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.

816 results for "Mu" — page 18 of 41

ZF_4_03 Verified Oceanography

ZF_4_03 — Desalination and Ocean Water Resources

Desalination — the removal of dissolved salts from seawater or brackish water to produce freshwater — has become an increasingly critical technology as global freshwater demand rises and climate change intensifies drough

desalination reverse osmosis water scarcity brine discharge membrane technology thermal desalination
ZF_4_02 Verified Oceanography

ZF_4_02 — Ocean Pollution and Plastic Debris

Ocean pollution encompasses the introduction of harmful substances and materials into the marine environment, degrading water quality, damaging ecosystems, and threatening human health. The major categories are: plastic

marine pollution plastic debris microplastic ocean garbage patch oil spill marine litter
ZF_4_07 Verified Oceanography

ZF_4_07 — Deep Ocean Mining and Mineral Resources

Deep-sea mining — the extraction of mineral resources from the ocean floor at depths of 200–6,000 m — is one of the most consequential and contested environmental issues in contemporary oceanography. Three primary resour

deep-sea mining polymetallic nodules manganese nodules seafloor massive sulfides cobalt-rich crusts ISA
ZF_4_18 Verified Oceanography

ZF_4_18 — Deep Ocean Microplastics

Deep ocean microplastics — synthetic polymer particles smaller than 5 mm that have infiltrated the deepest marine environments on Earth — represent one of the most alarming and poorly understood dimensions of global plas

microplastics nanoplastics deep sea ocean floor Mariana Trench sediment
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_15 Verified Oceanography

ZF_4_15 — Ocean Sediments: Deep-Sea Cores, Proxy Records, and Paleoclimate

Ocean sediments are the Earth's most comprehensive climate archive — a continuous record of planetary conditions extending back over 200 million years, slowly accumulated grain by grain on the deep seafloor at rates of m

ocean sediments deep-sea core marine sediment paleoclimate proxy foraminiferal isotopes oxygen isotopes
ZF_4_12 Verified Oceanography

ZF_4_12 — Underwater Acoustics and the SOFAR Channel

Sound is the dominant long-range information carrier in the ocean — electromagnetic radiation (light, radio) is rapidly absorbed in seawater, but sound can travel thousands of kilometers with remarkably little loss, maki

underwater acoustics SOFAR channel sound propagation deep sound channel sonar SOSUS
ZF_1_13 Verified Oceanography

ZF_1_13 — Continental Shelves: Submerged Geography and Ice Age Coastlines

Continental shelves — the shallow, gently sloping underwater extensions of continental landmasses — represent some of the most biologically productive, economically valuable, and archaeologically significant terrain on E

continental shelf continental margin submerged landscape ice age coastlines Last Glacial Maximum sea level change
ZF_1_18 Verified Oceanography

ZF_1_18 — Mesopelagic Zone Ecology

The mesopelagic zone (200–1,000 m depth) — the ocean's "twilight zone" — is emerging as one of the most ecologically and biogeochemically important yet poorly understood habitats on Earth. [KEY FINDING] Despite receiving

mesopelagic twilight-zone diel-vertical-migration biological-carbon-pump deep-scattering-layer micronekton
ZF_1_04 Oceanography

ZF_1_04 — Ocean-Climate Coupling: Paleoceanography

The ocean is Earth's primary climate regulator — absorbing ~93% of the excess heat trapped by greenhouse gases and ~30% of anthropogenic CO₂, storing 50 times more carbon than the atmosphere, and driving glacial-intergla

paleoceanography ice age Milankovitch cycles foraminifera oxygen isotope ocean carbon pump
Z_5_10 Verified Molecular Biology

Z_5_10 — Genome Editing Beyond CRISPR: TALENs, Base Editors, Prime Editors, and Next-Generation Tools

While CRISPR-Cas9 (covered in Z_1_02) dominates the genome editing landscape, it is neither the first nor the only precision genome editing technology. The field began with zinc finger nucleases (ZFNs) in the early 2000s

genome editing TALENs zinc finger nucleases ZFN base editing prime editing
Z_5_23 Verified Molecular Biology

Z_5_23 — Gene Drives: CRISPR-Based Inheritance Manipulation and Ecological Engineering

A gene drive is a genetic engineering technology that biases inheritance in sexually reproducing organisms, causing a modified gene to spread through a population at rates far exceeding normal Mendelian inheritance (~50%

gene drive CRISPR mutagenic chain reaction malaria Anopheles population suppression
Z_3_07 Molecular Biology

Z_3_07 — Gene Drive Technology

Gene drives are genetic systems that bias their own inheritance to spread through a population at rates exceeding normal Mendelian expectations (~50% → ~99% transmission). Natural selfish genetic elements (transposons, m

gene drive CRISPR gene drive selfish genetic element meiotic drive super-Mendelian inheritance Anopheles
Z_3_09 Molecular Biology

Z_3_09 — Conservation Genetics and Endangered Species

Conservation genetics applies population genetics, genomics, and molecular biology to the preservation of biological diversity. At its core is the recognition that genetic diversity — the raw material for adaptation to c

conservation genetics endangered species genetic diversity inbreeding depression effective population size genetic drift
Z_3_10 Molecular Biology

Z_3_10 — Genetics of Athletic Performance

Athletic performance is a highly polygenic trait with substantial heritability — twin studies estimate heritability of VO2max (maximal oxygen uptake) at ~50% (Bouchard et al., 1999, HERITAGE Family Study), muscle fiber c

sports genetics ACTN3 alpha-actinin-3 ACE angiotensin converting enzyme VO2max heritability
Z_3_11 Molecular Biology

Z_3_11 — Genetic Mosaicism and Chimerism

A fundamental assumption of genetics — that every cell in an individual's body carries the same genome — is wrong. Genetic mosaicism (the presence of two or more genetically distinct cell populations within an individual

genetic mosaicism somatic mosaicism chimerism tetragametic chimera microchimerism fetal microchimerism
Z_3_05 Molecular Biology

Z_3_05 — Viral Integration and Endogenous Retroviruses

Approximately 8% of the human genome consists of human endogenous retroviruses (HERVs) — the remnants of ancient retroviral infections that integrated into germline cells and were subsequently inherited vertically like a

endogenous retrovirus ERV HERV viral integration retrovirus reverse transcriptase
Z_2_15 Molecular Biology

Z_2_15 — Future of Genomics and Personalized Medicine

Genomics is undergoing a transition from research tool to clinical infrastructure. The cost of whole-genome sequencing (WGS) has plummeted from $2.7 billion (Human Genome Project, 1990–2003) to ~$200 per genome (Illumina

future genomics personalized medicine precision medicine polygenic risk scores whole genome sequencing newborn screening
Z_2_09 Molecular Biology

Z_2_09 — Mitochondrial Genetics and Diseases

Human mitochondrial DNA (mtDNA) is a 16,569-bp circular genome encoding 37 genes: 13 proteins (all subunits of the oxidative phosphorylation/OXPHOS complexes I, III, IV, and V), 22 transfer RNAs, and 2 ribosomal RNAs. Un

mitochondrial genetics mtDNA mitochondrial DNA mitochondrial disease oxidative phosphorylation OXPHOS
Z_2_16 Verified Molecular Biology

Z_2_16 — Cancer Genomics & Precision Oncology

Cancer genomics — the comprehensive analysis of the genetic alterations that drive cancer initiation, progression, and resistance to therapy — has transformed oncology from a tissue-of-origin classification system into a

cancer genomics precision oncology tumor sequencing oncogene tumor suppressor somatic mutation