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.

50 results for "left-handed materials" — page 3 of 3

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
Credible

INTERDOC_16 — Metallurgy, Alchemy, and the Chemistry Thread

The transformation of raw ore into metal was among humanity's most consequential discoveries. Copper smelting appeared by ~5500 BCE at sites like Belovode (Serbia) and Çatalhöyük (Anatolia). Bronze (copper-tin alloy) eme

metallurgy alchemy transmutation smelting bronze iron
S_4_10 Credible Future Technology

S_4_10 — Space Elevators and Advanced Launch Technology

Space access remains the fundamental bottleneck for space development — current chemical rockets achieve orbit at $1,500–$5,000/kg to low Earth orbit (SpaceX Falcon 9, ~$2,700/kg; Starship aims for <$100/kg but is unprov

space elevator launch technology mass driver electromagnetic launch tether Skyhook
S_3_18 Verified Future Technology

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

graphene carbon nanotube CNT Geim Novoselov two-dimensional material
S_5_00 Future Technology

S_5_00 — Society Infrastructure: Subfolder Summary

S_2_17 Verified Future Technology

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

tissue engineering scaffold bioprinting decellularization bioreactor extracellular matrix
ZA_4_15 Verified Physics & Quantum

ZA_4_15 — Condensed Matter Physics: Emergent Phenomena in Many-Body Systems

Condensed matter physics — the largest subfield of physics by number of active researchers — studies the collective behavior of vast numbers of interacting particles (electrons, atoms, ions, spins) in solid, liquid, and

condensed matter band theory phase transitions topological phases superconductivity strongly correlated
ZA_4_17 Verified Physics & Quantum

ZA_4_17 — Polymer Science: From Bakelite to Bioplastics

Polymer science — the study of macromolecules composed of repeating monomer units — underpins materials from natural rubber and silk to modern plastics, synthetic fibers, and biomedical implants. Hermann Staudinger's 192

polymer macromolecule Staudinger polymerization Bakelite nylon
ZA_4_22 Verified Physics & Quantum

ZA_4_22 — Superconductivity: BCS Theory to High-Temperature

Superconductivity — the complete vanishing of electrical resistance and the expulsion of magnetic fields below a critical temperature — was discovered by Heike Kamerlingh Onnes on April 8, 1911, in mercury at 4.2 K. The

superconductivity BCS theory Cooper pairs cuprate YBCO Meissner effect
ZA_4_16 Verified Physics & Quantum

ZA_4_16 — Semiconductor Physics: Band Theory, Transistors, and Modern Electronics

Semiconductor physics — the study of materials with electrical conductivity between that of conductors and insulators — underpins virtually all modern electronic technology. The development of band theory by Felix Bloch

semiconductor transistor band gap silicon germanium p-n junction