RESEARCH BASE
Search 3,721 documents across 34 fields — every claim tier-rated by evidence
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.
1,628 results for "philosophy of technology" — page 80 of 82
S_3_08 — Carbon Capture and Negative Emissions
Carbon Capture and Storage (CCS) captures CO₂ from point sources (power plants, industrial facilities) before it enters the atmosphere; Carbon Dioxide Removal (CDR) — also called negative emissions technologies (NETs) —
S_3_12 — Biodegradable Materials and Green Chemistry
Green chemistry — formalized by Paul Anastas and John Warner (1998, Green Chemistry: Theory and Practice) with Twelve Principles including waste prevention, atom economy, less hazardous synthesis, designed degradation, r
S_3_11 — Wireless Power and Energy Transmission
Wireless power transmission (WPT) transfers electrical energy without physical conductors using electromagnetic fields. Near-field (non-radiative): Inductive coupling — two coils in close proximity transfer power via osc
S_3_17 — Nuclear Fusion Energy
Nuclear fusion — the process of combining light atomic nuclei into heavier ones, releasing vast amounts of energy (the mechanism powering the Sun and stars) — has been pursued as a potential source of virtually limitless
S_3_18 — Graphene and Nanotube Applications
Graphene — a single atomic layer of carbon atoms arranged in a two-dimensional hexagonal (honeycomb) lattice — and carbon nanotubes (CNTs) — seamless cylinders of rolled graphene sheets — represent two of the most extrao
S_3_03 — Geoengineering — Climate Intervention, Solar Radiation Management, and Carbon Dioxide Removal
Geoengineering encompasses large-scale deliberate interventions in the Earth's climate system to counteract global warming. Two broad categories exist: Solar Radiation Management (SRM), which reflects incoming sunlight t
S_3_02 — Energy Futures — Fusion, Thorium, and Cosmic Energy Harvesting
The quest for abundant, clean energy stands as one of humanity's defining challenges, with solutions spanning from well-funded engineering projects (nuclear fusion, thorium reactors) to speculative but tantalizing concep
S_3_00 — Energy Environment Climate: Subfolder Summary
S_3_01 — Climate Change, Civilization, and Deep-Time Context
Earth's climate has always changed — but the current rate and mechanism are unprecedented in geological history. This document places the modern climate crisis within the deep-time context that the corpus demands: from t
S_3_13 — Nuclear Fusion Progress: ITER, NIF Ignition, and Compact Tokamaks
Nuclear fusion — the process powering stars, in which light atomic nuclei combine to form heavier nuclei and release enormous energy — has been pursued as a potential source of virtually unlimited, clean energy since the
S_5_14 — Digital Identity: Biometrics, Self-Sovereign Identity, and Authentication
Digital identity — the set of attributes, credentials, and identifiers that represent a person in digital systems — is fundamental to online commerce, government services, healthcare, travel, and social interaction. An e
S_5_17 — Risk Science, Catastrophe Modeling & Existential Assessment
Risk science encompasses the systematic identification, assessment, and mitigation of threats across scales from individual hazards to civilization-ending catastrophes. From the actuarial tables of Edmond Halley (1693) t
S_5_03 — 3D Printing and Additive Manufacturing
3D printing (additive manufacturing) builds objects layer by layer from digital models, reversing the subtractive logic of traditional manufacturing (cutting material away from a block). The technology originated with Ch
S_5_15 — Social Robotics: Companion Robots, Elderly Care, and Human-Robot Interaction
Social robotics — the design, construction, and study of robots intended to interact with humans in socially meaningful ways — occupies the intersection of robotics, artificial intelligence, psychology, and design. Unlik
S_5_06 — Metamaterials and Programmable Matter
Metamaterials are engineered materials whose properties derive not from their chemical composition but from their physical structure — repeating sub-wavelength unit cells designed to interact with electromagnetic, acoust
S_5_10 — Smart Materials: Shape Memory Alloys, Self-Healing Polymers, Piezoelectrics
Smart materials — materials that change their properties (shape, stiffness, color, conductivity, or other characteristics) in a controlled, predictable, and reversible way in response to external stimuli (temperature, st
S_5_00 — Society Infrastructure: Subfolder Summary
S_2_08 — Longevity Science: Senolytics, Telomeres, and Lifespan Extension
Longevity science — the systematic study of biological aging with the goal of extending human healthspan (years of healthy life) and potentially lifespan — has transformed from a fringe pursuit into a mainstream biomedic
S_2_17 — Tissue Engineering: Scaffolds, Bioreactors, and Organ Fabrication
Tissue engineering — the fabrication of biological substitutes to restore, maintain, or improve tissue function — was formally defined by Robert Langer (MIT) and Joseph Vacanti (Harvard/Boston Children's Hospital) in the
S_2_11 — Bioinformatics: Computational Genomics and Drug Discovery
Bioinformatics — the application of computational methods to biological data — has become indispensable to modern biology and medicine, driven by the exponential growth of genomic, transcriptomic, proteomic, and metabolo
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