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Consider the following simple grammar for arithmetic expressions :< syntaxhighlight lang =" bnf ">
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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 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 example ( in Kwakw ' ala, sentences begin with what corresponds to an English verb ):
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 and simple
Consider a simple, closed, plane curve C which is a real-analytic image of the unit circle, and which is given by Af.
Consider how a simple expression such as could be evaluated – one could also compute the equivalent.
Consider for example a sample Java fragment to represent some common farm " animals " to a level of abstraction suitable to model simple aspects of their hunger and feeding.
Consider the simple case of two-body system, where object A is moving towards another object B which is initially at rest ( in any particular frame of reference ).
Consider a simple banking application where two users have access to the funds in a particular account.
Writing in 1960, he begins: " Consider a very long sequence of symbols ... We shall consider such a sequence of symbols to be ' simple ' and have a high a priori probability, if there exists a very brief description of this sequence-using, of course, some sort of stipulated description method.
In the case that T acts on euclidean space R < sup > n </ sup >, there is a simple geometric interpretation for the singular values: Consider the image by T of the unit sphere ; this is an ellipsoid, and its semi-axes are the singular values of T ( the figure provides an example in R < sup > 2 </ sup >).
Consider a simple exchange economy with two identical agents, one ( divisible ) good, and two potential states of the world ( which occur with some probability ).
Consider a simple gravity pendulum, whose length equals the radius of the Earth, suspended in a uniform gravitational field of the same strength as that experienced at the Earth's surface.
Consider a simple case: a perfectly competitive market where fuel is the sole input used, and the only determinant of the cost of work.
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