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Consider and following
Consider the following reactions of acetic acid ( CH < sub > 3 </ sub > COOH ), the organic acid that gives vinegar its characteristic taste:
Consider, for instance, the following equations:
* Consider a set with three elements, A, B, and C. The following operation:
Consider the following example.
Consider the following:
Consider the following simple grammar for arithmetic expressions :< syntaxhighlight lang =" bnf ">
Consider the following analogy.
Consider the following sentences: " Socrates is a philosopher ", " Plato is a philosopher ".
Consider the following two probabilities, assuming a fair coin:
Consider the following situation.
Consider the following quotation from Groucho Marx:
Consider for example determining which of the following are to be considered diseases ( i. e., abnormal states requiring cure ): alcoholism, homosexuality, and chronic fatigue syndrome.
Consider the following examples, created using animated GIFs, wherein a key frame defines the starting and ending points of any smooth transition:
Consider the case in which liquid crystal molecules are aligned parallel to the surface and an electric field is applied perpendicular to the cell as in the following diagram.
Consider the following two examples.
Consider the following example ( in Kwakw ' ala, sentences begin with what corresponds to an English verb ):
" Consider the following sentences:
Consider the following statement in the circumstance of sorting apples on a moving belt:
Consider a population consisting of the following eight values:
Consider the following hand.
Consider the following: if the typical user is searching with term " A ", would they also want resources tagged with term " B "?
Suppose that U: D → C is a functor from a category D to a category C, and let X be an object of C. Consider the following dual ( opposite ) notions:
Consider the following example: A game is being played to 9 points.
Consider the following URL as it would be requested by a client:
Consider the following operation on an arbitrary positive integer:

Consider and How
* Consider the Birds: How They Live and Why They Matter London, 2008.
* 2003-When I Consider How My Light Is Spent ( as Ric Hordinski )
How Believers are to Consider Their Election, and Engelder, T. E. W., < cite > Popular Symbolics.
The three CD set contains complete readings of the following essays:Consider the Lobster ”, “ The View from Mrs. Thompson ’ s ”, “ Big Red Son ”, and “ How Tracy Austin Broke My Heart ”.

Consider and can
Consider what you can afford to spend and what your goals are before setting up or revamping your employee benefit program.
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 an experiment that can produce a number of results.
Consider an experiment that can produce a number of outcomes.
Consider that even the most rare events on Earth can happen multiple times and independent of one another.
#: Consider a unit sphere placed at the origin, a rotation around the x, y or z axis will map the sphere onto itself, indeed any rotation about a line through the origin can be expressed as a combination of rotations around the three-coordinate axis, see Euler angles.
Consider the analogy between the sentence " Snow is white " and the character named Snow White, both of which can be true in some sense.
Consider a system in which voters can vote for any candidate from any one of many parties ; suppose further that if a party gets 15 % of votes, then that party will win 15 % of the seats in the legislature.
Consider the two endpoints of a rod of length L. The length can be determined from the differences in the three coordinates Δx, Δy and Δz of the two endpoints in a given reference frame
Consider Peter Unger's example of a cloud ( from his famous 1980 paper, " The Problem of the Many "): it's not clear where the boundary of a cloud lies ; for any given bit of water vapor, one can ask whether it's part of the cloud or not, and for many such bits, one won't know how to answer.
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 further that there is an adversary called Eve that can observe these encryptions and is able to forward plaintext messages to Alice for encryption ( in other words, Eve is capable of a chosen-plaintext attack ).
Consider the theory obtained by adding a new constant symbol ε to the language and adjoining to Σ the axiom ε > 0 and the axioms ε < 1 / n for all positive integers n. Clearly, the standard real numbers R are a model for every finite subset of these axioms, because the real numbers satisfy everything in Σ and, by suitable choice of ε, can be made to satisfy any finite subset of the axioms about ε.
Consider a system S and environment ( bath ) B, which are closed and can be treated quantum mechanically.
Pope Pelagius II ( 578-590 ): " Consider the fact that whoever has not been in the peace and unity of the Church cannot have the Lord … Although given over to flames and fires, they burn, or, thrown to wild beasts, they lay down their lives, there will not be ( for them ) that crown of faith but the punishment of faithlessness … Such a one can be slain, he cannot be crowned … slain outside the Church, he cannot attain the rewards of the Church " ( Denzinger, 469 ).
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 the category C of algebraic structures ; these can be thought of as sets plus operations, obeying some laws.
Consider how you can contribute to this effort.
This can be shown as follows: Consider the probability of player 1 experiencing gamblers ruin having started with amount of money,.
Consider a problem that can be solved using a recursive algorithm such as the following:
Consider the COX-2 inhibitory capacity of the 4-methyl and 4-ethyl modifications: 4-methyl can inhibit COX-2 such that the IC50 is 0. 040μM while that of the 4-ethyl is 0. 86μM which means that the 4-methyl substituent is at least 20-fold more potent ( see structures 22 and 23 ).
This orthogonality can best be understood in a thought experiment: Consider a model of a population of animals such as crocodiles or tangle web spiders.
Consider the circuit minimization problem: given a circuit A computing a Boolean function f and a number n, determine if there is a circuit with at most n gates that computes the same function f. An alternating Turing machine, with one alternation, starting in an existential state, can solve this problem in polynomial time ( by guessing a circuit B with at most n gates, then switching to a universal state, guessing an input, and checking that the output of B on that input matches the output of A on that input ).
Consider a perfect capital market ( no transaction or bankruptcy costs ; perfect information ); firms and individuals can borrow at the same interest rate ; no taxes ; and investment decisions are not affected by financing decisions.

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