Raunak
@raunak_dey_
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PhD researcher @UMDPhysics ๐บ๐ธ+@GeorgiaTech at @weitz_group; BS-MS alumnus ๐ฎ๐ณ@iiserkol ๐ป: Bayesian modeling, networks, DL4TimeSeries, health
Washington, DC
Joined September 2010
Thank you @umiacs for featuring our work and for the fellowship support!
Physics Ph.D. student Raunak Dey (@raunak_dey_) uses mathematical models to study how viruses affect microbial communities and human health. He is a student fellow at the Center of Excellence in Microbiome Sciences, which is supported @umiacs. Read more: https://t.co/Va116aT7K8
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Coming back to my alma mater @iiserkol is always special. I will be on campus this Thursday and Friday. See many of you there ๐ Thank you, Gluon, for organizing this session. @IISERKol_DPS
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As program chair of APS DBIO I encourage you to submit abstracts to the APS Global Physics Summit 2025 (March Meeting) - deadline 10/25! Thereโs an exciting line up of sessions from @ApsDbio: https://t.co/afSg9hJ0Yk. All abstracts are guaranteed short talks!
If you haven't submitted your abstract to the Global Physics Summit (March Meeting '25) there's still time! Deadline: Friday (10/25) at 5pm ET Check out the exciting DBIO sessions and submit your abstract here:
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Delighted to have received the Thomas Mason Interdisciplinary award from @UMDPhysics --thank you. Thanks to @joshuasweitz and @BeckettStephen for the incredible support. My work integrates the principles of Physics, Ecology and ML to study virus microbe networks and dynamics.
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Had an excellent time at the @NetSciConf presenting a talk at SINM and a poster -- connected with wonderful researchers at #NetSci2024. Special thanks to @UMDGradSchool for the ICSSA award.
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Excited for my upcoming talk at "Statistical Inference of Network Models" (SINM) symposium at @NetSciConf -- back in #quebec ๐จ๐ฆ after a year. Please feel free to reach out and connect if you are at @NetSciConf . Thanks @tiagopeixoto for the amazing opportunity.
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Paper now out in @NatureComms arising from a long-term collaboration, led by @BeckettStephen and @D2mory on 'Disentangling top-down drivers of mortality underlying diel population dynamics of Prochlorococcus in the North PacificSubtropical Gyre'. https://t.co/8f4LNQJd8r
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Quantitative Biosciences: Dynamics Across Cells, Organisms, and Populations Textbook + Computational Companion Guides in #Python, #R, and #MATLAB now available for self-study and classroom-use via @PrincetonUPress
https://t.co/prySM4W0a3
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Next scientific breakthrough incoming! ๐
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Recently, I decided I wanted to read every page of one of my favorite websites, @OurWorldInData. Iโm about halfway now. Here are the 30 most surprising things Iโve learned about the world so far! ๐งต
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Another update... after nearly 10 years in development, delighted to share news that 'Quantitative Biosciences: Dynamics across Cells, Organisms, and Populations' is available for pre-order from @PrincetonUPress: https://t.co/mio83U7RBU
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Multiple announcements coming soon from @weitz_group at @UMDscience... starting with a new webpage: https://t.co/FM7SOMCixM
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It's Aquatic Virus Workshop week in Quebec City @AVWno11, with lots of participation from @weitz_group. Akash, Marian, Raunak, Jeremy and Paul:
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I probed #ChatGPT for some time and learned a few secrets. Apparently it just makes up papers, these papers or authors do not exist! Pretty funny ๐ @AcademicChatter @PhDVoice
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1. Increase basic and applied science + engineering funding in India More funds to @CSIR_IND and @ugc_india 2. Accelerate startup incubations throughout the country
Inviting Ideas and Suggestions for Union Budget 2023-2024 | https://t.co/Cm7oOF2RXB
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@PhysRevE @Avitwit001 @biswajit_phys @ayanban7 @APSphysics How closely the random currents follow the arcsine distributions tells us how close to equilibrium our system is. So, the mathematical structure of disparate random phenomena is deeply connected, and we can find some emerging statistics in the face of randomness ๐ (7/n)
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@PhysRevE @Avitwit001 @biswajit_phys @ayanban7 @APSphysics Not only Brownian motion, but many artificial systems such as stock market prices and which team is leading in basketball also follow these arcsine laws. (6/n)
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@PhysRevE @Avitwit001 @biswajit_phys @ayanban7 @APSphysics Its cumulative distribution is arcsine, and hence the name follows. Therefore, in a single run, these random currents would spend either considerably large times above average or below average in the extremes, thus giving the distribution its characteristic U-shape. (5/n)
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@PhysRevE @Avitwit001 @biswajit_phys @ayanban7 @APSphysics The fraction of time a random walker spends above average, or reaches its maximum deviation from average, or the last time it crosses the average, follows a 'U-shaped' probability distribution. (4/n)
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