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.

146 results for "cosmological constant problem" — page 4 of 8

Q_1_10 Verified Cosmology & Physics

Q_1_10 — Cosmic Inflation and the First Second

Cosmic inflation — the hypothesis that the universe underwent an exponential expansion in the first 10⁻³⁶ to 10⁻³² seconds after the Big Bang — was proposed by Alan Guth in 1981 to resolve critical problems in standard B

cosmic inflation Alan Guth inflationary epoch eternal inflation multiverse horizon problem
Q_1_20 Verified Cosmology & Physics

Q_1_20 — Fractal Cosmology: Is the Universe Self-Similar Across Scales?

The observable universe organises matter into a staggering fractal-like web of galaxy filaments, walls, voids, and clusters — structures visible at scales from 1 Mpc (galaxy groups) to 600 Mpc (the Hercules-Corona Boreal

fractal cosmology cosmic web large-scale structure fractal dimension self-similarity galactic clustering
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_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_4_17 Verified Cosmology & Physics

Q_4_17 — Crystallography: Structure Determination and Symmetry

Crystallography — the science of determining the arrangement of atoms within crystalline solids — has been one of the most productive scientific disciplines in history, contributing to 29 Nobel Prizes across physics, che

crystallography X-ray diffraction Bragg's law crystal structure unit cell space group
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_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_06 Verified Cosmology & Physics

Q_3_06 — Solar Physics and Helioseismology

The Sun is the most thoroughly studied star, yet fundamental mysteries persist about its interior dynamics and outer atmosphere. Helioseismology — the study of solar oscillations — revolutionized solar physics by providi

helioseismology solar oscillations p-modes g-modes solar interior solar neutrino problem
Verified

INTERDOC_60 — AI Consciousness and Moral Status: The Triadic Framework

As AI systems cross behavioral thresholds once considered markers of intelligence — passing bar exams at the 90th percentile (GPT-4, March 2023), solving protein folding (AlphaFold2, 2020), exhibiting emergent reasoning

artificial consciousness moral status IIT phi global workspace theory alignment problem phenomenal experience
Credible

INTERDOC_32 — AI, Consciousness, and the Ethical Frontier

[KEY FINDING] The alignment problem — ensuring that artificial intelligence systems pursue goals aligned with human values — has moved from science fiction to mainstream AI safety research. Stuart Russell (Human Compatib

artificial intelligence machine consciousness hard problem Chinese room Turing test alignment

AI Hallucination and the Consciousness Filter — A Cross-Disciplinary Connection Map

Both brains and large language models run the same basic operation: generate a prediction, then check it against a constraint. In brains, the constraint is sensory evidence, and Anil Seth calls the result a "controlled h

AI hallucination consciousness filter IIT predictive coding controlled hallucination Anil Seth
ZB_2_23 Verified Ecology & Biology

ZB_2_23 — Cephalopod Intelligence and Distributed Cognition

Cephalopods — octopuses, cuttlefish, squid, and nautiluses — represent one of evolution's most extraordinary experiments in intelligence, having diverged from the vertebrate lineage approximately 530 million years ago ye

cephalopod octopus cognition distributed nervous system chromatophore camouflage
ZB_1_08 Verified Ecology & Biology

ZB_1_08 — Cephalopod Intelligence and Cognition

Cephalopods — octopuses, squid, cuttlefish, and nautiluses — represent the pinnacle of invertebrate cognitive evolution, having independently evolved complex brains and sophisticated behaviors along a lineage that diverg

cephalopod octopus squid cuttlefish intelligence cognition
ZB_1_07 Verified Ecology & Biology

ZB_1_07 — Echolocation: Biological Sonar in Bats, Dolphins, and Beyond

Echolocation — the ability to perceive the environment by emitting sounds and analyzing returning echoes — has evolved independently in bats, toothed whales (dolphins, porpoises, sperm whales), some birds (oilbirds, swif

echolocation biosonar bat echolocation dolphin echolocation ultrasound sonar
ZC_1_19 Credible Social Science

ZC_1_19 — Moral Psychology

Moral psychology — the scientific study of how humans develop, experience, and exercise moral judgment — has undergone a revolution since the early 2000s, shifting from Lawrence Kohlberg's rationalist stage theory (1958–

moral-psychology moral-foundations trolley-problem moral-intuition jonathan-haidt moral-development
G_4_14 Verified Modern Frameworks

G_4_14 — Replication Crisis and What It Means for Ancient Claims

The replication crisis refers to the discovery, beginning in the early 2010s, that a substantial proportion of findings published in peer-reviewed scientific journals — particularly in psychology, social science, and bio

replication crisis reproducibility p-hacking HARKing publication bias open science
G_3_09 Verified Modern Frameworks

G_3_09 — Chaos Theory, Fractals, and Nonlinear Dynamics

Chaos theory is a branch of mathematics and physics studying how deterministic systems can produce unpredictable behavior due to extreme sensitivity to initial conditions — a concept popularized as the "butterfly effect.

chaos theory fractals nonlinear dynamics butterfly effect strange attractors Lorenz
G_3_24 Credible Modern Frameworks

G_3_24 — Post-Normal Science: Funtowicz, Ravetz, and Uncertainty

Post-normal science (PNS) is a framework for understanding and managing scientific inquiry when facts are uncertain, values in dispute, stakes high, and decisions urgent — conditions that characterize many of the most cr

post-normal science Funtowicz Ravetz uncertainty decision stakes extended peer community