1,724,558 research outputs found

    Computing the Capacity Region of a Wireless Network

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    The work of R. Gummadi and R. Sreenivas was supported in parts by a Vodafone Graduate Fellowship, NSF CNS-0437415, NSF ECCS-0426831 and NSF CNS-0834409. The work of K. Jung and D. Shah was supported in parts by NSF CAREER CNS-0546590 and NSF CCF-072855

    Green inhibitor

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    <p>Comparing the effectiveness of inhibitors and surface coatings</p&gt

    Corrosion analysis

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    <p>EDAX test for corroded steel</p&gt

    Sreenivas Konda's Quick Files

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    The Quick Files feature was discontinued and it’s files were migrated into this Project on March 11, 2022. The file URL’s will still resolve properly, and the Quick Files logs are available in the Project’s Recent Activity

    ACCN3285_Mytheli_Sreenivas_Video_Interview_2021

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    Video of interview by Elizabeth Silvas with Dr. Mytheli Sreenivas, recorded February 8, 2021Sreenivas speaks about joining Frontiers around the 40th anniversary of Roe v. Wade and working to support early-career scholars

    ACCN3285_Mytheli_Sreenivas_Interview_Transcript_2021

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    Transcript (17 pages) of interview by Elizabeth Silvas with Dr. Mytheli Sreenivas, recorded February 8, 2021Sreenivas speaks about joining Frontiers around the 40th anniversary of Roe v. Wade and working to support early-career scholars

    Entrainment studies in cloud-like flows using novel scanning tomography technique

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    Clouds are one of the major sources of uncertainty in climate prediction.The present work is to study the dynamics of orographic clouds. We considered a planar turbulent wall jet with off source volumetric heating as an appropriate low order fluid-dynamical model for studying the turbulence and entrainment in orographic-clouds. Entrainment was found to reduce drastically with the off-source volumetric heat addition. We found that the reduction of entrainment started at a bulk-Richardson number which was an order of magnitude smaller than that seen in earlier experiments [1] on free standing cumulus clouds. This is consistent with observations in real orographic clouds which develop as a thin sheet rising along the mountain slope. We have developed a novel scanning tomography technique for getting concentration field in turbulent shear flows. This technique is being applied on cloud-like flow to understand the entrainment characteristics. Detailed results will be presented at the conference

    Deliberation and Voting in Approval-Based Multi-Winner Elections

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    Deliberation and Voting in Approval-Based Multi-Winner Elections Kanav Mehra, Nanda Kishore Sreenivas and Kate Larson</p
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