What in Physics?
Particle Physics
-
5:41
94
- 1 Statics: How to Use This Course Successfully Plus Book! 5:41
- 2 Statics: Lesson 1 – Intro and Newton’s Laws, Scalers, and Vectors 16:19
- 3 Statics: Lesson 2 – Vector Language, Intro to Vector Addition 12:58
- 4 Statics: Lesson 3 – The Triangle Rule for Adding Vectors to Find a Resultant 16:10
- 5 Statics: Lesson 4 – Cartesian Notation & Vector Addition Explained! 23:10
-
43:52
11
- 1 Four Fundamental Forces (Gravity, EM, Strong & Weak Nuclear Forces) 43:52
- 2 What are Antiparticles? | Dirac Hole Theory & more (Complete) 42:36
- 3 What are Neutrinos? – Neutrino Hypothesis, Properties, Handedness (Complete) 31:53
- 4 Parity Violation in Beta Decay (Wu Experiment) | Weak Interaction | EXPLAINED 37:50
- 5 Neutrino Oscillations & Solar Neutrino Problem ( Simply Explained) 19:08
-
1:37:17
9
- 1 Lecture 1 | New Revolutions in Particle Physics: Standard Model 1:37:17
- 2 Lecture 2 | New Revolutions in Particle Physics: Standard Model 1:38:29
- 3 Lecture 4 | New Revolutions in Particle Physics: Standard Model 1:41:32
- 4 Lecture 5 | New Revolutions in Particle Physics: Standard Model 1:34:42
- 5 Lecture 6 | New Revolutions in Particle Physics: Standard Model 1:32:38
-
1:10:17
44
- 1 Mod-01 Lec-01 Introduction 1:10:17
- 2 Mod-01 Lec-02 Properties of Nucleus 45:40
- 3 Mod-02 Lec-03 Nuclear Force – Properties 36:16
- 4 Mod-02 Lec-04 Deuteron 36:05
- 5 Mod-02 Lec-05 Nucleon Scattering 40:44
-
5:58
67
- 1 L0.1 Introduction to Nuclear and Particle Physics: Course Overview 5:58
- 2 L0.2 Introduction to Nuclear and Particle Physics: Course Organization 4:01
- 3 L0.3 Introduction to Nuclear and Particle Physics: Teaching Staff 4:24
- 4 L0.4 Introduction to Nuclear and Particle Physics: Literature 3:35
- 5 L0.5 Introduction: Early History and People in Nuclear and Particle Physics 16:01
-
1:20:46
19
- 1 Lecture 2 1:20:46
- 2 Lecture 3 1:25:42
- 3 Lecture 4 1:40:59
- 4 Lecture 5 1:34:18
- 5 Lecture 6 1:40:44
-
37:42
59
- 1 Lec 58 Quark parton model, summary of course 37:42
- 2 Lec 57 Deep inelastic scattering 34:38
- 3 Lec 56 Forward-backward asymmetry 32:56
- 4 Lec 55 Scattering without QFT 31:08
- 5 Lec 54 Dimensionality of time and particle decay 29:33
-
1:06:53
47
- 1 Jet Dependence of Charged Particles Production in pp Collision at LHC Energies || Physicist Hammad 1:06:53
- 2 0 9, 2 76, 5 02 TeV Multiplicity Origin Graph Plot Setting 18:51
- 3 Kaons Production (K⁺ K⁻) at √s = 13 TeV — CMS Simulation (HIJING), 7000 Events 5:06
- 4 7 TeV & 13 TeV Kaons Production Hijing Simulation at 40000 & 600 Events Jet 0,1,2 | Physicist Hammad 16:09
- 5 Kaons Simulation At Energies 0.9, 2.76 TeV – Multiplicity, Pseudo rapidity, and Transverse Momentum 24:24