermite or B-spline. Other important properties are multiple values, global and local control, versatility, and order of continuity. [What do these properties mean?] (1996-06-12)

Wikipedia

Superellipse

A superellipse, also known as a Lamé curve after Gabriel Lamé, is a closed curve resembling the ellipse, retaining the geometric features of semi-major axis and semi-minor axis, and symmetry about them, but a different overall shape.

In the Cartesian coordinate system, the set of all points ( x , y ) {\displaystyle (x,y)} on the curve satisfy the equation

| x a | n + | y b | n = 1 , {\displaystyle \left|{\frac {x}{a}}\right|^{n}\!\!+\left|{\frac {y}{b}}\right|^{n}\!=1,}

where n , a {\displaystyle n,a} and b {\displaystyle b} are positive numbers, and the vertical bars around a number indicate the absolute value of the number. The 3-dimensional generalization is called superellipsoid (some literatures also name it superquadrics).

In the Polar coordinate system, the superellipse equation is (the set of all points ( r , θ ) {\displaystyle (r,\theta )} on the curve satisfy the equation) :

r = ( | c o s ( θ ) a | n + | s i n ( θ ) b | n ) 1 / n , {\displaystyle r=\left(\left|{\frac {cos(\theta )}{a}}\right|^{n}\!\!+\left|{\frac {sin(\theta )}{b}}\right|^{n}\!\right)^{-1/n}\!,}

What is the Russian for oval curve? Translation of &#39oval curve&#39 to Russian