6,090 research outputs found

    Modeling gravitational instabilities in self-gravitating protoplanetary disks with adaptive mesh refinement techniques

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    The astonishing diversity in the observed planetary population requires theoretical efforts and advances in planet formation theories. The use of numerical approaches provides a method to tackle the weaknesses of current models and is an important tool to close gaps in poorly constrained areas such as the rapid formation of giant planets in highly evolved systems. So far, most numerical approaches make use of Lagrangian-based smoothed-particle hydrodynamics techniques or grid-based 2D axisymmetric simulations. We present a new global disk setup to model the first stages of giant planet formation via gravitational instabilities (GI) in 3D with the block-structured adaptive mesh refinement (AMR) hydrodynamics code enz

    timlichtenberg/pub_21JGRP_Lichtenberg: Zenodo sync

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    Data and plotting scripts for Lichtenberg et al. (2021, JGRP

    I2ELVIS simulation code

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    This repository hosts the I2ELVIS planet simulation code. The simulation code version used in Lichtenberg et al. (2021) is permanently archived at: https://doi.org/10.5281/zenodo.4308374. Please go to https://github.com/timlichtenberg/i2elvis_planet for installation instructions and contact options

    I2ELVIS simulation code

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    This repository hosts the I2ELVIS planet simulation code. The simulation code version used in Lichtenberg et al. (2021) is permanently archived at: https://doi.org/10.5281/zenodo.4308374. Please go to https://github.com/timlichtenberg/i2elvis_planet for installation instructions and contact options

    I2ELVIS simulation code

    No full text
    This repository hosts the I2ELVIS planet simulation code. The simulation code version used in Lichtenberg et al. (2021) is permanently archived at: https://doi.org/10.5281/zenodo.4308374. Please go to https://github.com/timlichtenberg/i2elvis_planet for installation instructions and contact options

    Do dolphins benefit from nonlinear mathematics when processing their sonar returns?

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    An interview with author Tim Leighton about the paper

    Tim Di Muzio on 'Sabotage'

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    In a series of essays published in 2013 and 2014 on capitaspower.com, political economist Tim Di Muzio explored the concept of ‘sabotage’ as it applies to capitalist power. I recently rediscovered these essays and was so impressed by them that I have reposted them here as a single piece. About the author: Tim Di Muzio is a researcher at the University of Wollongong. He is the author of numerous books, including Debt as power, Carbon capitalism, and The 1% and the Rest of us

    1996-1997 Tim Gautreaux

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    Tim Gautreaux is the author of three novels and two earlier short story collections. His work has appeared in The New Yorker, The Best American Short Stories, The Atlantic, Harper’s, and GQ. After teaching for thirty years at Southeastern Louisiana University, he now lives, with his wife, in Chattanooga, Tennessee. (Photo credit: Randy Bergeron)https://egrove.olemiss.edu/grisham_res/1023/thumbnail.jp
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