Examples of using Algorithm must in English and their translations into Portuguese
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Colloquial
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Official
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Medicine
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Financial
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Ecclesiastic
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Ecclesiastic
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Computer
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Official/political
The algorithm must be able to elongate, or stretch, the phoneme to any duration.
Kleene also demanded that such an algorithm must eventually exhibit"some object" Kleene 1952:137.
If a camera does not capture these signals simultaneously, a so-called high-dynmic range(HDR) algorithm must be applied.
The algorithm must be non-stochastic i.e. it must not depend on luck.
If the target KPIs are met,then by definition the algorithm must be good, even if a few people do suffer a bit.
The sort algorithm must gain enough information from the comparisons to identify the correct permutation.
We can count the number of possible algorithms andprove that only a bounded number of them are"bad", so at least one algorithm must be"good.
The standard claims the algorithm must be implemented in hardware, nevertheless many software implementations exist.
An algorithm must be seen to be believed." You can't just think about an algorithm you have to work with it.
The distinction is in the error probability that is allowed:in BPP, an algorithm must give correct answer(YES or NO) with probability exceeding some fixed constant c> 1/2, such as 2/3 or 501/1000.
An algorithm must be seen to be believed." You can't just think about an algorithm you have to work with it.
For some such computational process, the algorithm must be rigorously defined: specified in the way it applies in all possible circumstances that could arise.
An algorithm must be perceived here as a finite set of instructions, clearly defined and not ambiguous, that can be executed mechanically during a period of time and with an amount of effort that are also limited.
The distances used as input to the algorithm must be normalized to prevent large artifacts in computing relationships between closely related and distantly related groups.
As such an algorithm must provide an answer without reading the entire input, its particulars heavily depend on the access allowed to the input.
The routing algorithm must use some utility function based on a number of different parameters(e.g., encounter history, mobility, sociability, etc.) to discover the better relay nodes.
The algorithm must be able to generate smooth gliding from a phoneme to another, in order to simulate the coarticulation phenomenon the next phoneme starts to be heard while the previous one is not completely terminated.
With the aim of facilitating usage on small scale systems, the algorithms must be modified to enable the operations of them on limited processing power.
Algorithms must therefore be able to compensate for the relatively small amount of available data, which includes on top of it, a very large number of variables.
The algorithms must have specific objectives and targets, with the adoption of effective and applicable protocols, in order to evaluate analgesia, agitation and sedation, as well as incorporate the selection of medication.
For the wsn in particular, the synchronization algorithms must respect the computational limitations.
Thus, asymmetric algorithm keys must be longer for equivalent resistance to attack than symmetric algorithm keys.
All of Google's algorithms must be placed in the public domain.
The algorithm used must be able to generate the phoneme at any pitch fundamental frequency.