100 WVIA Way
Pittston, PA 18640

Phone: 570-826-6144
Fax: 570-655-1180

Copyright © 2025 WVIA, all rights reserved. WVIA is a 501(c)(3) not-for-profit organization.
Play Live Radio
Next Up:
0:00
0:00
0:00 0:00
Available On Air Stations

Quantum Invariance & The Origin of The Standard Model

Season 4 Episode 31 | 11m 10s

Our laws of physics are equations of motion, along with some associated constants. We’ve talked about the symmetries of these equations, and how they lead us to conserved quantities. But this is just the tip of the theoretical iceberg - sometimes investigating the symmetries of these equations predicts entirely new physics. The standard model of particle physics is a remarkable example.

Aired: 07/10/18
Extras
The universe thrums with quantum fields, except something may be missing: the sterile neutrino.
Gravitons, the particle of quantum gravity, may be impossible to detect.
We go in depth on black holes: the strangest objects in the universe!
2025 was the international year of quantum science, but today we examine its origins.
We’ve found lots of “habitable” worlds but we don’t know what factors are needed for life.
What is the graviton, and does it even exist?
Does quantum mechanics allow the future to retroactively influence the past or not?
Antimatter drives sound like science fiction, but they may not be as far as you think.
Life on mars could result in humanity’s destruction via Fermi Paradox.
How to build a particle collider the size of the solar system.
Latest Episodes
All
  • All
  • PBS Space Time Season 11
  • PBS Space Time Season 10
  • PBS Space Time Season 9
  • PBS Space Time Season 8
  • PBS Space Time Season 7
  • PBS Space Time Season 6
  • PBS Space Time Season 5
  • PBS Space Time Season 4
  • PBS Space Time Season 3
  • PBS Space Time Season 2
  • PBS Space Time Season 1
The universe thrums with quantum fields, except something may be missing: the sterile neutrino.
Gravitons, the particle of quantum gravity, may be impossible to detect.
2025 was the international year of quantum science, but today we examine its origins.
We’ve found lots of “habitable” worlds but we don’t know what factors are needed for life.
What is the graviton, and does it even exist?
Does quantum mechanics allow the future to retroactively influence the past or not?
Antimatter drives sound like science fiction, but they may not be as far as you think.
Life on mars could result in humanity’s destruction via Fermi Paradox.
How to build a particle collider the size of the solar system.
One of the most important reasons we go to space is to know our own planet better.