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.

1,126 results for "ex situ conservation" — page 26 of 57

J_5_01 Verified Ancient Technology

J_5_01 — Ancient Navigation Instruments — Astrolabe, Sunstone, and Star Compass

Ancient and medieval navigators developed remarkably sophisticated instruments and techniques for traversing oceans, deserts, and vast territories — millennia before GPS, chronometers, or modern charts. This document sur

navigation astrolabe sunstone star compass Polynesian stick chart
J_5_08 Verified Ancient Technology

J_5_08 — Ancient Astronomical Instruments

Before the invention of the telescope (1608 CE), astronomical observation relied entirely on naked-eye instruments — devices for measuring the angular positions of celestial objects, tracking their motions, and computing

astrolabe armillary sphere gnomon quadrant torquetum equatorial ring
J_4_03 Verified Ancient Technology

J_4_03 — Ancient Food Technology — Fermentation, Preservation, and Agriculture

Ancient food technology encompassed far more than simple subsistence — it involved sophisticated biochemistry (fermentation, enzymatic breakdown), engineering (bread ovens, fish sauce factories), and ecological managemen

fermentation brewing preservation agriculture beer bread
Q_1_02 Verified Cosmology & Physics

Q_1_02 — Big Bang & Alternative Cosmologies

The Big Bang theory — that the observable universe expanded from an extremely hot, dense state ~13.8 billion years ago — is supported by three independent pillars: cosmic microwave background radiation (CMB, discovered 1

Big Bang cosmic microwave background inflation cyclic universe Big Bounce steady state
Q_1_08 Verified Cosmology & Physics

Q_1_08 — Observable Universe and Cosmic Web

The observable universe has a diameter of ~93 billion light-years (comoving distance) and contains an estimated 2 trillion galaxies (Conselice et al. 2016), ~10²⁴ stars, and ~10⁸⁰ atoms. But its most striking feature is

cosmic web large-scale structure filament void supercluster Laniakea
Q_1_14 Verified Cosmology & Physics

Q_1_14 — Vacuum Energy and the Cosmological Constant Problem

The cosmological constant problem is widely regarded as the most severe fine-tuning problem in all of physics. Quantum field theory predicts that the vacuum of spacetime is not empty but seethes with zero-point fluctuati

vacuum energy cosmological constant dark energy zero-point energy quantum vacuum vacuum catastrophe
Q_1_11 Verified Cosmology & Physics

Q_1_11 — Cosmological Redshift and the Hubble Law

The discovery that distant galaxies' light is systematically shifted toward longer (redder) wavelengths was the first observational evidence that the universe is expanding. Vesto Slipher's spectroscopic measurements (191

cosmological redshift Hubble law Hubble constant expanding universe Vesto Slipher Edwin Hubble
Q_1_16 Verified Cosmology & Physics

Q_1_16 — History of Cosmology: Ancient to Modern

Cosmology — the study of the universe's origin, structure, and fate — is humanity's oldest intellectual pursuit and its most modern science. From the flat-earth mythologies of ancient Mesopotamia through the geocentric c

history of cosmology ancient cosmology geocentric model heliocentric model Ptolemy Copernicus
Q_1_13 Credible Cosmology & Physics

Q_1_13 — Cosmic Strings and Topological Defects

Cosmic strings are one-dimensional topological defects that may have formed during symmetry-breaking phase transitions in the early universe, analogous to cracks in ice or vortex lines in superfluids. Predicted by Kibble

cosmic strings topological defects phase transition domain walls magnetic monopoles textures
Q_1_09 Verified Cosmology & Physics

Q_1_09 — Fate of the Universe

How will the universe end? This question has moved from philosophy and eschatology into hard physics, driven by the 1998 discovery that the universe's expansion is ACCELERATING (Riess et al. 1998; Perlmutter et al. 1999

heat death Big Rip Big Crunch Big Bounce Big Freeze cosmological constant
Q_4_05 Verified Cosmology & Physics

Q_4_05 — Modified Gravity Theories

Modified gravity theories propose that the observed discrepancies between luminous matter and gravitational dynamics — traditionally attributed to dark matter — instead result from a breakdown or modification of Newtonia

modified gravity MOND Modified Newtonian Dynamics Milgrom TeVeS tensor-vector-scalar
Q_4_31 Verified Cosmology & Physics

Q_4_31 — Water Memory, Anomalous Properties, and Homeopathy Critique

The "water memory" hypothesis — the claim that water retains a structural or informational imprint of substances previously dissolved in it, even after dilution past Avogadro's number — sits at the center of one of 20th-

water memory Jacques Benveniste homeopathy ultra-dilution Luc Montagnier electromagnetic signals
Q_4_04 Verified Cosmology & Physics

Q_4_04 — Neutrino Astronomy and Neutrino Mass

Neutrinos — nearly massless, electrically neutral leptons that interact only via the weak nuclear force and gravity — are among the most abundant particles in the universe (~330/cm³ relic neutrinos from the Big Bang) yet

neutrino neutrino astronomy neutrino oscillation neutrino mass solar neutrino problem SNO
Q_4_13 Verified Cosmology & Physics

Q_4_13 — Classical Mechanics: Newton, Lagrange, Hamilton, and the Action Principle

Classical mechanics — the study of the motion of bodies under the action of forces — is the oldest and most mature branch of physics, tracing from Galileo's kinematics (1638) and Newton's three laws and universal gravita

classical mechanics Newton Lagrange Hamilton action principle least action
Q_4_26 Verified Cosmology & Physics

Q_4_26 — Bose-Einstein Condensates: Physics and Applications

A Bose-Einstein condensate (BEC) is a state of matter formed when a gas of bosons (particles with integer spin) is cooled to temperatures near absolute zero — typically below 1 microkelvin ($10^{-6}$ K) — causing a macro

Bose-Einstein condensate BEC superfluidity quantum gas laser cooling Cornell
Q_4_15 Verified Cosmology & Physics

Q_4_15 — Magnetism: From Lodestones to MRI, Domains to Spin

Magnetism — the force exerted by magnets and electric currents, and the response of materials to magnetic fields — has been known since antiquity (the lodestone, a naturally magnetized iron ore, was used in Chinese compa

magnetism magnetic field ferromagnetism paramagnetism diamagnetism antiferromagnetism
Q_4_10 Verified Cosmology & Physics

Q_4_10 — Fluid Dynamics: Turbulence, Navier-Stokes, and the Millennium Problem

Fluid dynamics is the study of the motion of fluids (liquids and gases) — a branch of physics with applications spanning aeronautics, meteorology, oceanography, astrophysics, cardiovascular medicine, chemical engineering

fluid dynamics Navier-Stokes equations turbulence Reynolds number viscosity laminar flow
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_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