#Theoretical Physicist

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#Theoretical Physicist Reel by @davide.debiasio (verified account) - ✨🤔🚀 How can I become a theoretical physicist?

❓🎙💡 Since I've started working in science communication, there is no question I have received more
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@davide.debiasio
✨🤔🚀 How can I become a theoretical physicist? ❓🎙💡 Since I’ve started working in science communication, there is no question I have received more often. 👩🏽‍🏫📐🔬 Learning physics requires going through some standard, universal, and inevitable topics. One must start with mathematics and proceed almost chronologically, studying the theories and experiments that have expanded our understanding of the world from Newton onwards. 📚💻📖 Books, I don’t deny it, are very expensive, but there are countless online resources, courses, lecture notes, and workbooks that are as good as the most exclusive tomes! ☝🏻🧠🌌 Tell me: have you already started exploring some physics? How is it going? #physics #quantum #spacetime
#Theoretical Physicist Reel by @latino.physicist (verified account) - Cool fundamental physics applications! #physics #nasa #engineering #research #astronomy
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@latino.physicist
Cool fundamental physics applications! #physics #nasa #engineering #research #astronomy
#Theoretical Physicist Reel by @victoriaporozova (verified account) - ER=EPR: Quantum Connection to Wormholes 
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What if wormholes and quantum entanglement were two sides of the same coin? That's the bold idea behind ER=
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@victoriaporozova
ER=EPR: Quantum Connection to Wormholes ⠀ What if wormholes and quantum entanglement were two sides of the same coin? That’s the bold idea behind ER=EPR, a conjecture by Leonard Susskind and Juan Maldacena that bridges General Relativity and Quantum Mechanics arxiv:1306.0533v2 ⠀ 🔗 ER (Einstein-Rosen bridges): These are wormholes—spacetime tunnels connecting two distant regions. Described by Einstein and Rosen in 1935, they’re non-traversable, meaning no signals or matter can pass through. ⠀ 🔗 EPR (Einstein-Podolsky-Rosen pairs): These are quantum entangled particles. When two particles are entangled, measuring one instantly determines the state of the other, no matter how far apart they are. ⠀ The ER=EPR conjecture: Wormholes are the geometric manifestation of quantum entanglement. In other words, every entangled pair is connected by a tiny wormhole! ⠀ What Does This Mean? ER=EPR suggests that spacetime itself might emerge from quantum entanglement. It connects two pillars of physics: the geometry of General Relativity and the quantum information of entanglement. ⠀ ✨ Why It’s Important: 1. Spacetime from Entanglement: ER=EPR hints that the fabric of spacetime could be built from quantum connections. 2. Black Hole Insights: It sheds light on black hole interiors, Hawking radiation, and information retrieval. 3. Quantum Gravity: This conjecture moves us closer to unifying Quantum Mechanics and General Relativity. ⠀ ER=EPR transforms our understanding of the universe, showing that entanglement might literally hold spacetime together. What excites you most about this idea? Let me know below! ⠀ #quantum #physics #science #quantumentanglement #wormhole #blackhole #quantumgravity #generalrelativity #fyp #einstein #susskind #scienceexplained #theoreticalphysics #quantumphysics #entanglement #theoreticalphysicist #victoriaporozova #vquantpost
#Theoretical Physicist Reel by @instituteforadvancedstudy - Observations indicate that significant magnetic fields are ubiquitous throughout the Universe. However, the process by which these magnetic fields wer
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@instituteforadvancedstudy
Observations indicate that significant magnetic fields are ubiquitous throughout the Universe. However, the process by which these magnetic fields were created, known as “magnetogenesis,” remains a profound mystery.   It is generally accepted that for magnetogenesis to occur, two ingredients are required. First, there must be a weak “seed” magnetic field. Second, this field must be amplified to present-day levels by a process known as a “dynamo”: a turbulent flow of astrophysical plasma, which converts the plasma’s kinetic energy into magnetic energy.   While previous work studied these two components separately, Muni Zhou, Member in the School of Natural Sciences, has worked alongside her collaborators to develop a unified analytical theory and a first-principles numerical demonstration of the generation, amplification, and sustenance of magnetic fields. Their work, summarized by Zhou on this blackboard, demonstrates that in initially unmagnetized plasma, large-scale astrophysical flows both create microscopic seed fields that magnetize the plasma, and amplify them to dynamical strength.   This represents a fully self-consistent explanation of cosmic magnetogenesis, which can be further investigated by upcoming radio telescopes such as the Square Kilometer Array.   #Astrophysics #Astro #Astronomy #Astronomer #Physics #ScienceCommunication #SciCommunity #SciComm #ScientistsOfInstagram #ScientistLife #AlbertEinstein #TheoreticalPhysics #TheoreticalPhysicist #PhysicsOfTheUniverse #PhysicsQuestions #PhysicsProblems #PhysicsEquations #PhysicsPaper #PhysicsNotes #AcademicLife #AcademicChatter #Astronomia #MagneticField #PlasmaPhysics #SpaceLovers
#Theoretical Physicist Reel by @thequantumbrief - Richard Phillips Feynman was an American theoretical physicist. He is best known for his work in the path integral formulation of quantum mechanics, t
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@thequantumbrief
Richard Phillips Feynman was an American theoretical physicist. He is best known for his work in the path integral formulation of quantum mechanics, the theory of quantum electrodynamics, the physics of the superfluidity of supercooled liquid helium, and in particle physics, for which he proposed the parton model. For his contributions to the development of quantum electrodynamics, Feynman received the Nobel Prize in Physics in 1965 jointly with Julian Schwinger and Shin'ichirō Tomonaga.
#Theoretical Physicist Reel by @yournormalphysicist - I did work on these equations for 9 months 🤷🏻‍♀️ and I'm proud of them 🤓 

I published this paper with my advisor when I was a masters student @san
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@yournormalphysicist
I did work on these equations for 9 months 🤷🏻‍♀️ and I’m proud of them 🤓 I published this paper with my advisor when I was a masters student @sanfranciscostate . At the time I wasn’t an Astrophysicist student. I was working on Theoretical High Energy Physics📝 In case you were wondering, it is possible to work in a different field for your masters and get accepted for a different field for a PhD program! #Physics #TheoreticalPhysics #Feynman #Published #FemalePhysicist #YouCanDoIt #WomenInPhysics #ScienceGirl #Math #PublishedScientist #Scientist #FemaleScientist #GirlScientist #Baby #HardWork #MondayMotivation #FunnyReels #PhysicsReels #Research #Phd #GradLife #Astrophysics #Cern #nasa #space #ScienceLovers #Einstein #IndianPhysicist #Scicomm #Scicommunity
#Theoretical Physicist Reel by @academic_avengers - Quantum Mechanics for Kids

Quantum Mechanics is a weird theory, but it's the one that actually matches how reality works. 

#quantummechanics #quantu
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@academic_avengers
Quantum Mechanics for Kids Quantum Mechanics is a weird theory, but it’s the one that actually matches how reality works. #quantummechanics #quantumphysics #scienceforkids #stem #education #scienceexplained #physics
#Theoretical Physicist Reel by @_sergionunez_s - Enamorado de la física teórica

#physics #fisica #math #matematica #theoreticalphysics #fisicateorica
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@_sergionunez_s
Enamorado de la física teórica #physics #fisica #math #matematica #theoreticalphysics #fisicateorica
#Theoretical Physicist Reel by @nonstandardmodels - Are you ready to explore quantum field theory? Before taking on harder topics in physics you need to be comfortable with basic math and classical phys
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@nonstandardmodels
Are you ready to explore quantum field theory? Before taking on harder topics in physics you need to be comfortable with basic math and classical physics: mechanics, thermodynamics, electromagnetism! Then we can delve into the prerequisites for QFT: Special relativity (e.g. Carroll, Wald) Quantum Mechanics (e.g. Sakurai, Griffiths) Classical field theory (e.g. Landau Lifschitz) QFT is at the core of all modern theoretical physics and, as such, different physicists may have different ideas on the required knowledge of QFT depending on the specific subfield of theoretical physics they work in! A good starting point might be visiting this website created by Nobel prize winner Gerard ‘t Hooft: https://www.goodtheorist.science/languages.html If you find yourself lacking the mathematical background, some good books to help you for studying theoretical physics are: Lie algebras in particle physics (Georgi) Complex analysis (Bak or Silverman) Geometry, topology, and physics (Nakahara) #textbooks #physicsbooks #physicstexts #physicsstudent #study #undergrad #physics #quantumtheory #quantumfield
#Theoretical Physicist Reel by @thequantumbrief - Yale physics professor Ramamurti Shankar is known for making difficult subjects, including quantum mechanics, easier to understand.

His approach focu
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@thequantumbrief
Yale physics professor Ramamurti Shankar is known for making difficult subjects, including quantum mechanics, easier to understand. His approach focuses on clarity rather than presentation. He starts from basic principles, defines terms carefully, and builds ideas step by step before moving to advanced concepts. This method is reflected in his Open Yale Courses lecture series, which has been widely used by students and self-learners worldwide. The lectures emphasize logical structure and gradual progression, helping viewers follow topics that are often considered inaccessible. His work shows that for complex subjects, clear organization and precise explanations can matter more than simplified shortcuts. Credit: https://m.youtube.com/@YaleCourses
#Theoretical Physicist Reel by @equationsinmotion - When Math Equations Create Infinite Beauty!

Dive into the mesmerizing world of chaos theory with this stunning visualization of the Rössler Attractor
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@equationsinmotion
When Math Equations Create Infinite Beauty! Dive into the mesmerizing world of chaos theory with this stunning visualization of the Rössler Attractor. This system of three non-linear ordinary differential equations creates a unique fractal-like shape that never repeats. In this video, we explore the intricate beauty of mathematical dynamics as the attractor rotates in 3D space. Perfect for math enthusiasts, students, and anyone fascinated by the intersection of science and art. We showcase the specific equations that govern this chaotic system, demonstrating how small changes in initial parameters lead to complex, beautiful outcomes in this classic example of dynamical systems. #chaostheory #mathematics #rosslerattractor #physics #manim
#Theoretical Physicist Reel by @qubit.quest - Paul Dirac in an interview explaining how mathematics contributes in physical discoveries and how the discovery of the positron relates
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@qubit.quest
Paul Dirac in an interview explaining how mathematics contributes in physical discoveries and how the discovery of the positron relates . . . #explore #reels #physics #discovery #history

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