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Plate tectonics, surface mineralogy, and the early evolution of life
J. Parnell
*
*
Corresponding author for this work
Geology and Geophysics
Research output
:
Contribution to journal
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Article
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peer-review
14
Citations (Scopus)
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Physics & Astronomy
plates (tectonics)
100%
mineralogy
85%
continents
45%
uranium
28%
phosphates
28%
minerals
28%
quartz
25%
biological diversity
23%
habitability
21%
weathering
20%
granite
19%
biochemistry
18%
irradiation
18%
crusts
17%
thorium
17%
sediments
17%
mutations
16%
sands
15%
erosion
14%
phosphorus
13%
polymerization
13%
planets
13%
atmospheres
10%
carbon
9%
temperature
4%
Agriculture & Biology
tectonics
86%
mineralogy
84%
uranium
35%
quartz
34%
irradiation
23%
phosphate minerals
22%
thorium
21%
granite
19%
nuclear power
18%
weathering
17%
prebiotics
16%
mutation rate
15%
biochemistry
13%
polymerization
13%
sediments
13%
sand
12%
concentrates
11%
biodiversity
11%
minerals
10%
phosphorus
10%
phosphates
10%
carbon
9%
temperature
5%
Earth & Environmental Sciences
plate tectonics
62%
mineralogy
49%
irradiation
25%
uranium
25%
continent
23%
phosphate
22%
quartz
20%
nuclear power
17%
biochemistry
16%
thorium
16%
civilization
16%
mineral
15%
refuge
15%
polymerization
14%
mutation
14%
accretion
13%
planet
12%
weathering
11%
granite
11%
crust
10%
biodiversity
10%
phosphorus
10%
erosion
9%
sand
8%
atmosphere
8%
carbon
8%
land
7%
sediment
6%
temperature
5%
rate
4%
effect
3%