The podcast focuses on topics in theoretical/computational neuroscience and is primarily aimed at students and researchers in the field.
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All about my career as a writer! Cover art photo provided by Nick Morrison on Unsplash: https://unsplash.com/@nickmorrison
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Two friends Finn and Patty come up with sketches and segments they wish to see in the world and act them out, with hilarious results.
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Every year the Arnold Sommerfeld Center (ASC) for Theoretical Physics at the LMU in Munich organizes a school for PhD students. It covers topics which are of current interest in theoretical physics and range from more applied fields like condensed matter physics to rather mathematical fields like string theory. Announcements of upcoming schools can be found on the ASC schools webpage and a list of past schools can be found in the archive of the ASC schools.
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Raise your consciousness by listening to a multidimensional guru from central Harlem, NY. Inspire yourself
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A podcast discussing the latest research in theoretical chemistry, including interviews with leading academics. Produced by PhD students in the TMCS Centre for Doctoral Training at Oxford University.
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Learn about quantum mechanics, black holes, dark matter, plasma, particle accelerators, the Large Hadron Collider and other key Theoretical Physics topics. The Rudolf Peierls Centre for Theoretical Physics holds morning sessions consisting of three talks, pitched to explain an area of our research to an audience familiar with physics at about second-year undergraduate level.
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science and science-related talk https://www.youtube.com/user/misteraranda/ https://twitter.com/MRdelisious Support this podcast: https://podcasters.spotify.com/pod/show/antonio-aranda/support
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The hosts compete by pitching original ideas for theme park rides and attractions based on that week’s chosen theme. A special guest judge awards a Bronze, Silver, or Gold ticket for three separate categories. MOST CREATIVE MOST PRACTICAL GUEST’S FAVORITE With bragging rights on the line, the hosts will try to pick each other’s ideas apart through “GENTLE” ribbing trying to sway the judge’s favor.
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On models for short-term memory - with Pawel Herman - #21
1:47:42
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The leading theory for learning and memorization in the brain is that learning is provided by synaptic learning rules and memories stored in synaptic weights between neurons. But this is for long-term memory. What about short-term, or working, memory where objects are kept in memory for only a few seconds? The traditional theory held that here the …
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On neuro-AI on the boat - part 2 of 2 - with Paul Middlebrooks, Cristina Savin, Tim Vogels, Mikkel Lepperød - #20
1:21:03
1:21:03
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1:21:03
In September Paul Middlebrooks, the producer of the podcast BrainInspired, and I were both on a neuro-AI workshop on a coast liner cruising the Norwegian fjords. We decided to make two joint podcasts with some of the participants where we discuss the role of AI in neuroscience. In this second part we discuss the topic with Cristina Savin and Tim Vo…
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On neuro-AI on the boat - part 1 of 2 - with Paul Middlebrooks, Ken Harris, Andreas Tolias, Mikkel Lepperød - #19
1:19:26
1:19:26
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1:19:26
In September Paul Middlebrooks, the producer of the podcast BrainInspired, and I were both on a neuro-AI workshop on a coast liner cruising the Norwegian fjords. We decided to make two joint podcasts with some of the participants where we discuss the role of AI in neuroscience. In this first part we talk with Mikkel Lepperod, the main organizer abo…
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1
Quantum Monte Carlo methods for fermion Hamiltonians with sign problem, and applications in the Hubbard model, part 1
1:26:17
1:26:17
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1:26:17
2024 Arnold Sommerfeld SchoolPar Shiwei Zhang (Flatiron)
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Quantum Monte Carlo methods for fermion Hamiltonians with sign problem, and applications in the Hubbard model, part 2
1:35:29
1:35:29
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1:35:29
2024 Arnold Sommerfeld SchoolPar Shiwei Zhang (Flatiron)
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Engineering flat-bands in moiré materials, part 2
1:15:51
1:15:51
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1:15:51
2024 Arnold Sommerfeld SchoolPar Dmitri Efetov (LMU Munich)
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1
Spatial population genetics, Lecture 3
1:30:55
1:30:55
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1:30:55
2019 Arnold Sommerfeld School: the Physics of LifePar David Nelson
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Statistical mechanics approaches for studying microbial growth, Lecture 3
1:31:35
1:31:35
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1:31:35
2019 Arnold Sommerfeld School: the Physics of LifePar Ariel Amir
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Information theory and optimality in biological networks, Lecture 3
1:46:12
1:46:12
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1:46:12
2019 Arnold Sommerfeld School: the Physics of LifePar Gasper Tkacik
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Fluid flows shaping morphology
1:01:57
1:01:57
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1:01:57
2019 Arnold Sommerfeld School: the Physics of LifePar Karen Alim
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Motility-induced phase separation and pattern formation, Lecture 3
1:38:10
1:38:10
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1:38:10
2019 Arnold Sommerfeld School: the Physics of LifePar Julien Tailleur
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Spatial population genetics, Lecture 2
1:32:37
1:32:37
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1:32:37
2019 Arnold Sommerfeld School: the Physics of LifePar David Nelson
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Information theory and optimality in biological networks, Lecture 2
1:31:48
1:31:48
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1:31:48
2019 Arnold Sommerfeld School: the Physics of LifePar Gasper Tkacik
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1
Motility-induced phase separation and pattern formation, Lecture 2
1:36:35
1:36:35
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1:36:35
2019 Arnold Sommerfeld School: the Physics of LifePar Julien Tailleur
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Statistical mechanics approaches for studying microbial growth, Lecture 2
1:31:17
1:31:17
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1:31:17
2019 Arnold Sommerfeld School: the Physics of LifePar Ariel Amir
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1
Information theory and optimality in biological networks, Lecture 1
1:34:10
1:34:10
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1:34:10
2019 Arnold Sommerfeld School: the Physics of LifePar Gasper Tkacik
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Cell migration on microstructured surfaces: From single cell to collective behavior
51:54
51:54
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51:54
2019 Arnold Sommerfeld School: the Physics of LifePar Joachim Rädler
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1D Active Matter, Guided Mechanochemical Pattern Formation, Lecture 3
59:54
59:54
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59:54
2019 Arnold Sommerfeld School: the Physics of LifePar Stephan Grill
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1D Active Matter, Lecture 2
1:36:44
1:36:44
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1:36:44
2019 Arnold Sommerfeld School: the Physics of LifePar Stephan Grill
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1
Motility-induced phase separation and pattern formation, Lecture 1
1:30:46
1:30:46
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1:30:46
2019 Arnold Sommerfeld School: the Physics of LifePar Julien Tailleur
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Protein self-organization in cell division
1:05:05
1:05:05
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1:05:05
2019 Arnold Sommerfeld School: the Physics of LifePar Petra Schwille
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1D Active Matter, Lecture 1
1:38:14
1:38:14
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1:38:14
2019 Arnold Sommerfeld School: the Physics of LifePar Stephan Grill
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1
Spatial population genetics, Lecture 1
1:33:50
1:33:50
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1:33:50
2019 Arnold Sommerfeld School: the Physics of LifePar David Nelson
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1
Statistical mechanics approaches for studying microbial growth, Lecture 1
1:34:32
1:34:32
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1:34:32
2019 Arnold Sommerfeld School: the Physics of LifePar Ariel Amir
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1
Black hole information and spacetime behind the horizon, Lecture 3
1:34:04
1:34:04
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1:34:04
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Kyriakos Papadodimas
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Holography in General Spacetimes: Quantum Null Energy Condition and Perspectives on Firewalls
1:41:05
1:41:05
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1:41:05
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Raphael Bousso
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Geometry under microscope, Lecture 2
1:42:16
1:42:16
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1:42:16
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Gia Dvali
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Quantum Completeness versus Classical Incompleteness of Black-Holes
2:05:04
2:05:04
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2:05:04
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Stefan Hofmann
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The fuzzball paradigm: 2. The fuzzball construction
1:29:33
1:29:33
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1:29:33
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Samir Mathur
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Geometry under microscope, Lecture 3
1:50:37
1:50:37
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1:50:37
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Gia Dvali
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The fuzzball paradigm: 3. The causality constraint
1:33:34
1:33:34
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1:33:34
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Samir Mathur
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The fuzzball paradigm: 1. The small corrections theorem
1:34:18
1:34:18
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1:34:18
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Samir Mathur
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Introduction to black hole informatics, Lecture 3
1:36:44
1:36:44
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1:36:44
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Larus Thorlacius
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Holography in General Spacetimes: Covariant Entropy Bound and Quantum Focussing
1:28:40
1:28:40
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1:28:40
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Raphael Bousso
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Black hole information and spacetime behind the horizon, Lecture 2
1:34:23
1:34:23
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1:34:23
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Kyriakos Papadodimas
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1
Geometry under microscope, Lecture 1
1:44:22
1:44:22
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1:44:22
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Gia Dvali
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1
Introduction to black hole informatics, Lecture 1
1:36:06
1:36:06
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1:36:06
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Larus Thorlacius
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Black hole information and spacetime behind the horizon, Lecture 1
1:36:18
1:36:18
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1:36:18
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Kyriakos Papadodimas
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1
Holography in General Spacetimes: The Bekenstein Bound
1:31:50
1:31:50
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1:31:50
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Raphael Bousso
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1
Introduction to black hole informatics, Lecture 2
1:35:40
1:35:40
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1:35:40
2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Larus Thorlacius
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2018 Arnold Sommerfeld School: Black Holes and Quantum InformationPar Raphael Bousso
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1
PEPS (mathematical aspects)
1:34:11
1:34:11
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1:34:11
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Norbert Schuch
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Quantum Monte Carlo methods, Lecture 2
1:24:29
1:24:29
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1:24:29
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Lode Pollet
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Projected entangled pair states (PEPS) (introduction)
1:42:39
1:42:39
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1:42:39
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Philippe Corboz
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Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 3
1:08:56
1:08:56
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1:08:56
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Olivier Parcollet
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Quantum Monte Carlo methods, Lecture 1
1:31:52
1:31:52
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1:31:52
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Lode Pollet
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Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 2
1:31:14
1:31:14
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1:31:14
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Olivier Parcollet
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DMRG in two dimensions
1:52:25
1:52:25
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1:52:25
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Steve White
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Matrix product states (MPS), Density matrix renormalization group (DMRG), Lecture 2
1:48:43
1:48:43
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1:48:43
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Ulrich Schollwöck
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Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 1
1:26:54
1:26:54
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1:26:54
2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsPar Olivier Parcollet
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