Showing 1,121 - 1,140 results of 1,315 for search '(( algorithm steps function ) OR ( algorithm python function ))*', query time: 0.25s Refine Results
  1. 1121

    Image_4_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.TIF by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  2. 1122

    Table_8_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.XLSX by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  3. 1123

    Table_3_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.XLSX by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  4. 1124

    Table_6_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.XLSX by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  5. 1125

    Table_4_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.XLSX by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  6. 1126

    Table_7_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.XLSX by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  7. 1127

    Image_2_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.TIFF by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  8. 1128

    An Adaptive Sampling Strategy for Real-Time Anomaly Detection with Unmanned Sensing Vehicles by Yue Jiang (102705)

    Published 2024
    “…The spatial and temporal components are used for one-step prediction to guide the adaptive sampling strategy. …”
  9. 1129

    Image_1_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.TIF by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  10. 1130

    Image_3_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.tif by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  11. 1131

    Image_5_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.TIFF by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  12. 1132

    Table_2_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.XLSX by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  13. 1133

    Table_1_MeiosisOnline: A Manually Curated Database for Tracking and Predicting Genes Associated With Meiosis.XLSX by Xiaohua Jiang (177009)

    Published 2021
    “…<p>Meiosis, an essential step in gametogenesis, is the key event in sexually reproducing organisms. …”
  14. 1134

    Code and data for evaluating oil spill amount from text-form incident information by Yiming Liu (18823387)

    Published 2025
    “…These are separately stored in the folders “description” and “posts”.</p><h2>Algorithms for Evaluating Release Amount (RA)</h2><p dir="ltr">The algorithms are split into the following three notebooks based on their functions:</p><ol><li><b>"1_RA_extraction.ipynb"</b>:</li><li><ul><li>Identifies oil spill-related incidents from raw incident data.…”
  15. 1135

    COI reference sequences from BOLD DB by John Sundh (12853901)

    Published 2023
    “…<br>The file bold_clustered.sintax.fasta.gz is directly compatible with the SINTAX algorithm in vsearch while files bold_clustered.assignTaxonomy.fasta.gz and bold_clustered.addSpecies.fasta.gz are directly compatible with the assignTaxonomy and addSpecies functions from DADA2, respectively. …”
  16. 1136

    Optimizing critical quality attributes of fast disintegrating tablets using artificial neural networks: a scientific benchmark study by Jagruti Desai (20400468)

    Published 2024
    “…The ‘differential_evolution’ function effectively optimized the CQAs, resulting in FDTs with ideal characteristics.…”
  17. 1137

    A generative learning model for saccade adaptation by Carlos R. Cassanello (7181474)

    Published 2019
    “…The algorithm also includes a forgetting rate that quantifies per-trial leaks in the adaptation gain, as well as a systematic, non-error-based bias. …”
  18. 1138

    DataSheet1_Dual continuum upscaling of liver lobule flow and metabolism to the full organ scale.docx by Dennis Coombe (2331610)

    Published 2022
    “…<p>The liver is the body’s primary metabolic organ and its functions operate at multiple time and spatial scales. …”
  19. 1139

    BrainPepPass: all scripts by Ewerton de Oliveira (16033631)

    Published 2023
    “…</p> <p><br></p> <p>Obs: Among the compressed files, there is the sLE_functions.py script. This script is responsible for providing the necessary functions of the sLE algorithms to run BrainPepPass framework.…”
  20. 1140

    Circadian variation of firing frequency. by Shiju S (4015103)

    Published 2019
    “…(K) Numerical simulation for SFR as described in the Algorithm-1. Here desired circadian time is CT9. From CT0 to CT9, the step size is 1000<i>ms</i>, and at CT9, the step size is 0.01<i>ms</i> for 1000<i>ms</i>, and the corresponding firing patterns obtained is used to calculate the firing frequency at CT9.…”