Item talk:Q54747: Difference between revisions
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ORCID: | |||
'@context': http://schema.org | |||
'@id': https://orcid.org/0000-0003-3030-7065 | |||
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name: Selecting the optimal fine-scale historical climate data for assessing | |||
current and future hydrological conditions | |||
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name: "Discovery and potential ramifications of reduced iron-bearing nanoparticles\u2014\ | |||
magnetite, w\xFCstite, and zero-valent iron\u2014in wildland\u2013urban interface\ | |||
\ fire ashes" | |||
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name: "A Basin\u2010Scale Approach to Estimating Recharge in the Desert: Anza\u2010\ | |||
Cahuilla Groundwater Basin, CA" | |||
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name: Amplified Impact of Climate Change on Fine-Sediment Delivery to a Subsiding | |||
Coast, Humboldt Bay, California | |||
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name: "The basin characterization model\u2014A regional water balance software\ | |||
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name: "The Future of Sediment Transport and Streamflow Under a Changing Climate\ | |||
\ and the Implications for Long\u2010Term Resilience of the San Francisco\ | |||
\ Bay\u2010Delta" | |||
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name: "A Multi\u2010Scale Soil Moisture Monitoring Strategy for California:\ | |||
\ Design and Validation" | |||
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name: Increasing soil organic carbon to mitigate greenhouse gases and increase | |||
climate resiliency for California | |||
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name: Soil moisture datasets at five sites in the central Sierra Nevada and | |||
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name: Geothermal implications of a refined composition-age geologic map for | |||
the volcanic terrains of southeast Oregon, northeast California, and southwest | |||
Idaho, USA | |||
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name: "Characterizing Changes in Streamflow and Sediment Supply in the Sacramento\ | |||
\ River Basin, California, Using Hydrological Simulation Program\u2014FORTRAN\ | |||
\ (HSPF)" | |||
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name: Characterizing flow and sediment trends in the Sacramento River basin, | |||
CA using Hydrologic Simulation Program--FORTRAN (HSPF) | |||
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alternateName: CAWSC | |||
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name: US Geological Survey | |||
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name: California State University Sacramento | |||
- '@id': grid.27860.3b | |||
'@type': Organization | |||
alternateName: Geography | |||
name: University of California, Davis | |||
familyName: Stern | |||
givenName: Michelle | |||
mainEntityOfPage: https://orcid.org/0000-0003-3030-7065 | |||
USGS Staff Profile: | USGS Staff Profile: | ||
'@context': https://schema.org | '@context': https://schema.org |
Revision as of 14:57, 23 May 2024
ORCID:
'@context': http://schema.org '@id': https://orcid.org/0000-0003-3030-7065 '@reverse': creator: - '@id': https://doi.org/10.1175/jhm-d-21-0045.1 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1175/jhm-d-21-0045.1 name: Selecting the optimal fine-scale historical climate data for assessing current and future hydrological conditions - '@id': https://doi.org/10.1039/d2en00439a '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1039/d2en00439a name: "Discovery and potential ramifications of reduced iron-bearing nanoparticles\u2014\ magnetite, w\xFCstite, and zero-valent iron\u2014in wildland\u2013urban interface\ \ fire ashes" - '@id': https://doi.org/10.1111/1752-1688.12971 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1111/1752-1688.12971 name: "A Basin\u2010Scale Approach to Estimating Recharge in the Desert: Anza\u2010\ Cahuilla Groundwater Basin, CA" - '@id': https://doi.org/10.1007/s12237-021-00938-x '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1007/s12237-021-00938-x name: Amplified Impact of Climate Change on Fine-Sediment Delivery to a Subsiding Coast, Humboldt Bay, California - '@id': https://doi.org/10.3133/tm6h1 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/tm6h1 name: "The basin characterization model\u2014A regional water balance software\ \ package" - '@id': https://doi.org/10.1029/2019wr026245 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1029/2019wr026245 name: "The Future of Sediment Transport and Streamflow Under a Changing Climate\ \ and the Implications for Long\u2010Term Resilience of the San Francisco\ \ Bay\u2010Delta" - '@id': https://doi.org/10.1016/j.envsoft.2019.104555 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1016/j.envsoft.2019.104555 name: 'PFHydro: A New Watershed-Scale Model for Post-Fire Runoff Simulation' - '@id': https://doi.org/10.1111/1752-1688.12744 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1111/1752-1688.12744 name: "A Multi\u2010Scale Soil Moisture Monitoring Strategy for California:\ \ Design and Validation" - '@type': CreativeWork name: Increasing soil organic carbon to mitigate greenhouse gases and increase climate resiliency for California - '@id': https://doi.org/10.3133/ds1083 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/ds1083 name: Soil moisture datasets at five sites in the central Sierra Nevada and northern Coast Ranges, California - '@type': CreativeWork name: Geothermal implications of a refined composition-age geologic map for the volcanic terrains of southeast Oregon, northeast California, and southwest Idaho, USA - '@id': https://doi.org/10.3390/w8100432 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3390/w8100432 name: "Characterizing Changes in Streamflow and Sediment Supply in the Sacramento\ \ River Basin, California, Using Hydrological Simulation Program\u2014FORTRAN\ \ (HSPF)" - '@type': CreativeWork name: Characterizing flow and sediment trends in the Sacramento River basin, CA using Hydrologic Simulation Program--FORTRAN (HSPF) '@type': Person affiliation: '@type': Organization alternateName: CAWSC identifier: '@type': PropertyValue propertyID: RINGGOLD value: '2928' name: US Geological Survey alumniOf: - '@type': Organization alternateName: Geology identifier: '@type': PropertyValue propertyID: RINGGOLD value: '10695' name: California State University Sacramento - '@id': grid.27860.3b '@type': Organization alternateName: Geography name: University of California, Davis familyName: Stern givenName: Michelle mainEntityOfPage: https://orcid.org/0000-0003-3030-7065
USGS Staff Profile:
'@context': https://schema.org '@type': Person affiliation: [] description: - '@type': TextObject abstract: Hydrologist with the California Water Science Center additionalType: short description - '@type': TextObject abstract: Michelle is a hydrologist at the USGS California Water Science Center in Sacramento, CA. additionalType: staff profile page introductory statement - '@type': TextObject abstract: Her research focus is on climate change and soil moisture as key processes of watershed and regional-scale hydrologic modeling. Other research interests include geospatial analysis and sediment transport. She has also performed extensive laboratory work determining physical properties of soil samples and sediment cores. Current research includes refining and applying the Basin Characterization Model (BCM), and the development of an Hydrologic Simulation Program - FORTRAN (HSPF) model of the Sacramento River basin to determine future sediment supply to the Bay-Delta as part of the Computational Assessments of Scenarios of Change for the Delta Ecosystem (CASCaDE) project. A key goal of all her research is to determine a holistic understanding of watershed hydrologic processes at different spatial scales. additionalType: personal statement email: mstern@usgs.gov hasCredential: [] hasOccupation: - '@type': OrganizationalRole affiliatedOrganization: '@type': Organization name: California Water Science Center url: https://www.usgs.gov/centers/california-water-science-center roleName: Hydrologist startDate: '2024-05-12T15:25:32.641100' identifier: - '@type': PropertyValue propertyID: GeoKB value: https://geokb.wikibase.cloud/entity/Q54747 - '@type': PropertyValue propertyID: ORCID value: 0000-0003-3030-7065 jobTitle: Hydrologist knowsAbout: - '@type': Thing additionalType: self-claimed expertise name: hydrology - '@type': Thing additionalType: self-claimed expertise name: climate change - '@type': Thing additionalType: self-claimed expertise name: sediment transport - '@type': Thing additionalType: self-claimed expertise name: soil properties memberOf: '@type': OrganizationalRole member: '@type': Organization name: U.S. Geological Survey name: staff member startDate: '2024-05-12T15:25:32.638542' name: Michelle Stern url: https://www.usgs.gov/staff-profiles/michelle-stern