Quantum Entanglement and the Illusion of Time
Quantum Entanglement and the Illusion of Time in 79 minutes | Jim Al-Khalili: The full interview Time seems obvious, but physics tells a stranger story about its existence: theoretical physicist Jim Al-Khalili explores why our sense of time can be incredibly deceptive, including the idea that the past, present, and future can exist simultaneously. Donate: https://pay.cloudtips.ru/p/ea315feb MAX: https://max.ru/join/jZ0EqR0vxTNtGco2mHDBR4m6J2KSZAFEZ8C5F2haxrM X: https://x.com/wiser_mind 0:04 Chapter 1. Does time flow? 2:46 Why does time seem faster with age 4:00 Time and changes in philosophy and physics 5:32 Einstein and the end of absolute time 6:23 Time in the equations of physics 7:54 Chapter 2. How can we reconcile quantum field theory with general relativity? 12:14 p.m. Evidence of time dilation: Muons 14:33 Gravity slows down time: General theory of Relativity 19:26 Space-time and the block Universe 21:59 Does time really exist? 26:37 Discussion: Eternalism versus Presentism 34:16 Chapter 3: Does “Now" Exist? 40:44 Chapter 4: Why does Thermodynamics have a direction in Time? 49:42 Quantum entanglement and the direction of Time 55:14 Did time begin with the Big Bang? 45:04 Is the time running out? 1:05:44 Chapter 5. Is time travel possible? About Jim Al-Khalili: Jim is an award-winning scientist in the field of scientific communication, known for his active social activities around the world through writing articles and broadcasting, as well as a leading scientist who has made fundamental contributions to theoretical physics, especially the theory of nuclear reactions, quantum effects in biology, open quantum systems and the foundations of quantum mechanics. Jim is a theoretical physicist at the University of Surrey, where he heads the Department of Physics, as well as the university's Department of Public Engagement in Science. In 1989, he defended his doctoral thesis on the theory of nuclear reactions and has numerous publications in this field. He is currently interested in open quantum systems and the application of quantum mechanics in biology.
Quantum Entanglement and the Illusion of Time in 79 minutes | Jim Al-Khalili: The full interview Time seems obvious, but physics tells a stranger story about its existence: theoretical physicist Jim Al-Khalili explores why our sense of time can be incredibly deceptive, including the idea that the past, present, and future can exist simultaneously. Donate: https://pay.cloudtips.ru/p/ea315feb MAX: https://max.ru/join/jZ0EqR0vxTNtGco2mHDBR4m6J2KSZAFEZ8C5F2haxrM X: https://x.com/wiser_mind 0:04 Chapter 1. Does time flow? 2:46 Why does time seem faster with age 4:00 Time and changes in philosophy and physics 5:32 Einstein and the end of absolute time 6:23 Time in the equations of physics 7:54 Chapter 2. How can we reconcile quantum field theory with general relativity? 12:14 p.m. Evidence of time dilation: Muons 14:33 Gravity slows down time: General theory of Relativity 19:26 Space-time and the block Universe 21:59 Does time really exist? 26:37 Discussion: Eternalism versus Presentism 34:16 Chapter 3: Does “Now" Exist? 40:44 Chapter 4: Why does Thermodynamics have a direction in Time? 49:42 Quantum entanglement and the direction of Time 55:14 Did time begin with the Big Bang? 45:04 Is the time running out? 1:05:44 Chapter 5. Is time travel possible? About Jim Al-Khalili: Jim is an award-winning scientist in the field of scientific communication, known for his active social activities around the world through writing articles and broadcasting, as well as a leading scientist who has made fundamental contributions to theoretical physics, especially the theory of nuclear reactions, quantum effects in biology, open quantum systems and the foundations of quantum mechanics. Jim is a theoretical physicist at the University of Surrey, where he heads the Department of Physics, as well as the university's Department of Public Engagement in Science. In 1989, he defended his doctoral thesis on the theory of nuclear reactions and has numerous publications in this field. He is currently interested in open quantum systems and the application of quantum mechanics in biology.
