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.

679 results for "ki" — page 17 of 34

J_2_04 Verified Ancient Technology

J_2_04 — Ancient Ceramics and Pottery Technology

Ceramics represent humanity's oldest synthetic material, with the earliest known fired-clay vessels — Jōmon pottery from Japan — dated to c. 16,500 BP (Odai Yamamoto site; Kuzmin, 2006), predating agriculture by thousand

ceramics pottery kiln technology terra sigillata porcelain faience
J_5_02 Verified Ancient Technology

J_5_02 — Chinese Ancient Technology — Seismograph, Compass, Printing, Paper

Ancient China produced a series of technological innovations that preceded comparable European developments by centuries or millennia, fundamentally shaping global civilization. The "Four Great Inventions" — papermaking

Four Great Inventions Zhang Heng seismoscope compass papermaking printing
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_4_01 Verified Ancient Technology

J_4_01 — Trepanation and Ancient Neurosurgery

This document examines Trepanation and Ancient Neurosurgery, a topic within the Ancient Technology research area. Key areas of investigation include Definition and Terminology, Antiquity and Scope, The Peruvian Concentra

trepanation trephination craniotomy skull surgery John Verano Paracas
J_4_10 Verified Ancient Technology

J_4_10 — Musical Instrument Engineering — Acoustics and Ancient Craft

The engineering of musical instruments — objects designed to produce, control, and project sounds with specific pitches, timbres, and rhythms — is one of the oldest and most sophisticated human technologies, with roots e

musical instrument acoustics flute bone flute lyre harp
Q_1_15 Credible Cosmology & Physics

Q_1_15 — Dark Energy Models and Quintessence

The accelerating expansion of the universe, discovered in 1998 via Type Ia supernovae, demands an explanation. The simplest model — Einstein's cosmological constant Λ with equation of state $w = p/\rho = -1$ exactly — fi

dark energy quintessence cosmological constant equation of state w parameter phantom energy
Q_1_05 Verified Cosmology & Physics

Q_1_05 — Holographic Principle

The holographic principle proposes that all information contained within a volume of space can be encoded on the boundary surface of that region. First suggested by Gerard 't Hooft (1993) and developed by Leonard Susskin

holographic principle AdS/CFT black hole information Bekenstein bound 't Hooft Susskind
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_12 Speculative Cosmology & Physics

Q_1_12 — Conformal Cyclic Cosmology: Penrose's Vision of Eternal Recurrence

Conformal Cyclic Cosmology (CCC), proposed by Roger Penrose in 2005, envisions the universe as an infinite sequence of "aeons" — each beginning with a Big Bang-like event and ending in an infinitely expanded, cold state

conformal cyclic cosmology CCC Roger Penrose aeons conformal geometry conformal boundary
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_08 Verified Cosmology & Physics

Q_4_08 — String Theory: Landscape, Extra Dimensions, and M-Theory

String theory is the leading candidate for a unified theory of all fundamental forces and particles — a framework in which the fundamental entities are not point particles but tiny, one-dimensional vibrating strings (ope

string theory superstring theory M-theory extra dimensions compactification Calabi-Yau
Q_4_18 Verified Cosmology & Physics

Q_4_18 — Spectroscopy: Principles, Methods, and Applications

Spectroscopy — the study of the interaction between matter and electromagnetic radiation — is one of the most powerful and versatile analytical methods in all of science. From Joseph von Fraunhofer's discovery of dark ab

spectroscopy absorption emission Fraunhofer lines Kirchhoff Bunsen
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_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_10 Verified Cosmology & Physics

Q_2_10 — Cosmic Voids and Large-Scale Structure

Cosmic voids are the most voluminous structures in the universe — vast, roughly spherical regions of space spanning 20–300 Mpc (65–1,000 million light-years) that contain far fewer galaxies than average. Together with fi

cosmic void large-scale structure galaxy survey cosmic web void galaxy Boötes void
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_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_3_10 Verified Cosmology & Physics

Q_3_10 — Tidal Forces, Roche Limits, and Orbital Mechanics

Tidal forces — differential gravitational pulls across an extended body — and orbital mechanics — the motion of objects under gravitational influence — are fundamental physical phenomena governing everything from Earth's

tidal force Roche limit orbital mechanics Kepler laws two-body problem three-body problem
Q_3_12 Verified Cosmology & Physics

Q_3_12 — Telescope Technology and Observational Cosmology

The history of astronomy is inseparable from the history of telescope technology, and each major advance in instrumentation has triggered transformative discoveries. Galileo (1609) turned a simple refracting telescope to

telescope observatory optical telescope radio telescope space telescope Hubble
Q_3_14 Verified Cosmology & Physics

Q_3_14 — Planetary Science: Mars, Venus, and Comparative Planetology

Planetary science studies the formation, composition, atmospheres, surfaces, interiors, and evolution of planets, moons, and other bodies in our solar system and beyond. Comparative planetology — examining how planets wi

planetary science Mars Venus comparative planetology atmosphere climate