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Carl Renshaw
Carl Renshaw
Dartmouth Earth Sciences
Verified email at dartmouth.edu
Title
Cited by
Cited by
Year
An experimentally verified criterion for propagation across unbounded frictional interfaces in brittle, linear elastic materials
CE Renshaw, DD Pollard
International journal of rock mechanics and mining sciences & geomechanics …, 1995
7351995
On the relationship between mechanical and hydraulic apertures in rough‐walled fractures
CE Renshaw
Journal of Geophysical Research: Solid Earth 100 (B12), 24629-24636, 1995
4241995
Isotopic evolution of a seasonal snowpack and its melt
S Taylor, X Feng, JW Kirchner, R Osterhuber, B Klaue, CE Renshaw
Water Resources Research 37 (3), 759-769, 2001
2782001
Universal behaviour in compressive failure of brittle materials
CE Renshaw, EM Schulson
Nature 412 (6850), 897-900, 2001
2082001
Numerical simulation of fracture set formation: A fracture mechanics model consistent with experimental observations
CE Renshaw, DD Pollard
Journal of Geophysical Research: Solid Earth 99 (B5), 9359-9372, 1994
1991994
The educational effectiveness of computer-based instruction
CE Renshaw, HA Taylor
Computers & Geosciences 26 (6), 677-682, 2000
1982000
Landfill-stimulated iron reduction and arsenic release at the Coakley Superfund Site (NH)
JL Delemos, BC Bostick, CE Renshaw, S StÜrup, X Feng
Environmental science & technology 40 (1), 67-73, 2006
1752006
Effect of mechanical interactions on the scaling of fracture length and aperture
CE Renshaw, JC Park
Nature 386 (6624), 482-484, 1997
1621997
The efficacy of stream power and flow duration on geomorphic responses to catastrophic flooding
FJ Magilligan, EM Buraas, CE Renshaw
Geomorphology 228, 175-188, 2015
1452015
Connectivity of joint networks with power law length distributions
CE Renshaw
Water resources research 35 (9), 2661-2670, 1999
1391999
Rapid changes to global river suspended sediment flux by humans
EN Dethier, CE Renshaw, FJ Magilligan
Science 376 (6600), 1447-1452, 2022
1142022
Influence of subcritical fracture growth on the connectivity of fracture networks
CE Renshaw
Water Resources Research 32 (6), 1519-1530, 1996
1061996
Isotopic evolution of snowmelt 1. A physically based one‐dimensional model
X Feng, S Taylor, CE Renshaw, JW Kirchner
Water Resources Research 38 (10), 35-1-35-8, 2002
912002
Are large differential stresses required for straight fracture propagation paths?
CE Renshaw, DD Pollard
Journal of Structural Geology 16 (6), 817-822, 1994
911994
On the initiation of shear faults during brittle compressive failure: A new mechanism
EM Schulson, D Iliescu, CE Renshaw
Journal of Geophysical Research: Solid Earth 104 (B1), 695-705, 1999
891999
Impact of reach geometry on stream channel sensitivity to extreme floods
EM Buraas, CE Renshaw, FJ Magilligan, WB Dade
Earth Surface Processes and Landforms 39 (13), 1778-1789, 2014
882014
Measuring fracture apertures: A comparison of methods
CE Renshaw, JS Dadakis, SR Brown
Geophysical Research Letters 27 (2), 289-292, 2000
802000
Gradients in stream power influence lateral and downstream sediment flux in floods
JD Gartner, WB Dade, CE Renshaw, FJ Magilligan, EM Buraas
Geology 43 (11), 983-986, 2015
642015
Improving computer-assisted instruction in teaching higher-order skills
KJ Sinclair, CE Renshaw, HA Taylor
Computers & Education 42 (2), 169-180, 2004
642004
Mechanical controls on the spatial density of opening-mode fracture networks
CE Renshaw
Geology 25 (10), 923-926, 1997
641997
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