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.

3,446 results for "in situ" — page 68 of 173

G_1_14 Verified Modern Frameworks

G_1_14 — Archaeometry — Physical Science Methods in Archaeology

Archaeometry — the application of physical and chemical science methods to archaeological materials — encompasses a broad range of analytical techniques used to determine the composition, provenance, manufacturing techno

archaeometry XRF NAA ICP-MS Raman FTIR
G_1_06 Verified Modern Frameworks

G_1_06 — Paleoproteomics — Ancient Proteins Beyond DNA

Paleoproteomics is the extraction, identification, and analysis of ancient proteins from archaeological and paleontological materials — an emerging molecular method that extends biological identification far beyond the t

paleoproteomics ancient proteins ZooMS collagen fingerprinting mass spectrometry LC-MS/MS
G_1_01 Verified Modern Frameworks

G_1_01 — Experimental Archaeology: Testing Ancient Technologies

Experimental archaeology is a sub-discipline that tests hypotheses about past technologies, construction methods, and subsistence strategies through physical replication and controlled experimentation. From Thor Heyerdah

experimental archaeology replication studies Kon-Tiki Ra II Roman concrete ancient technology testing
G_1_09 Verified Modern Frameworks

G_1_09 — Provenance Analysis: Strontium, Lead, and Oxygen Isotope Sourcing

Isotopic provenance analysis has revolutionized archaeology by enabling researchers to determine where an artifact was made, where a person grew up, what they ate, and how far they traveled — all from the chemical signat

provenance isotope strontium lead oxygen sourcing
G_1_19 Credible Modern Frameworks

G_1_19 — Acoustic Archaeology: Sound Mapping of Ancient Structures

Acoustic archaeology (archaeoacoustics) is an emerging interdisciplinary field that investigates the sonic properties of ancient structures, landscapes, and artifacts to understand how past peoples experienced and manipu

acoustic-archaeology archaeoacoustics sound-mapping resonance-frequency megalithic-acoustics ritual-soundscape
G_3_26 Verified Modern Frameworks

G_3_26 — Resonance as Universal Information Encoding

Resonance — the selective amplification of energy at characteristic frequencies — appears across physical, biological, and cognitive systems as a substrate-independent information-encoding mechanism. From radio receivers

resonance oscillation coupled oscillators information encoding frequency phase locking
G_3_27 Verified Modern Frameworks

G_3_27 — Morphic Resonance vs Epigenetic Inheritance: A Rigorous Comparison

For decades, Rupert Sheldrake's morphic resonance hypothesis — that organisms inherit form and behavior through a non-material "morphic field" carrying patterns from past similar systems — has been the most prominent fri

morphic resonance Sheldrake epigenetic inheritance Jablonka Dutch Hunger Winter transgenerational
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
G_2_15 Credible Modern Frameworks

G_2_15 — Cognitive Archaeology — Mind in the Archaeological Record

Cognitive archaeology investigates the cognitive abilities, mental processes, and symbolic capacities of past peoples through the material record they left behind — seeking to understand not just what ancient people did,

cognitive archaeology mind cognition symbolism theory of mind working memory
G_2_16 Credible Modern Frameworks

G_2_16 — Phylogenetic Methods in Material Culture Analysis

Phylogenetic methods — originally developed in evolutionary biology to reconstruct the branching history of species from shared inherited characteristics — have been adapted for analyzing the evolutionary (descent-with-m

phylogenetics cladistics cultural phylogeny material culture tree branching
G_2_19 Verified Modern Frameworks

G_2_19 — GIS Methodology in Archaeology: Spatial Analysis and Digital Landscapes

Geographic Information Systems (GIS) have transformed archaeological research from site-centered excavation reports into spatially integrated landscape analysis. GIS enables archaeologists to overlay multiple data layers

gis-archaeology spatial-analysis remote-sensing lidar predictive-modeling landscape-archaeology
G_2_09 Credible Modern Frameworks

G_2_09 — Network Analysis in Archaeology — Trade, Communication, Influence

Network analysis — rooted in graph theory and social network analysis (SNA) — provides formal mathematical tools for modeling and analyzing the structure of relationships between archaeological entities: sites, regions,

network analysis graph theory social network trade network exchange interaction
G_2_02 Verified Modern Frameworks

G_2_02 — Agent-Based Modeling and Social Simulation

Agent-based modeling (ABM) is a computational framework in which large numbers of autonomous "agents" — each following simple, individually specified rules — interact with one another and their environment, and complex c

agent-based modeling ABM social simulation computational archaeology emergence artificial societies
O_1_18 Credible Earth Anomalies

O_1_18 — Ball Lightning and Earthquake Lights: Transient Luminous Phenomena

Ball lightning — a luminous, roughly spherical phenomenon observed during or near thunderstorms, typically 10–50 cm in diameter and lasting 1–10 seconds — and earthquake lights (EQLs) — luminous atmospheric phenomena obs

ball-lightning earthquake-lights transient-luminous-phenomena kugelblitz piezoelectric triboluminescence
O_1_04 Verified Earth Anomalies

O_1_04 — Atmospheric Anomalies — Ball Lightning, Hessdalen, and Earthquake Lights

The atmosphere produces a range of luminous phenomena that, despite centuries of observation and thousands of documented reports, remain incompletely understood or only recently explained. Ball lightning — glowing sphere

ball lightning Hessdalen lights earthquake lights St. Elmo's fire sprites jets
O_1_05 Verified Earth Anomalies

O_1_05 — Hessdalen Lights — Scientific Monitoring of Persistent Anomaly

The Hessdalen lights are recurring luminous aerial phenomena observed in and around the Hessdalen valley in central Norway (Holtålen municipality, Trøndelag county), scientifically monitored since 1983.

Hessdalen luminous phenomena Norway Erling Strand Østfold automated monitoring
O_1_09 Credible Earth Anomalies

O_1_09 — Persinger's Tectonic Strain Theory and Geomagnetic Anomalies

Michael Persinger (1945–2018), a neuroscientist at Laurentian University (Sudbury, Ontario), developed the Tectonic Strain Theory (TST) — a hypothesis proposing that stress accumulating along geological fault zones produ

Michael Persinger tectonic strain theory TST geomagnetic anomaly piezoelectric triboluminescence
O_1_01 Credible Earth Anomalies

O_1_01 — Ley Lines, Earth Energy Grid & Sacred Geography

"Ley lines" — alleged alignments of ancient sites — were proposed by Alfred Watkins (1921) as practical trading routes, NOT mystical energy channels. The "earth energy" concept was added later (Michell, 1969). Statistica

ley lines Watkins Michell earth grid St Michael's Line songlines
O_2_09 Verified Earth Anomalies

O_2_09 — The Mohorovičić Discontinuity and Earth's Internal Structure

The Mohorovičić Discontinuity (the "Moho") — the boundary between Earth's crust and upper mantle — is one of the most fundamental structural features of our planet and a cornerstone of solid-Earth geophysics. It was disc

Mohorovičić Moho discontinuity crust-mantle boundary seismology seismic velocity
O_2_03 Verified Earth Anomalies

O_2_03 — Plate Tectonics, Continental Drift, and Deep Earth

Plate tectonics — the theory that Earth's outer shell (lithosphere) is divided into rigid plates that move, collide, and separate atop a convecting asthenosphere — is one of the great unifying theories of modern science.

plate tectonics continental drift Wegener Hess seafloor spreading magnetic stripes