Examples of using Algorithms can in English and their translations into Greek
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Colloquial
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Medicine
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Computer
No other algorithms can be configured.
Algorithms can only extrapolate from what is known;
Like a graphic equalizer in high-end audio systems, algorithms can continually divide sounds into frequency channels.
The algorithms can either be applied directly….
For other observers, instead of worrying,we should all rejoice that algorithms can help us to interact with people from different cultures.
People also translate
These algorithms can do that quite easily.
Algorithms can also be assessed according to their bit complexity, i.e.
Hence there is not reason to think that organic algorithms can do things that non-organic algorithms will never be able to replicate or surpass.
Algorithms can predict which neoantigens should be targeted for vaccination.
Hence there is not reason to think that organic algorithms can do things that non-organic algorithms will never be able to replicate or surpass.
Algorithms can be beautiful in mathematical terms, but they are only as good as the people who create them.
Unbiased algorithms can still be problematic.
Algorithms can vary so widely that a website that ranks 1 in one search engine can rank even 100 in another one.
The less secure algorithms can be used for backward compatibility.
The algorithms can either be applied directly to a dataset or called from your own Java code.
Statistical algorithms can further be categorized as generative or discriminative.
Algorithms can differ so widely that a web-page that ranks 1 in one search engine may only rank 30 in another search engine.
If well-designed, algorithms can be used to solve important moral problems in a fair and efficient manner.
Now algorithms can screen decades of different studies and trials.
Most algorithms can be implemented by computer programs.
These algorithms can identify protesters even if their faces are partially concealed.
And these algorithms can help you identify the people who left traces of DNA in this agent's house?
Mathematical algorithms can now be privately owned if they are embedded in patented software.
Mathematical algorithms can now be owned if they are embedded in software and supposedly serve a novel commercial function.
For example, smart algorithms can be tuned to deliver an article based on your location or your required reading time.
Algorithms can differ so widely that a webpage that ranks 1 in a particular search engine could rank 100 in another.
Algorithms can be a smart, efficient and reliable way to order content, but they may also carry more troubling effects.
Algorithms can differ so widely between search engines that a webpage that ranks 1 in a particular search engine could rank 200 in another search engine.
Algorithms can also be assessed according to their bit complexity, i.e., how many bits of accuracy are needed to store intermediate values occurring in the computation.
In healthcare, algorithms can help dermatologists make better diagnoses: by detecting, for example, 95% of skin cancers by learning from large sets of medical images.