The Vector W2 is a concept car constructed by Vector Motors in 1978. The concept went into production as the Vector W8 in 1990. The name comes from the...
3 KB (293 words) - 20:20, 30 June 2025
while receiving refinements by Vector's head of engineering David Kostka. The W8 was the production version of the Vector W2 prototype that the company demonstrated...
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Vehicle Design Force to "Vector Aeromotive" after the previous vehicle's research was refocused on a new car, the Vector W2. In the early 1990s, Ralph...
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by employers and stating how much an employee was paid in a year The Vector W2, a concept car Wisconsin Works, a workforce development and welfare replacement...
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cars Vector M12 Vector SRV8 Vector W2 Vector W8 Vector WX-3 CCGS Vector, a 1967 hydrographic survey vessel in the Canadian Coast Guard MT Vector, a Philippine...
6 KB (741 words) - 06:41, 19 July 2025
Jerry Wiegert (category Vector Motors)
period of several years and preliminary marketing as the Vector W2, it entered production as the Vector W8. In the 1990s, Wiegert entered into dispute with...
7 KB (538 words) - 12:13, 5 June 2025
Espace. The Vector W8 was a Supercar built by American manufacturer Vector Motors. Developed through the 1980s and promoted with its Vector W2 prototype...
271 KB (32,561 words) - 22:56, 7 July 2025
Convertible Oldsmobile Bravada Pontiac Firebird Hyundai S Coupe GM Impact Vector W2 Prototype Buick Lucerne Convertible Concept Chevrolet California Camaro...
135 KB (11,877 words) - 14:32, 17 July 2025
better performing vehicles and automobile parts. These cars consist of the Vector W2, the Ferrari F40 and finally a Formula-1 race car; most of the game is...
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Direct sum of modules (redirect from Complementary vector space)
componentwise: (v1, w1) + (v2, w2) = (v1 + v2, w1 + w2) α (v, w) = (α v, α w) for v, v1, v2 ∈ V, w, w1, w2 ∈ W, and α ∈ K. The resulting vector space is called the...
22 KB (3,536 words) - 22:52, 3 December 2024
Linear subspace (redirect from Vector subspace)
in linear algebra, a linear subspace or vector subspace is a vector space that is a subset of some larger vector space. A linear subspace is usually simply...
33 KB (4,648 words) - 02:41, 18 July 2025
space R4. If a point has coordinates, P(x, y, z, w), then x2 + y2 + z2 + w2 = 1 characterizes those points on the unit 3-sphere centered at the origin...
34 KB (4,825 words) - 21:40, 24 June 2025
if and only if the second Stiefel–Whitney class w2(M) ∈ H2(M, Z2) of M vanishes. Furthermore, if w2(M) = 0, then the set of the isomorphism classes of...
29 KB (4,373 words) - 01:23, 1 April 2025
that dim(X)<p and X admits a smooth proper lift over the ring of Witt vectors W2(k) of length two (for example, for k=Fp, this ring would be Z/p2). Their...
7 KB (1,027 words) - 11:27, 9 June 2025
Pauli–Lubanski pseudovector (redirect from Pauli–Lubanski vector)
components (W1, W2, W3), with W1 and W2 orthogonal to P→, and W3 parallel to P→, the Pauli–Lubanski vector may be expressed in terms of the spin vector S→ = (S1...
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shared(np.zeros(hidden_size), name="b1") W2 = theano.shared(np.random.randn(hidden_size, output_size), name="W2") b2 = theano.shared(np.zeros(output_size)...
10 KB (1,141 words) - 19:41, 26 June 2025
w1,w2, we need to find maxy1,y2 (w1*(-y12 + y2 + 1)+w2*(y1 - y22 + 1)). Using the derivative test, we can find out that the maximum point is y1=w2/(2*w1)...
7 KB (956 words) - 18:01, 10 February 2025
topological vector spaces. The fundamental property of codimension lies in its relation to intersection: if W1 has codimension k1, and W2 has codimension...
7 KB (947 words) - 08:26, 18 May 2023
transformations V1 → W1 and V2 → W2, respectively, then the tensor product of the two maps is a map V1 ⊗ V2 → W1 ⊗ W2 represented by A ⊗ B. [ 1 2 3 4 ]...
41 KB (6,224 words) - 19:03, 3 July 2025
the dynamics of the system. These fields are the weak isospin fields W1, W2, and W3, and the weak hypercharge field B. This invariance is known as electroweak...
23 KB (3,602 words) - 22:15, 6 June 2025
coordinates w, x, y, z, with w2 + x2 + y2 + z2 = 1. The point (w, x, y, z) represents a rotation around the axis directed by the vector (x, y, z) by an angle...
68 KB (11,740 words) - 17:14, 5 July 2025
numbers z = (z1, z2). Then an inner product of z with another such vector w = (w1, w2) is given by ⟨ z , w ⟩ = z 1 w 1 ¯ + z 2 w 2 ¯ . {\displaystyle \langle...
128 KB (17,469 words) - 11:09, 10 July 2025
bipartite, and can be constructed as the Levi graph of the generalized quadrangle W2 (known as the Cremona–Richmond configuration). The graph is named after William...
7 KB (686 words) - 18:29, 3 November 2024
3154–3164. arXiv:2002.02798. Peyre R (October 2018). "Comparison between W2 distance and Ḣ−1 norm, and localization of Wasserstein distance". ESAIM: Control...
32 KB (5,194 words) - 22:35, 18 July 2025
each W1 and W2. For both events the two readings of the collocated clocks are recorded. The difference of the two readings of W1 and W2 is the temporal...
132 KB (19,765 words) - 09:00, 3 June 2025
is sometimes called universal. Lagrange's four-square theorem shows that w2 + x2 + y2 + z2 is universal. Ramanujan generalized this aw2 + bx2 + cy2 +...
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spanned by the field polynomials acting on the vacuum (cyclicity condition). W2 (transformation law of the field) The fields are covariant under the action...
14 KB (1,867 words) - 09:04, 5 July 2025
between two pure states [Ψ] and [Φ] can be defined in terms of non-zero vector representatives Ψ and Φ to be P ( [ Ψ ] , [ Φ ] ) = | ⟨ Ψ , Φ ⟩ | 2 ‖ Ψ...
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Devices ADSP-CM40x Microchip (Atmel) SAM 4L, 4N, 4S NXP (Freescale) Kinetis K, W2 ST (STM32) WL (one Cortex-M4 + one Cortex-M0+) Texas Instruments SimpleLink...
82 KB (5,908 words) - 14:52, 8 July 2025
y/b, w = z/c transforms the ellipsoid onto the unit sphere u2 + v2 + w2 = 1 and the given plane onto the plane with equation n x a u + n y b v +...
37 KB (5,909 words) - 02:51, 23 June 2025