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Fingerprint Dive into the research topics where Daniel Gimenez is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

water retention Earth & Environmental Sciences
soil Earth & Environmental Sciences
soil structure Agriculture & Biology
hydraulic conductivity Earth & Environmental Sciences
fractal dimensions Agriculture & Biology
cranberries Agriculture & Biology
saturated hydraulic conductivity Agriculture & Biology
water content Earth & Environmental Sciences

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Projects 2010 2020

Research Output 1991 2020

Exogenous and endogenous controls on the development of soil structure

Mohammed, A. K., Hirmas, D. R., Nemes, A. & Gimenez, D., Jan 1 2020, In : Geoderma. 357, 113945.

Rutgers, The State University

Research output: Contribution to journalArticle

soil structure
climate
soil
wet environmental conditions
humid zones

Decadal-scale shifts in soil hydraulic properties as induced by altered precipitation

Caplan, J. S., Giménez, D., Hirmas, D. R., Brunsell, N. A., Blair, J. M. & Knapp, A. K., Sep 11 2019, In : Science advances. 5, 9, aau6635.

Rutgers, The State University

Research output: Contribution to journalArticle

Open Access
hydraulics
soils
shift
infiltration
water

Dielectric permittivity-water content relationships in woodchips: Particle size and temperature effects

Amato, M. T., Subroy, V., Gimenez, D., Strom, P. & Krogmann, U., May 1 2019, In : Journal of Hydrology. 572, p. 251-260 10 p.

Rutgers, The State University

Research output: Contribution to journalArticle

permittivity
size effect
temperature effect
water content
particle size

Field and laboratory validation of ERT-detected subsurface heterogeneity at the meter scale

Bloem, E., Dathe, A., Nemes, A., Fernandez, P., French, H. K., Patterson, M. & Gimenez, D., Jan 1 2019, 24th European Meeting of Environmental and Engineering Geophysics. European Association of Geoscientists and Engineers, EAGE, (24th European Meeting of Environmental and Engineering Geophysics).

Rutgers, The State University

Research output: Chapter in Book/Report/Conference proceedingConference contribution

hydraulic property
soil
time domain reflectometry
water flow
tensiometer
13 Citations (Scopus)

Climate-induced changes in continental-scale soil macroporosity may intensify water cycle

Hirmas, D. R., Gimenez, D., Nemes, A., Kerry, R., Brunsell, N. A. & Wilson, C. J., Sep 6 2018, In : Nature. 561, 7721, p. 100-103 4 p.

Rutgers, The State University

Research output: Contribution to journalLetter

Water Cycle
Climate Change
Soil
Climate
Water