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Dr Ping Fu
Associate Professor in Geographical Science
School of Geographical Sciences
Geospatial and Geo-hazards Research Group
Email
Ping.Fu
nottingham.edu
cn
h-index
716
Scopus Citations
14
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2008
2024
Research activity per year
Overview
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Network
Projects
(2)
Research output
(29)
Similar Profiles
(6)
Supervised Work
(2)
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Dive into the research topics where Ping Fu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
10Be
10%
Abrasion
7%
China
8%
Cirque
15%
Equilibrium Line Altitude
9%
Erosion Pattern
9%
Gangdise Mountains
24%
Geomorphological Mapping
11%
Geospatial Big Data
9%
Glacial Advance
16%
Glacial Chronology
13%
Glacial Erosion
19%
Glacial Geomorphology
22%
Glacial History
10%
Glacial Landforms
8%
Glacial Lineations
7%
Glaciation
27%
Glacier
39%
Glacier Change
14%
Global Digital Elevation Model
9%
Global Last Glacial Maximum
10%
Hailuogou Glacier
14%
Ice Cap
30%
Ice-free
9%
Lateral Moraines
14%
Little Ice Age
14%
Meltwater
6%
Moraines
26%
Morphological Analysis
9%
Mountain Range
18%
Palaeoenvironmental Conditions
9%
Paleoglaciation
21%
Plateau Mountain
9%
Polythermal
9%
Quaternary Glaciations
14%
Radiocarbon Dating
9%
Radiometer
9%
Remote Sensing Big Data
9%
Shan
40%
Southeastern Tibetan Plateau
55%
Southern Tibet
9%
Southern Tibetan Plateau
14%
Spaceborne
9%
SRTM3
9%
Thermal Emission
9%
Thermal Reflection
9%
Tibet
21%
Tibetan Plateau
34%
Uncrewed Aerial Vehicle
7%
Urban Mapping
9%
Earth and Planetary Sciences
ASTER
11%
China
16%
Cirque
20%
Digital Elevation Model
17%
Equilibrium Line
9%
Geomorphological Mapping
6%
Geomorphological Response
23%
Glacial Drift
10%
Glacial Erosion
19%
Glacial History
9%
Glacial Landform
7%
Glacier Dynamics
5%
High Mountain
7%
Holocene
21%
Ice Cap
32%
Ice Sheet
5%
Ice Thickness
5%
Landform
14%
Landscape Evolution
8%
Last Glacial Maximum
10%
Lineation
13%
Little Ice Age
14%
Meltwater
6%
Mountain Range
19%
Orthophoto
5%
Radiocarbon Dating
9%
Satellite Imagery
6%
Tibet
29%
Tibetan Plateau
100%
Urban Land Use
9%
Valley Glacier
6%