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1
Intro
2
Personal Legacy
3
Cultural Legacy
4
Brief History of Time
5
Early Life
6
Cambridge
7
General Relativity
8
Original Theory of Gravity
9
Special Relativity
10
Escape Velocity
11
Theory of General Relativity
12
Spacetime
13
Einstein Field Equations
14
Schwartz Field
15
The Singularity
16
The Event Horizon
17
The Big Controversy
18
The New Way of Thinking
19
Topology
20
Conditions
21
Big Bang
22
The Singularity Theorems
23
Gravitational Waves
24
Exact Solutions
25
Event Horizon
26
Entropy
27
Second Law of Thermodynamics
28
Einsteins Analogy
29
The Laws of Black Hole Thermodynamics
30
The Second Law of Thermodynamics
31
Particle Creation by Black Holes
32
Hawking Radiation Equation
33
Black Hole Information Paradox
34
Black Hole Radiation
35
Gravity
36
String Theory
Description:
Explore the legacy of Stephen Hawking and the potential for reconciling quantum mechanics with general relativity in this thought-provoking lecture. Delve into the strange physics of black holes, where space and time are distorted, and examine how this understanding may contribute to solving the longstanding problem of unifying theories about the very small and very large. Investigate whether our current understanding of the laws of physics is complete and consider the prospects for achieving this crucial reconciliation in the near future. Learn about Hawking's personal and cultural impact, his groundbreaking work on black holes, and the development of key concepts such as Hawking radiation and the black hole information paradox. Trace the evolution of gravitational theories from Newton to Einstein, and examine the implications of general relativity, spacetime, and the nature of singularities. Discover how Hawking's work connects to broader topics in physics, including the Big Bang, gravitational waves, and string theory, while pondering the future directions of theoretical physics research. Read more

The Legacy of Stephen Hawking - Black Holes and the Great Reconciliation

University of Melbourne
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