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science
Jul 08, 2020
How the chemical makeup of our planet’s core shaped its geologic history and habitability: Researchers examine how the presence of lighter elements in the predominantly iron core could affect the geodynamo’s genesis and sustainability
active galactic nuclei
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nervous system development
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old galaxies
origin of life
origins
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worm
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science
Jan 11, 2020
A long-sought-after class of “superdiamond” carbon-based materials with tunable mechanical and electronic properties was predicted and synthesized.
active galactic nuclei
airborne observatory
alternative energy
alternative energy sources
amazon ecology
antarctic meteorites
arabidopsis thaliana
asteroids
astrobiology
astrochemistry
astronomy
beta pictoris
big impact
biofuels
bioinformatics
biomarkers
biosphere ii
birth of the universe
black holes
carbon cycle
carbon cycling
carnegie caltech planet search
carnegie science
cell division
cell nucleus
cholesterol
cholesterol metabolism
chromosome structure
clear cutting
climate change
climate change and crop yields
climate modeling
comets
continent formation
core accretion
cosmology
crop improvement
dark energy
dark matter
desertification
developmental biology
diamonds
discovery
disk instability
distant galaxies
dna
doppler velocity technique
early universe
earth and planetary science
earth science
earthquakes
earth’s interior
ecology
ecosystems
edwin hubble
egg production and development
embryo development
entrepreneurial approach
essential exception
exceptional scientists
exoplanets
extragalactic distance scale
extrasolar planet atmospheres
extrasolar planets
extraterrestrial life
extraterrestrial material
extreme pressures
extremely large telescopes
extremophiles
fat processing
ferroelectrics
first principles
flat fish
frog
fruit fly
galaxy clusters
galaxy collisions
galaxy mergers
gamma-ray bursts
genetic engineering
genetic recombination
genetically modified organisms (gmos)
genetics and developmental biology
geochronology
giant magellan telescope
global climate change
global ecology
global warming
globular clusters
high-pressure physics
hubble constant
hydrogen
hydrogen fuel
hydrothermal vents
independent scientific research
internally funded research
interplanetary dust particles
invasive species
investigator driven research
life on mars
lipids
logging in amazon
m-31
maize
man-made diamonds
mars
materials science
matter at extreme states
mercury
messenger mission to mercury
metamorphosis
meteorites
milky way
mrna
multidisciplinary scientific research
nanomaterials
nanosensors
nanotechnology
nervous system development
nitrogen cycling
nitrogen pollution
ocean acidification
old galaxies
origin of life
origins
photosynthesis
planet evolution
planet formation theory
planet interiors
planetary exploration
planetary science
plant disease
plant disease resistance
plant genetics
plant nutrients
plant pest prevention
plant science
plate tectonics
protoplanets
quasars
rainforest destruction
remote sensing
retinal cancer
rise of earth’s atmosphere
rna
search for life
seed development
seismology
selective logging
sexual reproduction
small size
solar system evolution
stars
stellar disks
stellar evolution
stem cells
storage
superconductors
terrestrial planet formation
unconstrained
unconventional
universe evolution
volcanoes
world class paradigm-shifting research
worm
x-ray universe
yeast
zebrafish
science
Sep 19, 2019
Scientists are finally able to study the stomach flu (human norovirus) further after the development of zebrafish larvae as the first robust in vivo model for the virus.
gastrointestinal tract
larvae
norovirus
rna extraction
rna viruses
swimming
viral replication
zebrafish
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