Showing 41 - 60 results of 8,351 for search '(( significantly ((longer decrease) OR (larger decrease)) ) OR ( significant small decrease ))', query time: 0.38s Refine Results
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    Data_Sheet_2_Phenotypic Clumping Decreases With Flock Richness in Mixed-Species Bird Flocks.csv by Priti Bangal (9979259)

    Published 2021
    “…Using a null model approach, we found that small flocks were more phenotypically clumped for body size than expected by chance; however, phenotypic clumping decreased as flocks increased in size and approached expected phenotypic variation in large flocks. …”
  9. 49

    Data_Sheet_1_Phenotypic Clumping Decreases With Flock Richness in Mixed-Species Bird Flocks.csv by Priti Bangal (9979259)

    Published 2021
    “…Using a null model approach, we found that small flocks were more phenotypically clumped for body size than expected by chance; however, phenotypic clumping decreased as flocks increased in size and approached expected phenotypic variation in large flocks. …”
  10. 50

    Data_Sheet_3_Phenotypic Clumping Decreases With Flock Richness in Mixed-Species Bird Flocks.csv by Priti Bangal (9979259)

    Published 2021
    “…Using a null model approach, we found that small flocks were more phenotypically clumped for body size than expected by chance; however, phenotypic clumping decreased as flocks increased in size and approached expected phenotypic variation in large flocks. …”
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    Scheme of g-λ model with larger values λ. by Zhanfeng Fan (20390992)

    Published 2024
    “…The findings suggest that when λ is respectively equal to 4.19, 8.57, 10, and 12.15, the peak particle velocity (PPV) of the transmitted waves is significantly close to the incident wave amplitude. Furthermore, when λ is fixed, the energy transmission coefficient increases with the incident wave amplitude but decreases with the incident wave frequency. …”
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    Size Control in the Colloidal Synthesis of Plasmonic Magnesium Nanoparticles by Elizabeth R. Hopper (11884126)

    Published 2021
    “…Here, we systematically probe the effects of reaction parameters on the nucleation and growth of Mg nanoparticles using a facile and inexpensive colloidal synthesis. Small NPs of 80 nm were synthesized using a low reaction time of 1 min and ∼100 nm NPs were synthesized by decreasing the overall reaction concentration, replacing the naphthalene electron carrier with biphenyl or using metal salt additives of FeCl<sub>3</sub> or NiCl<sub>2</sub> at longer reaction times of 17 h. …”
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