Sentence examples for the argument of the function from inspiring English sources

Exact(3)

An important class of these identity statements are statements of the form 'ƒ(x) = y', where ƒ is any unary function (i.e., function of a single variable), x is the argument of the function, and ƒ(x) is the value of the function for the argument x.

If an error correcting code with rate R = k/n is applied, the argument of the function Q must be replaced with (sqrt {2gamma R} ) and (overline {P_{b}}) has the meaning of mean channel bit error rate, while the BER at the decoder output must be computed by taking into account the effect of the decoding algorithm.

Note that two things have changed relative to the naive G-MAC game; the power available for transmission (appearing in the numerator of the argument of the function) is reduced because some senders are rendered incapable of communicating by the jammers, and the noise term (appearing in the denominator) is no longer constant for all coalitions but is augmented by the power of the jammers.

Similar(57)

Let be the argument of the -function in(18) (20).

If we constrain which is a reasonable assumption, the argument of the -function in (37) should be negative.

Moreover, the form in (4) has some interesting implications with regard to simplifying the evaluation of performance results related to communication problems, for example, as seen later to the SEP performance evaluation over fading channels, wherein the argument of the -function is dependent on random system parameters and, thus, requires averaging over the statistics of these parameters.

Sometimes, the arguments of the function will be omitted in the analysis when no confusion can arise.

In these functional expressions, " is used as a placeholder for what Frege called the arguments of the function; the placeholder reveals that the expressions signifying function are, on Frege's view, incomplete and stand in contrast to complete expressions such as those in (a), (b), and (c).

The trajectory X (t ′ ) = x − p m (t − t ′ ) is initialized by the arguments of the function f w ϵ, p on the left, while f 0 p is the first p derivative of the initial condition.

In both cases, subcarrier selection is based on maximizing the argument of the Q function in the BER expression, where the Q function is the complementary cumulative distribution function of zero-mean unit-variance Gaussian random variable.

Moreover the argument of the sine function (ωt ± kx) is called the phase of the wave.

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