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Jul 2026

Why locality fails Private by default
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Jun 2026

Richard Fineman California Institute of Technology works citations h-index i10-index Quantum electrodynamicsPath integralsParticle physicsQuantum computing
36 contributions this year
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Jun 2026

What does the three-body problem teach us?

Lagrange's reduction turns a wall of ODEs into one question about symmetry.

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Jun 2026

Alex Morgan Computational biology · Stanford Follow
A unified model of protein folding kinetics M. Rossi, L. Chen +2 · Nature Methods · 2024 Recommended by you · 312 researchers Recommended
Recommended 24 papers On your profile
Attention is all you need A. Vaswani +7 · 2017
Deep residual learning for image recognition K. He +3 · 2015
Auto-encoding variational Bayes D. P. Kingma, M. Welling · 2013

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Jun 2026

An introduction to the classical three-body problem

5. Restricted three-body problem

The restricted three-body problem is a simplified version where one of the masses m₃ is assumed much smaller than the primaries m₁ and m₂. In the planar circular case, the primaries move in fixed circular orbits around their common CM with angular speed given by Kepler's third law. This system has 2 degrees of freedom associated to the planar motion of m₃, and therefore a 4-dimensional phase space just like the planar Kepler problem.

E = ½m₃ṙ² + ½m₃r²φ̇² − Gm₃(m₁/r₁ + m₂/r₂) ≡ T + Veff   (15)

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Apr 2026

5h

Does the 18 → 7 reduction still hold once you add a weak drag term?

1/3 replies
12m

@Lena Ortizran it numerically - the reduction survives to first order in the drag term.

1/1 replies

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Feb 2026

Access requests Foundations of Quantum Mechanics 2 pending
AC Alex Chen requested access alex.chen@physics.edu · 2h ago Can comment Decline Approve
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Feb 2026

Jan 2026

Collections
Filter Status Source
Bio204: Intro to Biophysics 48
Reading List 12
Lecture Notes 9
Membrane Dynamics 4
Protein Folding & Kinetics 7
Ion Channels & Transport 6
Working Drafts 3
Key Papers 21

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Dec 2025

Library 24 papers Synced
Denoising Diffusion Probabilistic Models J. Ho, A. Jain, P. Abbeel · 25 pages New
Attention Is All You Need A. Vaswani, N. Shazeer +6 · 15 pages 62% 12 min left Reading Now
Deep Residual Learning for Image Recognition K. He, X. Zhang +2 · 12 pages Finished
Language Models are Few-Shot Learners T. B. Brown, B. Mann +29 · 75 pages Read Soon

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Nov 2025

The New Math of How Cells Read Their Own DNA

quantamagazine.org Natalie Wolchover 9 min

The New Math of How Cells Read Their Own DNA

For decades biologists pictured the genome as a script read straight through. Imaging tells a looser story: cells decide which genes to transcribe on the fly — not a continuous scan but gated bursts.

Those windows cluster when the cell is ready, then go quiet again — a rhythm the old continuous-scan picture never predicted. Live recordings from single nuclei show polymerase arriving in short pulses, then vanishing before the next wave begins.

Ac
Note

Pull the burst-timing dataset for the intro.

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Oct 2025

Share Space Applied Physics I · 34 papers
aisha.okoro@ethz.ch Commenter Invite
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Sep 2025

Inbox Across 5 papers in your library 4 unread
The three-body problem 3 unread
PN
Priya Nair 2h

@curie does the 18 → 7 reduction still hold once we add a weak drag term?

Curie 6m

Only the Jacobi integral survives, so the planar problem stays non-integrable.

See 2 more replies
Symplectic integrators for Hamiltonian dynamics 1 unread
MO
Marcus Okafor 5h

The reduction from 18 to 6 equations is the cleanest symmetry argument in the whole derivation.

3 2 replies

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Aug 2025

5. Restricted three-body problem

The restricted three-body problem is a simplified version of the three-body problem where one of the masses m₃ is assumed much smaller than the primaries m₁ and m₂. Thus, m₁ and m₂ move in Keplerian orbits which are not affected by m₃. The Sun-Earth-Moon system provides an example where we further have m₂ ≪ m₁. In the planar circular restricted three-body problem, the primaries move in fixed circular orbits around their common CM with angular speed Ω given by Kepler’s third law, and m₃ moves in the same plane as m₁ and m₂. Here, d is the separation between primaries. This system has 2 degrees of freedom associated to the planar motion of m₃, and therefore a 4-dimensional phase space just like the planar Kepler problem for the reduced mass. However, unlike the latter, which has three conserved quantities and is exactly solvable, the planar restricted three-body problem has only one known conserved quantity, the ‘Jacobi integral’, which is the energy of m₃ in the co-rotating frame of the primaries.

E = ½m₃ṙ² + ½m₃r²φ̇² − Gm₃(m₁/r₁ + m₂/r₂) ≡ T + Veff   (15)

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Jul 2025

Jun 2025

Feeds Following For you
circadian-rhythm LLMs protein-folding add
LF Dr. Lena Fischer · shared to your feed
Circadian control of hippocampal memory consolidation
Fischer, Adeyemi · Nat. Neuroscience circadian-rhythm
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Emergent abilities and scaling laws in language models
Wei, Tay +6 · arXiv LLMs

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Jun 2025

Jun 2025

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