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Type of 7-polytope
In 7-dimensional geometry, a 7-simplex is a self-dual regular 7-polytope. It has 8 vertices, 28 edges, 56 triangle faces, 70 tetrahedral cells, 56 5-cell
7-simplex
Type of 7-polytope
geometry, a hexicated 7-simplex is a convex uniform 7-polytope, including 6th-order truncations (hexication) from the regular 7-simplex. There are 20 unique
Hexicated_7-simplexes
Multi-dimensional generalization of triangle
0-dimensional simplex is a point, a 1-dimensional simplex is a line segment, a 2-dimensional simplex is a triangle, a 3-dimensional simplex is a tetrahedron
Simplex
Seven-dimensional geometric object
convex regular 7-polytopes: {3,3,3,3,3,3} - 7-simplex {4,3,3,3,3,3} - 7-cube {3,3,3,3,3,4} - 7-orthoplex There are no nonconvex regular 7-polytopes. The
Uniform_7-polytope
7-simplex is a convex uniform 7-polytope with 4th order truncations (sterication) of the regular 7-simplex. There are 14 unique sterication for the 7-simplex
Stericated_7-simplexes
7-simplex is a convex uniform 7-polytope with 3rd order truncations (runcination) of the regular 7-simplex. There are 8 unique runcinations of the 7-simplex
Runcinated_7-simplexes
Cantellated 7-simplex, Runcinated 7-simplex, Stericated 7-simplex, Pentellated 7-simplex, Hexicated 7-simplex 7-demicube, Truncated 7-demicube, Cantellated 7-demicube
List_of_mathematical_shapes
Convex uniform 7-polytope in seven-dimensional geometry
the 7-simplex itself. Vertices of the rectified 7-simplex are located at the edge-centers of the 7-simplex. Vertices of the birectified 7-simplex are
Rectified_7-simplexes
7-homeycomb
the 7-simplex honeycomb is a space-filling tessellation (or honeycomb). The tessellation fills space by 7-simplex, rectified 7-simplex, birectified 7-simplex
7-simplex_honeycomb
Convex regular 10-polytope
462 5-cell 4-faces, 462 5-simplex 5-faces, 330 6-simplex 6-faces, 165 7-simplex 7-faces, 55 8-simplex 8-faces, and 11 9-simplex 9-faces. Its dihedral angle
10-simplex
Uniform 7-polytope
seven-dimensional geometry, a truncated 7-simplex is a convex uniform 7-polytope, being a truncation of the regular 7-simplex. There are unique 3 degrees of truncation
Truncated_7-simplexes
Polytope in 8-dimensional geometry
rings in this Coxeter-Dynkin diagram: . The 421 polytope has 17,280 7-simplex and 2,160 7-orthoplex facets, and 240 vertices. Its vertex figure is the 321
4_21_polytope
7-simplex is a convex uniform 7-polytope, being a cantellation of the regular 7-simplex. There are unique 6 degrees of cantellation for the 7-simplex
Cantellated_7-simplexes
Cantellated 7-simplex, Runcinated 7-simplex, Stericated 7-simplex, Pentellated 7-simplex, Hexicated 7-simplex 7-demicube, Truncated 7-demicube, Cantellated 7-demicube
List of polygons, polyhedra and polytopes
List_of_polygons,_polyhedra_and_polytopes
Convex regular 8-polytope
tetrahedral cells, 126 5-cell 4-faces, 84 5-simplex 5-faces, 36 6-simplex 6-faces, and 9 7-simplex 7-faces. Its dihedral angle is cos−1(1/8), or approximately
8-simplex
Convex regular 9-polytope
252 5-cell 4-faces, 210 5-simplex 5-faces, 120 6-simplex 6-faces, 45 7-simplex 7-faces, and 10 8-simplex 8-faces. Its dihedral angle is cos−1(1/9), or approximately
9-simplex
Four-dimensional analogue of the cube
The dissection of the tesseract into instances of its characteristic simplex (a particular orthoscheme with Coxeter diagram ) is the most basic direct
Tesseract
Uniform 6-polytope
six-dimensional geometry, a pentellated 6-simplex is a convex uniform 6-polytope with 5th order truncations of the regular 6-simplex. There are unique 10 degrees of
Pentellated_6-simplexes
the omnitruncated 7-simplex honeycomb is a space-filling tessellation (or honeycomb). It is composed entirely of omnitruncated 7-simplex facets. The facets
Omnitruncated 7-simplex honeycomb
Omnitruncated_7-simplex_honeycomb
Class of eight-dimensional polytopes
geometry, a stericated 8-simplex is a convex uniform 8-polytope with 4th order truncations (sterication) of the regular 8-simplex. There are 16 unique sterications
Stericated_8-simplexes
geometry, a stericated 6-simplex is a convex uniform 6-polytope with 4th order truncations (sterication) of the regular 6-simplex. There are 8 unique sterications
Stericated_6-simplexes
Tiling of n-dimensional space
In geometry, the simplicial honeycomb (or n-simplex honeycomb) is a dimensional infinite series of honeycombs, based on the A ~ n {\displaystyle {\tilde
Simplicial_honeycomb
Viral disease caused by herpes simplex viruses
Herpes simplex, often known simply as herpes, is a viral infection caused by the herpes simplex virus. Herpes infections are categorized by the area of
Herpes
a runcinated 6-simplex is a convex uniform 6-polytope constructed as a runcination (3rd order truncations) of the regular 6-simplex. There are 8 unique
Runcinated_6-simplexes
Regular 5-polytope
In five-dimensional geometry, a 5-simplex is a self-dual regular 5-polytope. It has six vertices, 15 edges, 20 triangle faces, 15 tetrahedral cells, and
5-simplex
Convex regular 9 dimensional polytope
cells, 4032 5-cell 4-faces, 5376 5-simplex 5-faces, 4608 6-simplex 6-faces, 2304 7-simplex 7-faces, and 512 8-simplex 8-faces. It has two constructed forms
9-orthoplex
geometry, a stericated 5-simplex is a convex uniform 5-polytope with fourth-order truncations (sterication) of the regular 5-simplex. There are six unique
Stericated_5-simplexes
Shape with three equal sides
(January 1973). "The heptagonal triangle". Mathematics Magazine. 46 (1): 7–19. doi:10.1080/0025570X.1973.11976267. Berman, Martin (1971). "Regular-faced
Equilateral_triangle
runcinations of the 8-simplex, including permutations of truncation and cantellation. The triruncinated 8-simplex and triruncicantitruncated 8-simplex have a doubled
Runcinated_8-simplexes
Geometric space with seven dimensions
called a 7-polytope. The most studied are the regular polytopes, of which there are only three in seven dimensions: the 7-simplex, 7-cube, and 7-orthoplex
Seven-dimensional_space
Polyhedron with four faces
three-dimensional case of the more general concept of a Euclidean simplex, and may thus also be called a 3-simplex. The tetrahedron is one kind of pyramid, which is a
Tetrahedron
8-dimensional hypercube
family called demihypercubes), which has 16 demihepteractic and 128 8-simplex facets. The 8-cube is 8th in an infinite series of hypercubes: Coxeter
8-cube
8-simplex are located as pairs on the edge of the 8-simplex. Vertices of the bitruncated 8-simplex are located on the triangular faces of the 8-simplex
Truncated_8-simplexes
Natural number
sphere is the seventh dimension. In hyperbolic space, 7 is the highest dimension for non-simplex hypercompact Vinberg polytopes of rank n + 4 mirrors,
7
5-simplex is a convex uniform 5-polytope, being a cantellation of the regular 5-simplex. There are unique 4 degrees of cantellation for the 5-simplex,
Cantellated_5-simplexes
Type of geometric object
nine-dimensional geometry, a rectified 9-simplex is a convex uniform 9-polytope, being a rectification of the regular 9-simplex. These polytopes are part of a family
Rectified_9-simplexes
Algorithm for linear programming
Dantzig's simplex algorithm (or simplex method) is an algorithm for linear programming. The name of the algorithm is derived from the concept of a simplex and
Simplex_algorithm
Shape with five sides
5-polytope 5-simplex 5-orthoplex • 5-cube 5-demicube Uniform 6-polytope 6-simplex 6-orthoplex • 6-cube 6-demicube 122 • 221 Uniform 7-polytope 7-simplex 7-orthoplex
Pentagon
a heptellated 8-simplex is a convex uniform 8-polytope, including 7th-order truncations (heptellation) from the regular 8-simplex. There are 35 unique
Heptellated_8-simplexes
the 5-simplex itself. Vertices of the rectified 5-simplex are located at the edge-centers of the 5-simplex. Vertices of the birectified 5-simplex are located
Rectified_5-simplexes
Polygon shape with eight sides
A7 D5 B4 7-simplex 5-demicube 16-cell Tesseract
Octagon
Tessellation in Euclidean geometry
in 7-space: 7-cube honeycomb 7-demicube honeycomb 7-simplex honeycomb Truncated 7-simplex honeycomb Omnitruncated 7-simplex honeycomb Coxeter, Regular and
Quarter_7-cubic_honeycomb
5-dimensional hypercube
hypercubes have lower symmetry forms constructed as prisms. The 5-cube has 7 prismatic forms from the lowest 5-orthotope, { }5, and upwards as orthogonal
5-cube
Uniform polytope
(201) facets) 221, (72 5-simplex and 27 5-orthoplex (211) facets) 231, (576 6-simplex and 56 221 facets) 241, (17280 7-simplex and 240 231 facets) 251
Uniform_2_k1_polytope
geometry, the cyclotruncated simplicial honeycomb (or cyclotruncated n-simplex honeycomb) is a dimensional infinite series of honeycombs, based on the
Cyclotruncated simplicial honeycomb
Cyclotruncated_simplicial_honeycomb
Geometric object
figure (17280 7-simplex and 2160 7-orthoplex facets) 5 21 honeycomb: 521, 9-ic semiregular check tessellates Euclidean 8-space (∞ 8-simplex and ∞ 8-orthoplex
Uniform_k_21_polytope
6-simplex is a convex uniform 6-polytope, being a cantellation of the regular 6-simplex. There are unique 4 degrees of cantellation for the 6-simplex,
Cantellated_6-simplexes
In 7-dimensional geometry, the 331 honeycomb is a uniform honeycomb, also given by Schläfli symbol {3,3,3,33,1} and is composed of 321 and 7-simplex facets
3_31_honeycomb
6-simplex are located as pairs on the edge of the 6-simplex. Vertices of the bitruncated 6-simplex are located on the triangular faces of the 6-simplex
Truncated_6-simplexes
Polyhedron with 12 faces
{4}{3}}\cdot {\text{Long side}}} Short sides = 7 12 ⋅ Long side {\displaystyle {\text{Short sides}}={\sqrt {\frac {7}{12}}}\cdot {\text{Long side}}} The eight
Dodecahedron
Species of virus
Herpes simplex virus 1 and 2 (HSV-1 and HSV-2) are two members of the human Herpesviridae family, a set of viruses that produce viral infections in the
Herpes_simplex_virus
cantellated 8-simplex is a convex uniform 8-polytope, being a cantellation of the regular 8-simplex. There are six unique cantellations for the 8-simplex, including
Cantellated_8-simplexes
Geometric object with flat sides
is self-dual. Some common self-dual polytopes include: Every regular n-simplex, in any number of dimensions, with Schläfli symbol {3n}. These include
Polytope
Uniform 6-polytope
6-simplex is a self-dual regular 6-polytope. It has 7 vertices, 21 edges, 35 triangle faces, 35 tetrahedral cells, 21 5-cell 4-faces, and 7 5-simplex 5-faces
6-simplex
10-simplex itself. Vertices of the rectified 10-simplex are located at the edge-centers of the 10-simplex. Vertices of the birectified 10-simplex are
Rectified_10-simplexes
Uniform polytope in 8 dimensional geometry
Coxeter-Dynkin diagram: . Removing the node on the short branch leaves the 7-simplex: . There are 17280 of these facets Removing the node on the end of the
2_41_polytope
Uniform 8 dimensional polytope
of 2400 facets: 240 132 polytopes, and 2160 7-demicubes (141). Its vertex figure is a birectified 7-simplex. This polytope, along with the demiocteract
1_42_polytope
In 7-dimensional geometry, there are 71 uniform polytopes with A7 symmetry. There is one self-dual regular form, the 7-simplex with 8 vertices. Each can
A7_polytope
Convex regular 8-polytope
[4,3,3,3,3,3,3] symmetry group, and a half symmetry with two copies of 7-simplex facets, alternating, with the D8 or [35,1,1] symmetry group. A lowest
8-orthoplex
eight-dimensional geometry, a rectified 8-simplex is a convex uniform 8-polytope, being a rectification of the regular 8-simplex. There are unique 3 degrees of rectifications
Rectified_8-simplexes
Shape with six sides
5-polytope 5-simplex 5-orthoplex • 5-cube 5-demicube Uniform 6-polytope 6-simplex 6-orthoplex • 6-cube 6-demicube 122 • 221 Uniform 7-polytope 7-simplex 7-orthoplex
Hexagon
Plane figure bounded by line segments
ISBN 0-415-15792-7. Mandik, Pete, Key Terms in Philosophy of Mind, Continuum International Publishing Group, 2010, p. 26, ISBN 1-84706-349-7. Kenny, Anthony
Polygon
the 6-simplex itself. Vertices of the rectified 6-simplex are located at the edge-centers of the 6-simplex. Vertices of the birectified 6-simplex are located
Rectified_6-simplexes
geometry, a runcinated 5-simplex is a convex uniform 5-polytope with 3rd order truncations (Runcination) of the regular 5-simplex. There are 4 unique runcinations
Runcinated_5-simplexes
Polytope contained by 7-polytope facets
tessellations in 7-space: Regular and uniform tessellations include: A ~ 7 {\displaystyle {\tilde {A}}_{7}} 29 uniquely ringed forms, including: 7-simplex honeycomb:
Uniform_8-polytope
7-dimensional hypercube
infinite family called demihypercubes), which has 14 demihexeractic and 64 6-simplex 6-faces. Coxeter, Regular Polytopes, p. 12, Sec. 1.8 Configurations Coxeter
7-cube
branches: 621, 261, 162. The 621 honeycomb is constructed from alternating 9-simplex and 9-orthoplex facets within the symmetry of the E10 Coxeter group. This
E9_honeycomb
6-dimensional hypercube
infinite family called demihypercubes), which has 12 5-demicube and 32 5-simplex facets. This configuration matrix represents the 6-cube. The rows and columns
6-cube
ringed node and ringing the neighboring node. This makes the trirectified 7-simplex, 033. The edge figure is determined by removing the ringed nodes of the
1_33_honeycomb
5-polytope 5-simplex 5-orthoplex • 5-cube 5-demicube Uniform 6-polytope 6-simplex 6-orthoplex • 6-cube 6-demicube 122 • 221 Uniform 7-polytope 7-simplex 7-orthoplex
E8_polytope
Four-dimensional analogue of the tetrahedron
hypertetrahedron, pentachoron, pentatope, pentahedroid, tetrahedral pyramid, or 4-simplex (Coxeter's α4 polytope), the simplest possible convex 4-polytope, and is
5-cell
Four-dimensional analog of the octahedron
§ 7.6; "simplicial subdivision". Coxeter 1973, pp. 292–293, Table I(ii); "16-cell, 𝛽4". Coxeter 1973, p. 139, § 7.9 The characteristic simplex. Coxeter
16-cell
completely ultra-ideal, both for the honeycomb and for the fundamental simplex (though still infinitely many {p, q} would meet at such edges). In general
List_of_regular_polytopes
8-simplex is a convex uniform 8-polytope with 5th order truncations of the regular 8-simplex. There are two unique pentellations of the 8-simplex. Including
Pentellated_8-simplexes
Convex polytope, the n-dimensional analogue of a square and a cube
(n−1)-simplex itself and the null polytope, respectively. Each vertex connected to the top vertex then uniquely maps to one of the (n−1)-simplex's facets
Hypercube
Shape with four equal sides and angles
(PDF). Environment and Planning B: Planning and Design. 7 (2): 209–226. Bibcode:1980EnPlB...7..209S. doi:10.1068/b070209. Nakamura, Yuuka; Okazaki, Shigeyuki
Square
Figurate number
such numbers never end in 2, 4, 7, or 9. A final 3 must be preceded by a 0 or 5; a final 8 must be preceded by a 2 or 7. In base 10, the digital root of
Triangular_number
runcinated 7-cube is a convex uniform 7-polytope with 3rd order truncations (runcination) of the regular 7-cube. There are 16 unique runcinations of the 7-cube
Runcinated_7-cubes
9-dimensional hypercube
infinite family called demihypercubes), which has 18 8-demicube and 256 8-simplex facets. Klitzing, Richard. "o3o3o3o3o3o3o3o4x - enne". H.S.M. Coxeter:
9-cube
Equiangular and equilateral polygon
regular stars of up to 12 sides are: Pentagram – {5/2} Heptagram – {7/2} and {7/3} Octagram – {8/3} Enneagram – {9/2} and {9/4} Decagram – {10/3} Hendecagram
Regular_polygon
5-dimensional geometric object
5-polytope, their elements are: The expanded 5-simplex is the vertex figure of the uniform 5-simplex honeycomb, . The 5-demicube honeycomb, , vertex
5-polytope
Uniform 6-dimensional polytope
regular 6-simplex (heptapeton). Bowers-style acronym names are given in parentheses for cross-referencing. The A6 family has symmetry of order 5040 (7 factorial)
Uniform_6-polytope
Solid with twenty equal triangular faces
≈ 5.196 {\displaystyle 3{\sqrt {3}}\approx 5.196} and 2 7 ≈ 5.292 {\displaystyle 2{\sqrt {7}}\approx 5.292} . The regular icosahedron has the thirty-one
Regular_icosahedron
Polytope constructed from alternation of a hypercube
formed. The 2n facets become 2n (n − 1)-demicubes, and 2n - 1 (n − 1)-simplex facets are formed in place of the deleted vertices. They have been named
Demihypercube
cantellated 7-cube is a convex uniform 7-polytope, being a cantellation of the regular 7-cube. There are 10 degrees of cantellation for the 7-cube, including
Cantellated_7-cubes
Herpes simplex virus infection of the lip
A cold sore is a type of herpes infection caused by the herpes simplex virus that affects primarily the lip. Symptoms typically include a burning pain
Cold_sore
Polytope with highest degree of symmetry
dimensions). 1-simplex to 4-simplex The simplex is a generalization of the notion of a triangle or tetrahedron to arbitrary dimensions. The simplex is so-named
Regular_polytope
Four-dimensional geometric object with flat sides
its predecessor, enclosing more content within the same radius. The 4-simplex (5-cell) is the limit smallest case, and the 120-cell is the largest. Complexity
4-polytope
Group of geometric symmetries with at least one fixed point
studying symmetries of molecules. They come in 7 infinite families of axial groups (also called prismatic), and 7 additional polyhedral groups (also called
Point_group
In seven-dimensional geometry, a pentic 7-cube is a convex uniform 7-polytope, related to the uniform 7-demicube. There are 8 unique forms. Small cellated
Pentic_7-cubes
Type of geometric object
are exactly three such convex regular 9-polytopes: {3,3,3,3,3,3,3,3} - 9-simplex {4,3,3,3,3,3,3,3} - 9-cube {3,3,3,3,3,3,3,4} - 9-orthoplex There are no
Uniform_9-polytope
seven-dimensional geometry, a runcinated 7-orthoplex is a convex uniform 7-polytope with 3rd order truncations (runcination) of the regular 7-orthoplex. There are 16 unique
Runcinated_7-orthoplexes
In geometry an omnitruncated simplicial honeycomb or omnitruncated n-simplex honeycomb is an n-dimensional uniform tessellation, based on the symmetry
Omnitruncated simplicial honeycomb
Omnitruncated_simplicial_honeycomb
Numerical optimization algorithm
The Nelder–Mead method (also downhill simplex method, amoeba method, or polytope method) is a numerical method used to find a local minimum or maximum
Nelder–Mead_method
Type of geometrical object
exactly three such convex regular 10-polytopes: {3,3,3,3,3,3,3,3,3} - 10-simplex {4,3,3,3,3,3,3,3,3} - 10-cube {3,3,3,3,3,3,3,3,4} - 10-orthoplex There
Uniform_10-polytope
Four-dimensional geometrical object
5-cell (Norman Johnson) Runcinated pentachoron Runcinated 4-simplex Expanded 5-cell/4-simplex/pentachoron Small prismatodecachoron (Acronym: Spid) (Jonathan
Runcinated_5-cell
Convex regular polytope in 10 dimensional geometry
C10 or [4,38] symmetry group, and a lower symmetry with two copies of 9-simplex facets, alternating, with the D10 or [37,1,1] symmetry group. Cartesian
10-orthoplex
In seven-dimensional geometry, a hexic 7-cube is a convex uniform 7-polytope, constructed from the uniform 7-demicube. There are 16 unique forms. Small
Hexic_7-cubes
pentellated 7-cube is a convex uniform 7-polytope with 5th order truncations (pentellation) of the regular 7-cube. There are 32 unique pentellations of the 7-cube
Pentellated_7-cubes
five-dimensional geometry, a truncated 5-simplex is a convex uniform 5-polytope, being a truncation of the regular 5-simplex. There are unique 2 degrees of truncation
Truncated_5-simplexes
7 SIMPLEX
7 SIMPLEX
Male
Japanese
(1-晋, 2-信, 3-紳, 4-心, 5-慎, 6-新, 7-進, 8-真) Japanese name SHIN means 1) "advancing," 2) "belief," 3) "gentleman," 4) "heart," 5) "humble," 6) "new," 7) "progressive," and 8) "true." Compare with another form of Shin.
Girl/Female
Australian, Indian, Russian, Sanskrit, Slavic, Ukrainian
Luminescent; White; Bright Light; One of the 7 Tongues of Fire
Surname or Lastname
English, German, Dutch, and Jewish
English, German, Dutch, and Jewish : from the personal name Michael, ultimately from Hebrew Micha-el ‘Who is like God?’. This was borne by various minor Biblical characters and by one of the archangels, the protector of Israel (Daniel 10:13, 12:1; Rev. 12:7). In Christian tradition, Michael was regarded as the warrior archangel, conqueror of Satan, and the personal name was correspondingly popular throughout Europe, especially in knightly and military families. In English-speaking countries, this surname is also found as an Anglicized form of several Greek surnames having Michael as their root, for example Papamichaelis ‘Michael the priest’ and patronymics such as Michaelopoulos.
Female
Japanese
(1-æµå, 2-æ…¶å, 3-æ¡‚å, 4-敬å, 5-å•“å, 6-åœå, 7-景å) Japanese name KEIKO means 1) "blessed, lucky child," 2) "happy child," 3) "katsura tree child," 4) "respectful child," 5) "spring child," 6) "square jewel child," or 7) "sunny child."
Boy/Male
Gujarati, Hindu, Indian, Kannada, Malayalam, Marathi, Telugu
Conqueror of 7 Elements
Boy/Male
Gujarati, Hindu, Indian, Kannada, Malayalam, Marathi, Telugu
7 Stars Representing 7 Great Saints
Female
Japanese
(1-æµ, 2-æ…¶, 3-æ¡‚, 4-敬, 5-å•“, 6-åœ, 7-景) Japanese name KEI means 1) "blessed, lucky," 2) "happy," 3) "katsura tree," 4) "respectful," 5) "spring," 6) "square jewel," or "sunny."Â
Surname or Lastname
English
English : from the Middle English vernacular form, Maudeleyn, of the New Testament Greek personal name Magdalēnē. This is a byname, meaning ‘woman from Magdala’ (a village on the Sea of Galilee, deriving its name from Hebrew migdal ‘tower’), denoting the woman cured of evil spirits by Jesus (Luke 8:2), who later became a faithful follower. In Christian folk belief she was generally identified with the repentant sinner who washed Christ’s feet with her tears in Luke 7; hence the name came to be used as a byname for a prostitute, also a tearful woman. The popularity of the personal name increased with the supposed discovery of her relics in the 13th century.
Boy/Male
Arabic
Moon; Pearls; A Cluster of 7 Stars in Taurus
Girl/Female
Hindu, Indian
7 Basic Notes of Music
Male
Japanese
(1-æš, 2-悟, 3-è¡, 4-知, 5-覚, 6-è«, 7-了, 8-智) Japanese name SATORU means 1) "daybreak," 2) "enlightened," 3) "fast learner," 4) "knowledgeable," 5) "perceptive," 6) "persuasive," 7) "understanding," or 8) "wise."
Girl/Female
Gujarati, Hindu, Indian
Supreme Lord; SA Re Ga Ma Pa Tha Ni Sha 7 Suro Ka Ek Naam
Boy/Male
Arabic, Hindu, Indian, Muslim
7 Surah of the Quran Begin with the Letters Ha and Mim; Known Only to God; Another Name for Prophet Muhammad
Boy/Male
Indian
7 Horses; 7 Colours of the Sun
7 SIMPLEX
7 SIMPLEX
Boy/Male
German
Bright Raven
Surname or Lastname
English, Scottish, and Irish
English, Scottish, and Irish : variant of Neal.
Girl/Female
Greek
Celebrate. Abbreviation of Clotilde and Cleopatra. Clio was the Mythological Muse of historic...
Boy/Male
British, English
From the Wildcat Brook
Boy/Male
Indian, Tamil
Good Think; Clever
Girl/Female
English, Indian, Telugu
Beautyful; Peaceful
Boy/Male
Bengali, Gujarati, Hindu, Indian, Kannada, Malayalam, Marathi
Lord Shiva
Surname or Lastname
English
English : variant of Hewlett.
Girl/Female
Tamil
Earth
Male
Polish
Polish form of Latin Cælestinus, CELESTYN means "heavenly."
7 SIMPLEX
7 SIMPLEX
7 SIMPLEX
7 SIMPLEX
7 SIMPLEX
n.
A symbol representing seven units, as 7, or vii.
n. pl.
See Doublet, 6 and 7.
n. pl.
See lst Fox, 7.
n. pl.
See Fox, n., 7.
n.
See Offset, 7.
n.
See Government, n., 7.
a.
Having a specific name or denomination; specified in the concrete as opposed to abstract; thus, 7 feet is a denominate quantity, while 7 is mere abstract quantity or number. See Compound number, under Compound.
n.
The shrouds. See Shroud, n., 7.
v. i.
To have a sensation as of insect creeping over the body; as, the flesh crawls. See Creep, v. i., 7.
n.
See Draft, n., 7.
a.
Not divisible by two without a remainder; odd; -- said of numbers; as, 3, 7, and 11 are uneven numbers.
n.
The theory of, or belief in, evolution. See Evolution, 6 and 7.
n.
The soffit or under surface of the masonry required in gathering. See Gather, v. t., 7.
n.
An expression consisting of two terms connected by the sign plus (+) or minus (-); as, a + b, or 7 - 3.
n.
A hold. See 4th Hold, 7.
superl.
Not divisible by 2 without a remainder; not capable of being evenly paired, one unit with another; as, 1, 3, 7, 9, 11, etc., are odd numbers.
n.
A period in human life in which some great change is supposed to take place in the constitution. The critical periods are thought by some to be the years produced by multiplying 7 into the odd numbers 3, 5, 7, and 9; to which others add the 81st year.
superl.
Pressing; stringent; not easy; firmly held; dear; -- said of money or the money market. Cf. Easy, 7.