RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,623 Citations 34,854 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.

68 results for "nutrient transfer" — page 2 of 4

ZF_3_18 Verified Oceanography

ZF_3_18 — Microplastic Pollution in the Ocean

Microplastics — plastic particles <5 mm in diameter — have become one of the most pervasive and persistent pollutants in the global ocean, present from surface waters to the deepest hadal trenches, from Arctic sea ice to

microplastic ocean-pollution marine-debris nanoplastic bioaccumulation great-pacific-garbage-patch
ZF_5_07 Verified Oceanography

ZF_5_07 — Upwelling Systems: Coastal Productivity and Fisheries Foundations

Upwelling — the wind-driven or current-driven ascent of cold, nutrient-rich deep water to the sunlit surface layer — is the foundation of the ocean's most productive ecosystems and the world's most valuable fisheries. Th

upwelling coastal upwelling Ekman transport wind-driven eastern boundary current nutrient enrichment
ZF_4_16 Verified Oceanography

ZF_4_16 — Microplastics in the Ocean: Sources, Pathways, and Ecological Impact

Microplastics — plastic particles smaller than 5 mm in diameter — have become one of the most pervasive and persistent pollutants in the global ocean. First systematically described as a marine pollutant by Richard Thomp

microplastics nanoplastics ocean pollution marine debris plastic fragmentation bioaccumulation
ZF_4_14 Verified Oceanography

ZF_4_14 — Harmful Algal Blooms: Red Tides, Toxins, and Eutrophication

Harmful algal blooms (HABs) — rapid proliferations of microscopic algae (phytoplankton) or cyanobacteria that produce toxins, deplete oxygen, or otherwise damage marine ecosystems, fisheries, and human health — are incre

harmful algal bloom HAB red tide algal toxin eutrophication paralytic shellfish poisoning
ZF_1_20 Verified Oceanography

ZF_1_20 — Ocean Stratification

Ocean stratification — the formation of stable density layers in the water column due to gradients in temperature, salinity, and pressure — is one of the most fundamental physical characteristics of the global ocean and

ocean stratification thermocline pycnocline halocline density gradient mixed layer
ZF_1_14 Verified Oceanography

ZF_1_14 — Ocean-Atmosphere Coupling: Heat Exchange, Evaporation, and Weather

The ocean-atmosphere interface — the boundary between Earth's two great fluid envelopes — is the planet's most important energy exchange surface. The ocean absorbs approximately 93% of the excess heat trapped by anthropo

ocean-atmosphere coupling air-sea interaction heat flux latent heat sensible heat evaporation
Z_5_21 Verified Molecular Biology

Z_5_21 — Mobile Genetic Elements: Transposons, Retrotransposons, and Genomic Plasticity

Mobile genetic elements (MGEs) — DNA sequences capable of moving within and between genomes — constitute a staggering ~45% of the human genome, far exceeding the ~1.5% that encodes proteins. Discovered by Barbara McClint

transposons mobile genetic elements jumping genes retrotransposons barbara mcclintock LINE elements
Z_5_22 Verified Molecular Biology

Z_5_22 — Bacteriophage Biology: Viruses That Shape the Microbial World

Bacteriophages (phages) — viruses that exclusively infect bacteria — are the most abundant biological entities on Earth, with an estimated global population of ~10³¹ particles, outnumbering bacteria by approximately 10:1

bacteriophage phage therapy phage biology virome microbiome horizontal gene transfer
Z_3_04 Molecular Biology

Z_3_04 — Comparative Genomics and Cross-Species Analysis

Comparative genomics — the systematic comparison of genome sequences across species — has become the primary tool for understanding genome evolution, identifying functionally important sequences, and reconstructing the T

comparative genomics genome sequencing synteny ortholog paralog conserved element
Z_1_08 Molecular Biology

Z_1_08 — Transposons and Mobile Genetic Elements

Transposable elements (TEs, transposons) — segments of DNA that can move or copy themselves to new genomic locations — are among the most abundant and influential components of eukaryotic genomes. Discovered by Barbara M

transposon mobile genetic element transposable element jumping gene Barbara McClintock retrotransposon
Z_1_16 Verified Molecular Biology

Z_1_16 — Transposable Elements: Jumping Genes and Genome Evolution

Transposable elements (TEs) — sequences of DNA capable of moving ("jumping") from one genomic location to another — constitute approximately 45% of the human genome and up to 85% of the maize genome, making them the sing

transposable elements jumping genes Barbara McClintock retrotransposons DNA transposons Alu elements
Z_4_23 Verified Molecular Biology

Z_4_23 — Memory as Physical and Molecular Phenomenon

What is a memory made of? The question has driven neuroscience from Santiago Ramón y Cajal's 1894 hypothesis that learning strengthens connections between neurons, through Donald Hebb's 1949 postulate that "neurons that

molecular memory memory engram synaptic plasticity long-term potentiation LTP Eric Kandel
Z_4_04 Molecular Biology

Z_4_04 — RNA Biology: Types and Functions

RNA (ribonucleic acid) — once considered merely a passive intermediary between DNA and protein — is now recognized as the most functionally diverse class of biological macromolecules, performing roles in catalysis, gene

RNA biology RNA types messenger RNA mRNA transfer RNA tRNA
Z_4_07 Verified Molecular Biology

Z_4_07 — The Tree of Life: Molecular Phylogenetics and Universal Ancestry

The Tree of Life — the branching diagram representing the evolutionary relationships among all living organisms — has been fundamentally reshaped by molecular phylogenetics, the reconstruction of evolutionary history usi

tree of life phylogenetics universal common ancestor LUCA molecular phylogeny horizontal gene transfer
Z_4_19 Verified Molecular Biology

Z_4_19 — Exosome Signaling and Intercellular Communication

Exosomes are small (30–150 nm) membrane-bound extracellular vesicles (EVs) released by virtually all cell types, carrying a cargo of proteins, lipids, mRNAs, microRNAs (miRNAs), and other nucleic acids that can be taken

exosome extracellular vesicle intercellular communication microRNA mRNA transfer multivesicular body
K_2_06 Consciousness

K_2_06 — Neurofeedback and Brain Training

Neurofeedback — the real-time display of brain activity (typically EEG) to enable individuals to learn self-regulation of neural dynamics through operant conditioning — has been investigated since the pioneering work of

neurofeedback EEG biofeedback brain training operant conditioning EEG SMR training alpha-theta training
ZG_5_09 Verified Linguistics & Communication

ZG_5_09 — Machine Translation: Rule-Based, Statistical, and Neural Approaches

Machine Translation (MT) — the use of computers to translate text or speech from one natural language to another — has been a central problem of computational linguistics and artificial intelligence since the earliest da

machine translation MT rule-based machine translation RBMT statistical machine translation SMT
ZG_4_12 Verified Linguistics & Communication

ZG_4_12 — Second Language Acquisition: Interlanguage, Critical Period, and SLA

Second Language Acquisition (SLA) — the study of how people learn languages beyond their first (L1) — is a multidisciplinary field drawing on linguistics, psychology, cognitive science, and education. Central questions i

second language acquisition SLA interlanguage Selinker critical period Lenneberg
J_5_11 Verified Ancient Technology

J_5_11 — Chinese Ancient Inventions: The Technological Cornucopia

Ancient and medieval China produced an extraordinary range of technological innovations — many predating their European counterparts by centuries to millennia. The classic formulation identifies the "Four Great Invention

China invention gunpowder compass paper printing
Q_2_09 Cosmology & Physics

Q_2_09 — Binary Star Systems and X-Ray Sources

Most stars in the Milky Way exist in binary or multiple-star systems — estimates range from ~50% for solar-type stars to >70% for massive O/B stars. Binary star interactions drive some of the most energetic phenomena in

binary stars X-ray binary Roche lobe accretion disk mass transfer neutron star