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S8 Ep183: s of the Hubble Constant — Bob Zimmerman — Zimmerman outlines a fundamental crisis in cosmological understanding regarding the Hubble constant, the astronomical parameter measuring the rate at which the universe is systematically expanding acros

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Content provided by Audioboom and John Batchelor. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Audioboom and John Batchelor or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://podcastplayer.com/legal.
s of the Hubble ConstantBob ZimmermanZimmerman outlines a fundamental crisis in cosmological understanding regarding the Hubble constant, the astronomical parameter measuring the rate at which the universe is systematically expanding across time and space. Zimmerman documents that the measurement crisis stems from irreducible conflicting empirical data: when astronomers measure the early universe using distant supernovae and cosmic microwave background radiation, they derive a lower expansion rate number, yet when they measure the near universeusing contemporary observations of local galactic clusters, they derive a significantly higher expansion rate number. Zimmerman emphasizes that this discrepancy does not result from imprecise or unreliable data; rather, both measurement methodologies have become increasingly sophisticated and accurate, yet the fundamental contradiction persists despite technological improvements. Zimmerman argues that the persistent contradiction between two highly accurate but incompatible numerical values indicates that "something is fundamentally wrong with the cosmology and the theories," suggesting that current scientific understanding of the Big Bang, cosmic evolution, and the universe's fundamental physical properties contains critical errors requiring radical theoretical revision. Zimmerman employs an analogy: if measuring a child's growth rate during their first year of life predicted they should be 4 feet tall, but contemporary measurement reveals them to be 5 feet tall, and both measurements are perfectly accurate, then the mathematical formula governing human growth is fundamentally flawed—similarly, the Hubble constant contradiction suggests current cosmological models misunderstand the universe's fundamental physics and evolutionary trajectory.
AUGUST 1958
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52964 episodes

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Manage episode 523631433 series 96788
Content provided by Audioboom and John Batchelor. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Audioboom and John Batchelor or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://podcastplayer.com/legal.
s of the Hubble ConstantBob ZimmermanZimmerman outlines a fundamental crisis in cosmological understanding regarding the Hubble constant, the astronomical parameter measuring the rate at which the universe is systematically expanding across time and space. Zimmerman documents that the measurement crisis stems from irreducible conflicting empirical data: when astronomers measure the early universe using distant supernovae and cosmic microwave background radiation, they derive a lower expansion rate number, yet when they measure the near universeusing contemporary observations of local galactic clusters, they derive a significantly higher expansion rate number. Zimmerman emphasizes that this discrepancy does not result from imprecise or unreliable data; rather, both measurement methodologies have become increasingly sophisticated and accurate, yet the fundamental contradiction persists despite technological improvements. Zimmerman argues that the persistent contradiction between two highly accurate but incompatible numerical values indicates that "something is fundamentally wrong with the cosmology and the theories," suggesting that current scientific understanding of the Big Bang, cosmic evolution, and the universe's fundamental physical properties contains critical errors requiring radical theoretical revision. Zimmerman employs an analogy: if measuring a child's growth rate during their first year of life predicted they should be 4 feet tall, but contemporary measurement reveals them to be 5 feet tall, and both measurements are perfectly accurate, then the mathematical formula governing human growth is fundamentally flawed—similarly, the Hubble constant contradiction suggests current cosmological models misunderstand the universe's fundamental physics and evolutionary trajectory.
AUGUST 1958
  continue reading

52964 episodes

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