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Consider and with
Consider adopting a system of holidays in which time off is granted with an eye to minimum inconvenience to the operation of the plant.
Consider a shear field with a height of H and a cross-sectional area of A opposed by a manometer with a height of H ( referred to the same base as H ) and a cross-sectional area of A.
Consider the assembly of a car: assume that certain steps in the assembly line are to install the engine, install the hood, and install the wheels ( in that order, with arbitrary interstitial steps ); only one of these steps can be done at a time.
* Consider a set with three elements, A, B, and C. The following operation:
Consider a speech signal reduced to packets, and forced to share a link with bursty data traffic ( traffic with some large data packets ).
Consider a complete orthonormal system ( basis ),, for a Hilbert space H, with respect to the norm from an inner product.
Consider the real line with its ordinary topology.
( Consider 1 / 0, which is defined with the value of infinity, vs. 0 / 0, which is undefined.
Consider a physical system that acts as a linear filter, such as a system of springs and masses, or an analog electronic circuit that includes capacitors and / or inductors ( along with other linear components such as resistors and amplifiers ).
Fundamental group: Consider the category of pointed topological spaces, i. e. topological spaces with distinguished points.
Consider a collection of particles performing a random walk in one dimension with length scale and time scale.
< li > Consider the group ( Z < sub > 6 </ sub >, +), the integers from 0 to 5 with addition modulo 6.
* The Infinite Moment ( 1961 ) ( US edition of Consider Her Ways, with two stories dropped, two others added )
Consider the following example ( in Kwakw ' ala, sentences begin with what corresponds to an English verb ):
Consider a test apparatus consisting of a closed and well insulated cylinder equipped with a piston.
Consider two noninteracting systems and, with respective Hilbert spaces and.
Consider as above systems and each with a Hilbert space,.
Consider two ISPs, A and B, which each have a presence in New York, connected by a fast link with latency 5 ms ; and which each have a presence in London connected by a 5 ms link.
Consider the following: if the typical user is searching with term " A ", would they also want resources tagged with term " B "?
Again we start with a C < sup >∞</ sup > manifold, M, and a point, x, in M. Consider the ideal, I, in C < sup >∞</ sup >( M ) consisting of all functions, ƒ, such that ƒ ( x ) = 0.
Consider a linear differential equation with constant coefficients
Consider the time series of an independent variable and a dependent variable, with observations sampled at discrete times.

Consider and inputs
Consider a ROM with m inputs ( the address lines ) and n outputs ( the data lines ).
Consider the following quote: " How can the fact that, in the case of the brains in a vat, the language is connected by the program with sensory inputs which do not intrinsically or extrinsically represent trees ( or anything external ) possibly bring it about that the whole system of representations, the language in use, does refer to or represent trees or any thing external?

Consider and N
Consider the unitary form defined above for the DFT of length N, where
Consider the number N ( r ) of balls of radius at most r required to cover X completely.
Consider a state of the system, described by the single particle states ..., n < sub > N </ sub >.
Consider a jar containing N lottery tickets numbered from 1 through N. If you pick a ticket randomly then you get positive integer n, with probability 1 / N if n ≤ N and with probability zero if n > N. This can be written
Consider an unsorted database with N entries.
If S is compact but not closed, then it has an accumulation point a not in S. Consider a collection consisting of an open neighborhood N ( x ) for each x ∈ S, chosen small enough to not intersect some neighborhood V < sub > x </ sub > of a.
Consider a quantum ensemble of size N with occupancy numbers n < sub > 1 </ sub >, n < sub > 2 </ sub >,..., n < sub > k </ sub > corresponding to the orthonormal states, respectively, where n < sub > 1 </ sub >+...+ n < sub > k </ sub >
Consider a rigid regular, crystalline, i. e. not amorphous, lattice composed of N particles.
Consider a system of N qubits that is coupled to a bath symmetrically.
Consider a graph G with vertices V, each numbered 1 through N. Further consider a function shortestPath ( i, j, k ) that returns the shortest possible path from i to j using vertices only from the set
Consider the set of all nilpotent elements of R, which will be called the nilradical of R ( and will be denoted by N ( R )).
Consider N systems in adiabatic isolation from the rest of the universe, i. e. no heat exchange is possible outside of these N systems, all of which have a constant volume and composition, and which can only exchange heat with one another.
Consider a sphere B < sub > 2 </ sub > of radius 2 centered at N. The inversion with respect to B < sub > 2 </ sub > transforms B into its stereographic projection P.
Consider a linear polymer to be a freely-jointed chain with N subunits, each of length, that occupy zero volume, so that no part of the chain excludes another from any location.
# Quadratic residue code: Consider the set N of quadratic non-residues ( mod 23 ).
Consider the translates t + N of this subset.
Consider the special case N = 1.
Consider an integer N and a non-negative monotone decreasing function f defined on the unbounded interval < nowiki >

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