eigenchris

eigenchris

Views:
9,814,027
Subscribers:
153,000
Videos:
144
Duration:
1:23:32:45

eigenchris is a content creator on YouTube with over 153 thousand subscribers, with his content totaling at least 9.81 million views views across 144 videos.

Created on ● Channel Link: https://www.youtube.com/channel/UCN8wTUlSAroLslWyf87E2pw





Top 100 Videos With The Most Comments by eigenchris


Video TitleCommentsCategoryGame
1.What Is Momentum? (joke video)1,587
2.Learn Topology in 5 minutes (joke video)1,183
3.Why Sabine Hossenfelder's video on transgender teens is misleading1,092
4.What Is Voltage? (joke video)1,048
5.Spinors for Beginners 1: Introduction (Overview +Table of Contents for video series)393
6.Tensors for Beginners 0: Tensor Definition354
7.Tensors for Beginners 4: What are Covectors?303
8.BoJack Horseman - Season 1 Episode 7 ("Say Anything") Ending - Impossible by Oli Deakin / Lyla Foy289Show
9.BoJack Horseman Season 2 Episode 10 Ending283Show
10.Doing the World's Hardest Integral (joke video)270
11.Tensors for Beginners 16: Raising/Lowering Indexes (with motivation, sharp + flat operators)265
12.Relativity 105a: Acceleration - Hyperbolic Motion and Rindler Horizon262
13.Tensor Calculus 20: The Abstract Covariant Derivative (Levi-Civita Connection)256
14.What is Quantum Mechanics? (joke video)252
15.Relativity 107b: General Relativity Basics - Manifolds, Covariant Derivative, Geodesics248
16.Tensors for Beginners 9: The Metric Tensor242
17.Tensors for Beginners 5: Covector Components (Contains diagram error; see description)241
18.Tensor Calculus 22: Riemann Curvature Tensor Geometric Meaning (Holonomy + Geodesic Deviation)233
19.Tensor Calculus 15: Geodesics and Christoffel Symbols (extrinsic geometry)232
20.Tensor Calculus 18: Covariant Derivative (extrinsic) and Parallel Transport223
21.Relativity 105d: Acceleration - Twin Paradox and Proper Time Along Curves (Rindler Metric)220
22.Tensor Calculus 12: The Metric Tensor in Curved Spaces for Measuring Arc Length205
23.Tensor Calculus 21: Lie Bracket, Flow, Torsion Tensor (contains error; see pinned comment)203
24.Relativity 107a: General Relativity Basics - Equivalence Principle and Proper Acceleration192
25.Tensor Calculus 24: Ricci Tensor Geometric Meaning (Sectional Curvature)182
26.Tensors for Beginners 8: Linear Map Transformation Rules174
27.Relativity 108b: Schwarzschild Metric - Interpretation (Gravitational Time Dilation, Event Horizon)174
28.Relativity 108c: Schwarzschild Metric - Geodesics (Mercury perihelion advance, photon sphere)168
29.Relativity 105b: Acceleration - Bell's Spaceship Paradox and Rindler Coordinates167
30.Tensors For Beginners (-1): Motivation163
31.Relativity 108a: Schwarzschild Metric - Derivation162
32.Tensor Calculus 26 - Ricci Tensor/Scalar Properties159
33.Relativity 104e: Special Relativity - Spacetime Interval and Minkowski Metric158
34.Tensors for Beginners 6: Covector Transformation Rules148
35.Relativity 107e: General Relativity Basics - Stress-Energy-Momentum Tensor148
36.Tensor Calculus 0: Introduction147
37.Relativity 107d: General Relativity Basics - Curved Spacetime for Newtonian Gravity (Newton Cartan)144
38.Tensor Calculus 13: Gradient vs "d" operator (exterior derivative/differential)144
39.Relativity 107f: General Relativity Basics - Einstein Field Equation Derivation (w/ sign convention)142
40.BoJack Horseman - Todd Hooray Supercut141
41.Tensors for Beginners 2: Vector definition140
42.Tensors for Beginners 3: Vector Transformation Rules139
43.eigenchris's Math/Physics YouTube Channel Recommendations134
44.Spinors for Beginners 9: Pauli Spinors vs Weyl Spinors vs Dirac Spinors134
45.Spinors for Beginners 11: What is a Clifford Algebra? (and Geometric, Grassmann, Exterior Algebras)134
46.Tensor Calculus 3: The Jacobian133
47.Tensor Calculus 19: Covariant Derivative (Intrinsic) and Geodesics133
48.Spinors for Beginners 2: Jones Vectors and Light Polarization132
49.Tensor Calculus 16: Geodesic Examples on Plane and Sphere131
50.Relativity 104a: Special Relativity - Lorentz Transformation Geometry (no equations)131Relativity
51.Relativity 104f: Special Relativity - Relativistic Dynamics and 4-Vectors (E=mc^2)131
52.Tensor Calculus 17: The Covariant Derivative (flat space)128
53.Relativity 110f: Cosmology - Friedmann Equations Derivation + Universe Evolution Models (FINALE)128Vlog
54.Tensors for Relativity Explained in 1 Minute (#VeritasiumContest)127
55.Relativity 107c: General Relativity Basics - Curvature, Riemann Tensor, Ricci Tensor, Ricci Scalar124
56.Relativity 101b: Introduction to Special Relativity121Relativity
57.Spinors for Beginners 4: Quantum Spin States (Stern-Gerlach Experiment)121
58.Tensor Calculus 10: Integration with Differential Forms Examples121
59.Relativity 104b: Special Relativity - Lorentz Transform Equations Derivation118Relativity
60.Spinors for Beginners 18: Irreducible Representations of SU(2) (Ladder Operators)117
61.Tensor Calculus 6: Differential Forms are Covectors114
62.Relativity 108e: Schwarzschild Metric - Gravitational Redshift / Blueshift (via covector fields)112
63.Relativity 101a: Introduction to Galilean Relativity112Relativity
64.Tensor Calculus 23: Riemann Curvature Tensor Components and Symmetries111
65.Tensors for Beginners 12: Bilinear Forms are Covector-Covector pairs109
66.Tensors for Beginners 15: Tensor Product Spaces108
67.Tensor Calculus 25 - Geometric Meaning Ricci Tensor/Scalar (Volume Form)107
68.Relativity 105f: Acceleration - Geodesics, Curved Light Beams (Rindler Coordinates)107
69.Relativity 105c: Acceleration - The Jacobian (changing basis in curvilinear Rindler coordinates)105
70.Relativity 108d: Schwazrschild Metric - Eddington-Finkelstein, Kruskal-Szekeres, White/Wormholes104
71.Relativity 104c: Special Relativity - Time Dilation and Length Contraction Geometry103Relativity
72.Relativity 106a: Tensors - Frequency Wave Covectors and Doppler Shift (with accelerating frames)102
73.Relativity 103e: Galilean Relativity - The problems with Galilean Relativity99Relativity
74.Tensors for Beginners 7: Linear Maps98
75.Tensor Calculus 7: Covector Field Components97
76.my greatest mistake...95
77.Spinors for Beginners 10: SU(2) double covers SO(3) [ SL(2,C) double covers SO+(1,3) ]94
78.Relativity 110e: Cosmology - Perfect Fluids, Cosmic Rest Frame, Equation of State94Vlog
79.Spinors for Beginners 13: Ideals and Projectors (Idempotents)91
80.Relativity 110a: Cosmology - Introduction to Modern Cosmology91Vlog
81.Tensors for Beginners 14: Tensors are general vector/covector combinations90
82.Tensor Calculus 9: Integration with Differential Forms89
83.Spinors for Beginners 5: The Flagpole and Complex Projective Line (CP1)87
84.Tensor Calculus 4: Derivatives are Vectors85
85.Spinors for Beginners 22: Dirac Equation and Gamma Matrices Deep Dive (+ chirality)84
86.Tensors for Beginners 10: Bilinear Forms84
87.Spinors for Beginners 16: Lie Groups and Lie Algebras83
88.BoJack Horseman - Gun Sounds Scene (brrap brrap pew pew)82
89.Relativity 109c: Gravitational Waves - Wave Derivation (The Lorenz Gauge)82
90.Tensor Calculus 5.1: Derivative Operators are Vectors Discussion82Discussion
91.Spinors for Beginners 7: Square Root of a Vector (factoring vector into spinors)82
92.Relativity 103d: Galilean Relativity - Euclidean Metric Tensor80
93.Introduction to Mathematics of Spinors (from a self-learner)79
94.Tensors for Beginners 11: Linear maps are Vector-Covector Pairs79
95.Tensor Calculus 2: Cartesian/Polar Coordinates, and Basis Vectors79
96.Tensor Calculus 17.5: Covariant Derivative (Component Definition) - Optional76
97.Spinors for Beginners 6: Pauli Vectors and Pauli Matrices75
98.Relativity 109b: Gravitational Waves - Linearized Gravity / Weak Gravity75Gravity
99.Relativity 102b: Keys to Relativity - Covariance and Contravariance73Relativity
100.Spinors for Beginners 20: Lorentz Group / Algebra Representation Theory73