Fundamental vs. Composite Particles and the Standard Model - IB Physics

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I was not emotionally prepared for this

carolineboyden
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wow. And just like that it's over. thank you Sir Andy, it's been a pleasure

antonissak
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Thank you so much for the dozens of fast past, yet comprehensive videos you've put out with such high quality presentations, you've already done so much. However, it would be even more awesome if you could finish off the last few subtopics for 7 and 8 for students in the upcoming years. But again, you have been super helpful during my education of IB physics so thank you so much.

torstenjacobi
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despite the warning, i was not emotionally ready

piavodusek
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I am from India, But today I got answers of question that everyone get success if they have teacher like you.God bless me that I got your video to clear my concept.Please keep going on.

jaykolhe
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Many thanks and appreciation for the fabulous presentation .I hope to complete the remaining part of the topic 7 ( Feynman Diagrams)
I really benefited greatly from the wonderful representation ... Thank you so much

MohsenmohamedAminhafezKhalifa
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When will the future videos be coming?? These are honestly the best IB physics videos I have found and have never understood nuclear physics better. Hope you make them soon! They are really really helpful

sohamkatewale
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4 days left before Paper 1! Thank you for this but im so mad that there arent any HL 😭

m.mounR
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Amazing Standard Model Chart! So awesome to see everything at a glance. Do you mind doing a video on the Feynman Diagrams?

shamelsinha
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thanks for the lesson. Hopefully u will release the next video soon. well done Sir.

Life-zeno
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Might be a dumb question, but what exactly am i supposed to memorize, if everything is written on the formula booklet?

zaidabbadi
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thank you very much, is there also a lecture about Feynman diagrams?

emrecesco
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Hi! Will you be having a video on Feynman diagrams :(

beanbean
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Amazing explanation, thank you so much:)

candyqvq
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Quark Quark Quark QuArk QUaRK QUark QUARK QUARK QUARK

smurfwarrior
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You should include how the Lagrangian in non-Abelian Lie renormalisation groups build up the standard model U(1) X SU(1) X SU(2). Particles are excitations of their respective quantum fields, with quantum chromodynamical colour confinement due to the beta function. Loop quantum gravity does not predict gravitons, a fault, which is something to be mentioned. Gravitons in heterotic string theory and n=8 supergravity models are important which is most symmetric with non-pointlike particles. Yang-Mills mass gap in the particle spectrum is significant as well, with the extension of the 5 dimensional Kaluza-Klein theory.

badmintongo