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Discover LudwigThe phrase "accurate algorithmic" is correct and usable in written English.
It can be used when describing algorithms that produce precise or correct results, often in technical or scientific contexts.
Example: "The research team developed an accurate algorithmic model to predict weather patterns."
Alternatives: "precise algorithmic" or "exact algorithmic".
Exact(3)
For completeness, it is important to mention that previous accurate algorithmic experimental analysis of the relative merits of each of the implemented measures [19,23,25], carried out specifically on microarray data, gives useful insights on the effectiveness of ValWorkBench for cluster validation to researchers in the microarray community interested in its use for the mentioned task.
Additional assumptions have been that the ultrasound measurement of multiple linear or planar dimensions of the fetus provides sufficient parametric information to allow accurate algorithmic reconstruction of the three-dimensional fetal volume of varying tissue density.
It is assumed that ultrasound measurement of the multiple linear and planar dimensions of the fetus provides sufficient parametric information to allow for the accurate algorithmic reconstruction of the three-dimensional fetal volume of varying tissue density.
Similar(57)
Eva Tardos: Algorithms, algorithmic game theory.
Our algorithms are more accurate and much faster in algorithmic complexity than most image-based motion estimation algorithms.
Heuristics, despite their frugal nature, can be very accurate compared to classical algorithmic computation, because one's utility is being maximized.
This assumption may not always be accurate [36], and other algorithmic approaches may ultimately prove superior for modeling cell-cell interaction.
The algorithmic incorporation of accurate parent masses was also shown to contribute to higher sequencing accuracy.
While the available shortcut approaches are not accurate enough, successful tuning of the algorithmic parameters is mandatory for producing credible estimates with the more elaborate existing strategies.
Although previous studies using SIFT have demonstrated its ability to outperform analyses attempting to predict tolerated amino acid replacements based on scoring matrices alone, these studies highlight the need for algorithmic development to improve accurate predictions of non-tolerated (deleterious) amino acid replacements [ 21, 22, 42].
This article also presents cycle-accurate simulation results for various key algorithmic and cryptographic kernels.
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