holonomic tetrahedron - traducción al ruso
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holonomic tetrahedron - traducción al ruso

SHAPE FORMED BY INTERSECTING FOUR BALLS
Reuleaux Tetrahedron; Meissner body; Meissner's tetrahedron; Meissner bodies; Reuleaux-Tetrahedron
  • Reuleaux Tetrahedron

holonomic tetrahedron      

математика

голономный тетраэдр

rhombic disphenoid         
  • A space-filling tetrahedral disphenoid inside a cube. Two edges have [[dihedral angle]]s of 90°, and four edges have dihedral angles of 60°.
TETRAHEDRON WHOSE FOUR FACES ARE CONGRUENT ACUTE-ANGLED TRIANGLES
Disphenoid tetrahedron; Tetragonal disphenoid; Rhombic disphenoid; Digonal antiprism; Bisphenoid; Digonal disphenoid; Isosceles tetrahedron; Equifacial tetrahedron; Isotetrahedron

математика

ромбический дисфеноид

tetragonal disphenoid         
  • A space-filling tetrahedral disphenoid inside a cube. Two edges have [[dihedral angle]]s of 90°, and four edges have dihedral angles of 60°.
TETRAHEDRON WHOSE FOUR FACES ARE CONGRUENT ACUTE-ANGLED TRIANGLES
Disphenoid tetrahedron; Tetragonal disphenoid; Rhombic disphenoid; Digonal antiprism; Bisphenoid; Digonal disphenoid; Isosceles tetrahedron; Equifacial tetrahedron; Isotetrahedron

математика

тетрагональный дисфеноид

Definición

Tetrahedron
·noun A solid figure inclosed or bounded by four triangles.

Wikipedia

Reuleaux tetrahedron

The Reuleaux tetrahedron is the intersection of four balls of radius s centered at the vertices of a regular tetrahedron with side length s. The spherical surface of the ball centered on each vertex passes through the other three vertices, which also form vertices of the Reuleaux tetrahedron. Thus the center of each ball is on the surfaces of the other three balls. The Reuleaux tetrahedron has the same face structure as a regular tetrahedron, but with curved faces: four vertices, and four curved faces, connected by six circular-arc edges.

This shape is defined and named by analogy to the Reuleaux triangle, a two-dimensional curve of constant width; both shapes are named after Franz Reuleaux, a 19th-century German engineer who did pioneering work on ways that machines translate one type of motion into another. One can find repeated claims in the mathematical literature that the Reuleaux tetrahedron is analogously a surface of constant width, but it is not true: the two midpoints of opposite edge arcs are separated by a larger distance,

( 3 2 2 ) s 1.0249 s . {\displaystyle \left({\sqrt {3}}-{\frac {\sqrt {2}}{2}}\right)\cdot s\approx 1.0249s.}
¿Cómo se dice holonomic tetrahedron en Ruso? Traducción de &#39holonomic tetrahedron&#39 al Ruso