RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,625 Citations 34,852 Keywords Indexed 4 Evidence Tiers

3,633 are the core, quality-scored corpus (34 lettered sections — see How We Work); the remaining 88 are cross-corpus synthesis documents (68 InterDocs, 12 Connections, 8 Theories) also indexed here.

232 results for "mesoamerican cosmology" — page 8 of 12

Q_2_13 Verified Cosmology & Physics

Q_2_13 — Interstellar Medium, Dust, and Nebulae

The space between stars is far from empty — the interstellar medium (ISM) is a complex, dynamic ecosystem of gas, dust, magnetic fields, and cosmic rays that pervades galaxies and plays a central role in stellar birth, d

interstellar medium ISM interstellar dust nebula emission nebula planetary nebula
Q_2_11 Verified Cosmology & Physics

Q_2_11 — Stellar Populations, Metallicity, and Generations

Stars preserve the chemical fingerprint of the gas from which they formed, making them archaeological records of the universe's chemical history. Walter Baade (1944) recognized two distinct stellar populations: Populatio

stellar populations Population I Population II Population III metallicity metal-poor stars
Q_2_08 Verified Cosmology & Physics

Q_2_08 — Quasars and Active Galactic Nuclei

Quasars (quasi-stellar objects) and active galactic nuclei (AGN) are the most luminous persistent objects in the universe, powered by accretion of matter onto supermassive black holes (SMBHs, 10⁶–10¹⁰ M☉) at galaxy cente

quasar active galactic nucleus AGN supermassive black hole accretion disk Seyfert galaxy
Q_2_19 Credible Cosmology & Physics

Q_2_19 — Modified Gravity Theories: MOND, TeVeS & Alternatives to Dark Matter

Modified gravity theories propose that the observed discrepancies between predicted and measured gravitational effects in galaxies and galaxy clusters — conventionally attributed to dark matter — instead result from modi

modified-gravity mond teves dark-matter-alternative milgrom galaxy-rotation-curves
Q_2_20 Verified Cosmology & Physics

Q_2_20 — Black Hole Information Paradox & Hawking Radiation

The black hole information paradox is arguably the deepest unsolved problem in theoretical physics, lying at the intersection of general relativity, quantum mechanics, and thermodynamics. In 1974, Stephen Hawking showed

black hole information paradox Hawking radiation unitarity firewall paradox Page curve island formula
Q_2_12 Verified Cosmology & Physics

Q_2_12 — Cosmic Nucleosynthesis and Primordial Helium Abundance

Big Bang nucleosynthesis (BBN) — the formation of the lightest elements during the first ~20 minutes after the Big Bang — stands as one of the most remarkable quantitative successes of modern cosmology. With only one fre

Big Bang nucleosynthesis BBN primordial nucleosynthesis helium abundance deuterium abundance lithium problem
Q_2_06 Verified Cosmology & Physics

Q_2_06 — Nucleosynthesis: How the Elements Were Forged

Every element in the periodic table has a specific cosmic origin story. Big Bang nucleosynthesis (BBN) produced hydrogen, helium, and traces of lithium in the first 20 minutes after the Big Bang. Stellar nucleosynthesis

nucleosynthesis Big Bang nucleosynthesis stellar nucleosynthesis supernova nucleosynthesis r-process s-process
Q_2_07 Verified Cosmology & Physics

Q_2_07 — Cosmic Distance Ladder: Measuring the Universe

The cosmic distance ladder is a succession of techniques by which astronomers measure distances from nearby stars to the edge of the observable universe — each rung calibrates the next. Trigonometric parallax (reliable t

cosmic distance ladder parallax standard candles Cepheid variables Type Ia supernovae Tully-Fisher relation
Q_2_09 Verified Cosmology & Physics

Q_2_09 — Binary Star Systems and X-Ray Sources

Most stars in the Milky Way exist in binary or multiple-star systems — estimates range from ~50% for solar-type stars to >70% for massive O/B stars. Binary star interactions drive some of the most energetic phenomena in

binary stars X-ray binary Roche lobe accretion disk mass transfer neutron star
Q_2_16 Verified Cosmology & Physics

Q_2_16 — White Dwarfs, Type Ia Supernovae, and Standard Candles

White dwarfs — the remnant cores of low- and intermediate-mass stars (initial mass < ~8 M☉, ~97% of all stars) — are dense objects supported against gravitational collapse by electron degeneracy pressure, with typical ma

white dwarf Type Ia supernova standard candle Chandrasekhar limit electron degeneracy pressure carbon-oxygen white dwarf
Q_2_02 Verified Cosmology & Physics

Q_2_02 — Neutron Stars, Pulsars, and Extreme Physics

Neutron stars are the collapsed remnants of massive stars, packing 1.4 to approximately 2.1 solar masses into a sphere roughly 20 kilometers across — reaching densities of 10¹⁷ kg/m³, where a teaspoon of material would w

neutron stars pulsars magnetars kilonova Jocelyn Bell Burnell nuclear density
Q_2_03 Verified Cosmology & Physics

Q_2_03 — Cosmic Rays and High-Energy Astrophysics

Cosmic rays — high-energy particles from space, mostly protons and atomic nuclei — were discovered by Victor Hess in 1912 via balloon flights that measured ionization increasing with altitude, earning him the Nobel Prize

cosmic rays muons Victor Hess Pierre Auger Observatory IceCube neutrino astronomy
Q_2_01 Verified Cosmology & Physics

Q_2_01 — Black Holes, Singularities, and Information

Black holes are regions of spacetime where gravity is so extreme that nothing — not even light — can escape once it crosses the event horizon. Predicted by general relativity (Schwarzschild solution, 1916), regarded as m

black hole singularity event horizon Schwarzschild Kerr Hawking radiation
Q_2_04 Verified Cosmology & Physics

Q_2_04 — Stellar Evolution: The Life Cycle of Stars

Stars are born in collapsing molecular clouds, live by nuclear fusion for millions to trillions of years, and die in ways determined almost entirely by their initial mass. Low-mass stars (< 8 M☉) shed their outer layers

stellar evolution main sequence red giant white dwarf supernova neutron star
Q_2_14 Verified Cosmology & Physics

Q_2_14 — Gamma-Ray Bursts

Gamma-ray bursts (GRBs) are the most energetic electromagnetic events in the universe — brief, intense flashes of gamma radiation that, when corrected for beaming, release ~10⁴⁴–10⁴⁷ joules in seconds to minutes. First d

gamma-ray burst GRB long GRB short GRB Vela satellite afterglow
Q_2_05 Verified Cosmology & Physics

Q_2_05 — Galaxy Formation, Structure, and Classification

Galaxies — gravitationally bound systems of stars, gas, dust, and dark matter — are the fundamental building blocks of the universe's large-scale structure. From Edwin Hubble's morphological classification (1926) to mode

galaxy formation galaxy classification Hubble sequence spiral galaxy elliptical galaxy irregular galaxy
Q_3_13 Verified Cosmology & Physics

Q_3_13 — Interstellar Objects: 'Oumuamua, Borisov, and Interstellar Visitors

Interstellar objects (ISOs) are bodies — asteroids, comets, or other macroscopic objects — that originate in other star systems and pass through our solar system on unbound, hyperbolic trajectories. While the theoretical

interstellar object 'Oumuamua Borisov 1I 2I ISO
Q_3_05 Verified Cosmology & Physics

Q_3_05 — Olbers' Paradox and the Dark Night Sky

Olbers' paradox — named after German astronomer Heinrich Olbers (1826), though discussed earlier by Kepler (1610), Halley (1720), and de Chéseaux (1744) — asks: if the universe is infinite, static, and uniformly filled w

Olbers' paradox dark night sky cosmic expansion finite age universe Big Bang lookback time
Q_3_01 Verified Cosmology & Physics

Q_3_01 — The Fermi Paradox & Drake Equation

Enrico Fermi's 1950 lunch question — "Where is everybody?" — remains one of the deepest unanswered questions in science. The galaxy is ~13.6 billion years old, contains ~100–400 billion stars, and (as we now know from Ke

Fermi paradox Drake equation Great Filter Zoo hypothesis Dark Forest SETI
Q_3_09 Verified Cosmology & Physics

Q_3_09 — Astrobiology and Origin of Life in Space

Astrobiology — the study of the origin, evolution, distribution, and future of life in the universe — sits at the intersection of biology, chemistry, planetary science, and astronomy. The central question — "Are we alone

astrobiology origin of life abiogenesis panspanspermia prebiotic chemistry Miller-Urey experiment