World's Best Scientists 2026 revealed!

D-Index & Metrics

Earth Science

D-Index
56
Citations
11488
World Ranking
2417
National Ranking
1016

Overview

Marek Zreda is affiliated with the University of Arizona in the United States. Their research spans multiple disciplines, focusing primarily on Environmental Science, Earth and Planetary Sciences, and Engineering. Within these fields, their work covers key subfields such as Environmental Engineering, Atmospheric Science, Civil and Structural Engineering, Global and Planetary Change, and Geophysics.

The scientist's main research topics include Soil Moisture and Remote Sensing, Soil and Unsaturated Flow, Climate Change and Permafrost, Climate Variability and Models, Precipitation Measurement and Analysis, and Geophysical Methods and Applications.

Zreda has coauthored extensively with other researchers, frequently collaborating with Heye Bogena, Karsten H. Jensen, Markus Köhli, Martin Schrön, and Steffen Zacharias.

Their recent peer-reviewed publications include:

  • The International Soil Moisture Network: serving Earth system science for over a decade, 2021, Hydrology and Earth System Sciences
  • Footprint characteristics revised for field-scale soil moisture monitoring with cosmic-ray neutrons, 2024, heiDOK (Heidelberg University)
  • COSMOS-Europe: a European network of cosmic-ray neutron soil moisture sensors, 2022, Earth System Science Data
  • A dense network of cosmic-ray neutron sensors for soil moisture observation in a highly instrumented pre-Alpine headwater catchment in Germany, 2020, Earth System Science Data
  • Cosmic Ray Neutron Soil Moisture Estimation Using Physically Based Site-Specific Conversion Functions, 2020, Water Resources Research

The publication venues where Zreda has frequently contributed include Earth System Science Data, Water Resources Research, Hydrology and Earth System Sciences, heiDOK (Heidelberg University), and Quaternary Science Reviews.

Best Publications

  • Assessment of the SMAP Passive Soil Moisture Product

    Steven K. Chan;Rajat Bindlish;Peggy E. O'Neill;Eni Njoku

  • Measuring soil moisture content non‐invasively at intermediate spatial scale using cosmic‐ray neutrons

    Marek Zreda;Darin Desilets;T. P. A. Ferré;Russell L. Scott

  • COSMOS: the COsmic-ray Soil Moisture Observing System

    M. Zreda;W. J. Shuttleworth;X. Zeng;C. Zweck

  • State of the Art in Large‐Scale Soil Moisture Monitoring

    Tyson E. Ochsner;Michael Harold Cosh;Richard H. Cuenca;Wouter Dorigo

  • Development and assessment of the SMAP enhanced passive soil moisture product

    S. K. Chan;R. Bindlish;P. O'Neill;T. Jackson

  • Nature's neutron probe: Land surface hydrology at an elusive scale with cosmic rays

    Darin Desilets;Marek Zreda;Ty P. A. Ferré

  • The International Soil Moisture Network: Serving Earth system science for over a decade

    Wouter Dorigo;Irene Himmelbauer;Daniel Aberer;Lukas Schremmer

  • Spatial and temporal distribution of secondary cosmic-ray nucleon intensities and applications to in situ cosmogenic dating

    Darin Desilets;Marek Zreda

  • Extended scaling factors for in situ cosmogenic nuclides: New measurements at low latitude

    Darin Desilets;Marek Zreda;T. Prabu

  • Cosmogenic Chlorine-36 Chronology for Glacial Deposits at Bloody Canyon, Eastern Sierra Nevada

    Fred M. Phillips;Marek G. Zreda;Stewart S. Smith;David Elmore

  • Footprint characteristics revised for field‐scale soil moisture monitoring with cosmic‐ray neutrons

    M. Köhli;M. Schrön;M. Zreda;U. Schmidt

  • Chronology for Fluctuations in Late Pleistocene Sierra Nevada Glaciers and Lakes

    Fred M. Phillips;Marek G. Zreda;Larry V. Benson;Mitchell A. Plummer

  • The CRONUS-Earth Project: A synthesis

    Fred M. Phillips;David C. Argento;Greg Balco;Marc W. Caffee

  • The Effect of Atmospheric Water Vapor on Neutron Count in the Cosmic-Ray Soil Moisture Observing System

    Rafael Rosolem;W. J. Shuttleworth;M Zreda;Trenton E. Franz

  • Cosmogenic 36Cl and 10Be ages of Quaternary glacial and fluvial deposits of the Wind River Range, Wyoming

    Fred M. Phillips;Marek G. Zreda;John C. Gosse;Jeffrey Klein

  • Cosmogenic chlorine-36 production rates in terrestrial rocks

    Marek G. Zreda;Fred M. Phillips;David Elmore;Peter W. Kubik

  • Measurement depth of the cosmic ray soil moisture probe affected by hydrogen from various sources

    Trenton E. Franz;M. Zreda;T. P. A. Ferre;Rafael Rosolem

  • Footprint diameter for a cosmic‐ray soil moisture probe: Theory and Monte Carlo simulations

    Darin Desilets;Marek Zreda

  • Cold and wet Last Glacial Maximum on Mount Sandıras, SW Turkey, inferred from cosmogenic dating and glacier modeling

    Mehmet Akif Sarıkaya;Marek Zreda;Attila Çiner;Chris Zweck

  • Status and perspectives on the cosmic-ray neutron method for soil moisture estimation and other environmental science applications.

    Mie Andreasen;Karsten H. Jensen;Darin Desilets;Trenton E. Franz

  • Glaciations and paleoclimate of Mount Erciyes, central Turkey, since the Last Glacial Maximum, inferred from 36Cl cosmogenic dating and glacier modeling

    Mehmet Akif Sarıkaya;Marek Zreda;Attila Çiner

Frequent Co-Authors

Fred M. Phillips
Fred M. Phillips New Mexico Institute of Mining and Technology
David Elmore
David Elmore Purdue University West Lafayette
Trenton E. Franz
Trenton E. Franz University of Nebraska–Lincoln
Michael H. Cosh
Michael H. Cosh Agricultural Research Service
Heye Bogena
Heye Bogena Forschungszentrum Jülich
Eric E. Small
Eric E. Small University of Colorado Boulder
Attila Çiner
Attila Çiner Istanbul Technical University
Ty P. A. Ferré
Ty P. A. Ferré University of Arizona
Jeffrey P. Walker
Jeffrey P. Walker Monash University
José Martínez-Fernández
José Martínez-Fernández University of Salamanca

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Studying Earth Science opens doors to diverse career paths, many of which benefit from interdisciplinary skills. For instance, understanding how to manage and organize extensive data can be crucial, making a is library science a good career exploration relevant for those interested in information management within environmental research.

Visual communication plays a significant role in Earth Science, especially in presenting data and fieldwork results. Exploring photography colleges online can provide useful skills for creating compelling visual content, which enhances scientific storytelling and public engagement.

Veterans looking to transition into environmental fields can find supportive resources through online photography degree programs for veterans, blending technical expertise with creative expression—valuable for documenting ecological projects.

Additionally, language skills are invaluable for global collaboration in Earth Science. Pursuing a spanish online degree can enhance communication and open international opportunities in environmental research and policy.

Best Scientists Citing Marek Zreda

Trending Scientists

Recently Published Articles