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3,698 results for "g minus 2" — page 2 of 185

Z_2_11 Molecular Biology

Z_2_11 — Genetics of Immunity and MHC Diversity

The major histocompatibility complex (MHC) — known as the human leukocyte antigen (HLA) system in humans — is the most polymorphic gene region in the human genome, encoding cell-surface glycoproteins essential for adapti

major histocompatibility complex MHC HLA human leukocyte antigen adaptive immunity antigen presentation
Z_2_07 Molecular Biology

Z_2_07 — Genetics of Disease Resistance

Infectious disease has been the most powerful selective force shaping the human genome, leaving signatures across thousands of loci. The best-understood example is sickle cell disease (HbS, Glu6Val in HBB): heterozygous

disease resistance natural selection pathogen-driven selection sickle cell malaria resistance HbS
Z_4_21 Verified Molecular Biology

Z_4_21 — Autophagy Mechanisms

Autophagy (from Greek, "self-eating") is a fundamental cellular process by which eukaryotic cells degrade and recycle their own components — damaged organelles, protein aggregates, intracellular pathogens, and surplus cy

autophagy autophagosomes lysosome Ohsumi ATG genes mTOR
Z_4_20 Verified Molecular Biology

Z_4_20 — Quorum Sensing in Bacteria

Quorum sensing (QS) is a chemical communication system used by bacteria to coordinate gene expression in response to population density — enabling single-celled organisms to exhibit collective behaviors that would be ine

quorum sensing autoinducer AHL AI-2 bioluminescence biofilm
K_2_15 Verified Consciousness

K_2_15 — Glial Cells and the Tripartite Synapse: The Brain's Other Half

Glial cells (neuroglia) — comprising astrocytes, oligodendrocytes, microglia, and NG2 glia in the central nervous system, plus Schwann cells and satellite cells in the peripheral nervous system — constitute approximately

glia astrocyte microglia oligodendrocyte Schwann cell tripartite synapse
K_2_16 Verified Consciousness

K_2_16 — Optogenetics: Light-Controlled Neural Circuits

Optogenetics is a biological technique that uses genetically encoded light-sensitive proteins (opsins) to control the activity of specific neurons with millisecond precision using light. Developed primarily by Karl Deiss

optogenetics channelrhodopsin halorhodopsin archaerhodopsin ChR2 opsins
E_3_06 Cataclysms & Chronology

E_3_06 — The 8.2 Kiloyear Event: Sudden Cooling and Neolithic Disruption

The 8.2 kiloyear event (~6200 BCE) was the most severe abrupt climate oscillation of the Holocene, triggered by a catastrophic outburst flood from glacial Lakes Agassiz and Ojibway into the North Atlantic via Hudson Bay.

8.2 ka event Bond Event 5 Lake Agassiz outburst flood Neolithic disruption AMOC
E_2_07 Cataclysms & Chronology

E_2_07 — The 4.2 Kiloyear Event — Bronze Age Climate Catastrophe

The 4.2 kiloyear event (~2200 BCE) was a severe, century-scale aridification episode that constitutes one of the most significant abrupt climate changes of the Holocene. Identified through speleothem, marine sediment, an

4.2 kiloyear event megadrought Akkadian Empire collapse Old Kingdom Egypt Indus Valley decline Liangzhu collapse
E_2_08 Cataclysms & Chronology

E_2_08 — Little Ice Age — Climate, Society, and the Modern World

The Little Ice Age (LIA) was a prolonged period of climatic cooling that affected much of the Northern Hemisphere from approximately 1300 to 1850 CE, with coldest intervals during the Maunder Minimum (1645–1715) and the

Little Ice Age Maunder Minimum sunspot volcanic forcing Samalas 1257 Tambora 1815
E_2_20 Verified Cataclysms & Chronology

E_2_20 — Medieval Warm Period: Climate Optimum and Civilizational Flourishing

The Medieval Warm Period (MWP) — increasingly referred to in scientific literature as the Medieval Climate Anomaly (MCA) to emphasize its complex spatial patterns — was a period of relatively warm climatic conditions acr

Medieval Warm Period MWP Medieval Climate Anomaly MCA Little Ice Age climate optimum
E_2_04 Cataclysms & Chronology

E_2_04 — Permian-Triassic Great Dying — The Biggest Mass Extinction

Approximately 252 million years ago, at the boundary between the Permian and Triassic periods, Earth experienced the worst mass extinction in its entire history — an event so devastating it has been called "The Great Dyi

Permian Triassic Great Dying mass extinction Siberian Traps volcanism
E_2_23 Verified Cataclysms & Chronology

E_2_23 — Bronze Age Collapse Synthesis: Multi-Causal Analysis c. 1200 BCE

The Late Bronze Age Collapse (c. 1200–1150 BCE) represents one of history's most dramatic civilizational discontinuities: within approximately 50 years, the interconnected palace economies of the Mycenaean kingdoms, the

bronze-age-collapse 1200-bce sea-peoples systems-collapse mycenaean-fall hittite-collapse
E_4_26 Credible Cataclysms & Chronology

E_4_26 — Younger Dryas Impact Evidence: A Comprehensive Review

The Younger Dryas Impact Hypothesis (YDIH) proposes that one or more extraterrestrial objects (comet or asteroid fragments) struck or exploded over the Earth approximately 12,900 years ago (12.9 ka BP), triggering the Yo

Younger Dryas impact hypothesis YDIH nanodiamonds platinum anomaly black mat
E_4_02 Cataclysms & Chronology

E_4_02 — Radiocarbon Calibration & Chronology Shifts

This document examines Radiocarbon Calibration & Chronology Shifts, a topic within the Cataclysms and Chronology research area. Key areas of investigation include The Physics , Key Parameters, What Can Be Dated. Notable

radiocarbon C-14 IntCal20 dendrochronology Hallstatt Plateau reservoir effect
ZG_5_22 Verified Linguistics & Communication

ZG_5_22 — Chemical Grammar: Information and Communication in Microbial Systems

Bacterial populations communicate. They sense their own density via secreted small-molecule autoinducers, distinguish self from non-self via species-specific signals, exchange information across kingdoms via universal AI

quorum sensing autoinducer biofilm microbial communication chemical signaling AHL
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
ZG_3_02 Verified Linguistics & Communication

ZG_3_02 — FOXP2 and the Genetics of Language

FOXP2 (Forkhead Box Protein P2) is the first gene directly linked to human speech and language ability, located on chromosome 7q31 and encoding a transcription factor that regulates hundreds of downstream genes involved

FOXP2 KE family speech language gene transcription factor chromosome 7
Q_1_02 Cosmology & Physics

Q_1_02 — Big Bang & Alternative Cosmologies

The Big Bang theory — that the observable universe expanded from an extremely hot, dense state ~13.8 billion years ago — is supported by three independent pillars: cosmic microwave background radiation (CMB, discovered 1

Big Bang cosmic microwave background inflation cyclic universe Big Bounce steady state
Q_2_15 Verified Cosmology & Physics

Q_2_15 — Magnetars and Fast Radio Bursts

Magnetars are neutron stars with ultra-strong magnetic fields (B ~ 10¹³–10¹⁵ gauss — a thousand times stronger than typical radio pulsars and ~10¹⁰ times the strongest laboratory magnets), powered not by rotation (as wit

magnetar fast radio burst FRB soft gamma repeater SGR anomalous X-ray pulsar
Q_2_14 Verified Cosmology & Physics

Q_2_14 — Gamma-Ray Bursts

Gamma-ray bursts (GRBs) are the most energetic electromagnetic events in the universe — brief, intense flashes of gamma radiation that, when corrected for beaming, release ~10⁴⁴–10⁴⁷ joules in seconds to minutes. First d

gamma-ray burst GRB long GRB short GRB Vela satellite afterglow