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.

657 results for "language gene" — page 13 of 33

E_1_08 Verified Cataclysms & Chronology

E_1_08 — Ancient Supernovae and Their Cultural Impact

Supernovae — the explosive deaths of massive stars — are among the most energetic events in the universe, capable of briefly outshining entire galaxies. When they occur within our galaxy at distances of a few thousand li

supernova SN 1054 Crab Nebula Anasazi petroglyph SN 185 Vela supernova
ZG_2_01 Verified Linguistics & Communication

ZG_2_01 — Proto-Indo-European — Reconstruction, Homeland, and Migration

Proto-Indo-European (PIE) is the reconstructed common ancestor of the Indo-European language family — the most widely spoken language family on Earth, encompassing ~3.2 billion native speakers across branches including I

Proto-Indo-European PIE comparative method Indo-European Kurgan hypothesis Anatolian hypothesis
ZG_5_17 Verified Linguistics & Communication

ZG_5_17 — Neurolinguistics & Brain Imaging

Neurolinguistics — the study of the neural mechanisms underlying the comprehension, production, and acquisition of language — has been transformed by advances in neuroimaging technology since the 1990s, moving from a fie

neurolinguistics Broca's area Wernicke's area fMRI language brain aphasia
ZG_5_04 Verified Linguistics & Communication

ZG_5_04 — Writing System Reform: Simplified Chinese, Turkish Latin, Hangul

Writing system reforms — deliberate, planned changes to a language's script, orthography, or writing conventions — represent some of the most dramatic and consequential acts of language planning in history. Three landmar

writing system reform script reform simplified Chinese traditional Chinese Hangul Korean alphabet
ZG_1_18 Credible Linguistics & Communication

ZG_1_18 — Sound Symbolism and Phonosemantics

Sound symbolism — the non-arbitrary association between speech sounds and meaning — challenges the foundational Saussurean principle that the relationship between a word's form and its meaning is entirely arbitrary (Ferd

sound-symbolism phonosemantics bouba-kiki ideophones onomatopoeia iconic-language
ZG_3_20 Credible Linguistics & Communication

ZG_3_20 — Pirahã & Universal Grammar Debate

The Pirahã people — a small indigenous group of approximately 400–800 individuals living along the Maici River in the Brazilian Amazon — and their language have become the center of one of the most consequential debates

Pirahã Daniel Everett universal grammar Noam Chomsky recursion immediacy of experience
ZG_3_19 Credible Linguistics & Communication

ZG_3_19 — Sapir-Whorf Hypothesis: Modern Evidence

The Sapir-Whorf hypothesis — the idea that the structure of a language influences its speakers' perception and cognition — has undergone a dramatic rehabilitation since the 1990s after decades of near-total rejection in

Sapir-Whorf hypothesis linguistic relativity linguistic determinism Benjamin Lee Whorf Edward Sapir Lera Boroditsky
Q_1_23 Speculative Cosmology & Physics

Q_1_23 — White Holes: Theory and Implications

A white hole is the time-reversed analogue of a black hole — a theoretical spacetime region from which matter and light can emerge but into which nothing can enter, as opposed to a black hole's event horizon from which n

white hole time reversal black hole singularity Kruskal Penrose
Q_4_16 Verified Cosmology & Physics

Q_4_16 — Chandrasekhar Limit: White Dwarf Physics and Stellar Death

The Chandrasekhar limit — approximately 1.4 solar masses ($1.4 \, M_\odot$) — is the maximum mass of a stable white dwarf star, the dense remnant left after a low- or intermediate-mass star (initial mass up to ~8 $M_\odo

Chandrasekhar limit white dwarf stellar death electron degeneracy pressure Type Ia supernova mass limit
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_02 Credible Cosmology & Physics

Q_3_02 — Ancient-Modern Scientific Parallels Synthesis

Every major ancient cosmological tradition contains concepts that map remarkably onto modern scientific discoveries. From the Hindu kalpa aligning within 5% of Earth's actual age, to the universal "cosmic egg" motif mirr

ancient-modern parallels Hindu kalpa cosmic egg Big Bang creation from clay abiogenesis
Verified

INTERDOC_53 — Substrate-Independent Information Patterns: Empirical Cases

A pattern is empirically substrate-independent if the same information content is preserved across changes in the physical material carrying it. Across multiple domains, biology and physics provide concrete instances of

substrate independence information theory bioelectric memory planarian regeneration prion proteins epigenetic inheritance
Verified

INTERDOC_11 — Mitochondrial Eve, Y-Chromosomal Adam, and the Convergence Problem

Mitochondrial Eve — the most recent common ancestor (MRCA) of all living humans through an unbroken maternal line — was identified through mtDNA analysis by Rebecca Cann, Mark Stoneking, and Allan Wilson at UC Berkeley i

mitochondrial Eve Y-chromosomal Adam coalescent theory most recent common ancestor MRCA molecular clock
ZB_2_12 Verified Ecology & Biology

ZB_2_12 — Biological Scaling and Allometry

Allometry — the study of how biological characteristics scale with body size — reveals some of the most universal quantitative laws in biology. From bacteria to blue whales, spanning 21 orders of magnitude in body mass,

allometry biological scaling metabolic scaling Kleiber's law quarter-power scaling three-quarter power
ZB_2_11 Verified Ecology & Biology

ZB_2_11 — Biological Electricity and Bioelectricity

Electricity is fundamental to life — every living cell maintains a transmembrane potential (Vmem, typically −40 to −90 mV in animal cells) created by ion channels and pumps that selectively move Na⁺, K⁺, Ca²⁺, and Cl⁻ ac

bioelectricity electric fish electroreception ion channel membrane potential voltage
ZB_2_05 Verified Ecology & Biology

ZB_2_05 — Aging, Longevity, and the Biology of Death

Why do organisms age and die? This question — one of the oldest in human inquiry — has yielded remarkable molecular answers in recent decades. Leonard Hayflick's 1961 discovery that human cells have a finite replicative

aging longevity telomeres telomerase Hayflick limit senescence
ZB_5_14 Verified Ecology & Biology

ZB_5_14 — Conservation Biology

Conservation biology — the scientific study of biodiversity loss and the methods to protect species, habitats, and ecosystems — was formally established as a discipline by Michael Soulé (University of California, San Die

conservation biology biodiversity endangered species habitat fragmentation minimum viable population extinction vortex
ZB_5_01 Verified Ecology & Biology

ZB_5_01 — Biological Rhythms Beyond Circadian

While circadian (~24-hour) rhythms are the best-studied biological oscillations (2017 Nobel Prize to Hall, Rosbash, Young), life is permeated by rhythms operating across all timescales — from millisecond neural oscillati

biological rhythms ultradian rhythms infradian rhythms circannual rhythms tidal rhythms lunar rhythms
ZB_5_05 Verified Ecology & Biology

ZB_5_05 — Extinction Biology and De-Extinction

Extinction — the complete disappearance of a species — is a permanent event that has shaped life's history as profoundly as origination. Background extinction (the normal, continuous loss of species) proceeds at ~0.1–1 s

extinction mass extinction background extinction de-extinction resurrection biology passenger pigeon
ZB_5_02 Verified Ecology & Biology

ZB_5_02 — Biological Networks and Systems Biology

Systems biology investigates how biological function emerges from the collective interactions of molecular components — genes, proteins, metabolites, and signaling molecules — organized into networks. Rather than studyin

systems biology biological networks gene regulatory networks protein-protein interactions metabolic networks signaling pathways