C C Carey
Biographic Data
| ID | 55022 |
|---|---|
| NAME | C C Carey |
| GIVEN NAMES | C C |
| FAMILY NAME | Carey |
| SIGNATURE | CAREY C C |
| AFFILIATIONS | Virginia Tech |
| ORCID | 0000-0001-8835-4476 |
| VERIFIED | Yes |
| TOTAL WORKS | 6 |
| TOTAL CITATIONS | 5 |
| AUTHOR COUNT | 6 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2019 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 1 |
A framework for developing a real-time lake phytoplankton forecasting system to support water quality management in the face of global change
Phytoplankton blooms create harmful toxins, scums, and taste and odor compounds and thus pose a major risk to drinking water safety. Climate and land use change are increasing the frequency and severity of blooms, motivating the development of new approaches for preemptive, rather than reactive, water management. While several real-time phytoplankton forecasts have been developed to date, none are both automated and quantify uncertainty in their …
Increasing exposure to global climate change and hopes for the era of climate adaptation
The Anthropocene is characterised by technological innovations, increases in industrial productivity, accelerating globalisation, and a rising computer- and information-based cultural evolution. At the same time , humankind is leaving significant footprints on its environment, with pollution approaching or even trespassing planetary boundaries. Since the 1980s, accelerating climate change has been severely affecting biomes and Earth’s systems wit…
Macrosystems Eddie Teaching Modules Increase Students’ Ability to Define, Interpret, and Apply Concepts in Macrosystems Ecology
Ecologists are increasingly using macrosystems approaches to understand population, community, and ecosystem dynamics across interconnected spatial and temporal scales. Consequently, integrating macrosystems skills, including simulation modeling and sensor data analysis, into undergraduate and graduate curricula is needed to train future environmental biologists. Through the Macrosystems EDDIE (Environmental Data-Driven Inquiry and Exploration) p…
Coupling Natural and Human Models in the Context of a Lake Ecosystem
A Practical Guide for Managing Interdisciplinary Teams
Interdisciplinary team science is essential to address complex socio-environmental questions, but it also presents unique challenges. The scientific literature identifies best practices for high-level processes in team science, e.g., leadership and team building, but provides less guidance about practical, day-to-day strategies to support teamwork, e.g., translating jargon across disciplines, sharing and transforming data, and coordinating divers…
Integrating fast and slow processes is essential for simulating human–freshwater interactions
Integrated modeling is a critical tool to evaluate the behavior of coupled human–freshwater systems. However, models that do not consider both fast and slow processes may not accurately reflect the feedbacks that define complex systems. We evaluated current coupled human–freshwater system modeling approaches in the literature with a focus on categorizing feedback loops as including economic and/or socio-cultural processes and identifying the simu…
A Practical Guide for Managing Interdisciplinary Teams
Interdisciplinary team science is essential to address complex socio-environmental questions, but it also presents unique challenges. The scientific literature identifies best practices for high-level processes in team science, e.g., leadership and team building, but provides less guidance about practical, day-to-day strategies to support teamwork, e.g., translating jargon across disciplines, sharing and transforming data, and coordinating divers…
A framework for developing a real-time lake phytoplankton forecasting system to support water quality management in the face of global change
Phytoplankton blooms create harmful toxins, scums, and taste and odor compounds and thus pose a major risk to drinking water safety. Climate and land use change are increasing the frequency and severity of blooms, motivating the development of new approaches for preemptive, rather than reactive, water management. While several real-time phytoplankton forecasts have been developed to date, none are both automated and quantify uncertainty in their …
Integrating fast and slow processes is essential for simulating human–freshwater interactions
Integrated modeling is a critical tool to evaluate the behavior of coupled human–freshwater systems. However, models that do not consider both fast and slow processes may not accurately reflect the feedbacks that define complex systems. We evaluated current coupled human–freshwater system modeling approaches in the literature with a focus on categorizing feedback loops as including economic and/or socio-cultural processes and identifying the simu…
Integrating fast and slow processes is essential for simulating human–freshwater interactions
Integrated modeling is a critical tool to evaluate the behavior of coupled human–freshwater systems. However, models that do not consider both fast and slow processes may not accurately reflect the feedbacks that define complex systems. We evaluated current coupled human–freshwater system modeling approaches in the literature with a focus on categorizing feedback loops as including economic and/or socio-cultural processes and identifying the simu…
Coupling Natural and Human Models in the Context of a Lake Ecosystem
A Practical Guide for Managing Interdisciplinary Teams
Interdisciplinary team science is essential to address complex socio-environmental questions, but it also presents unique challenges. The scientific literature identifies best practices for high-level processes in team science, e.g., leadership and team building, but provides less guidance about practical, day-to-day strategies to support teamwork, e.g., translating jargon across disciplines, sharing and transforming data, and coordinating divers…
Macrosystems Eddie Teaching Modules Increase Students’ Ability to Define, Interpret, and Apply Concepts in Macrosystems Ecology
Ecologists are increasingly using macrosystems approaches to understand population, community, and ecosystem dynamics across interconnected spatial and temporal scales. Consequently, integrating macrosystems skills, including simulation modeling and sensor data analysis, into undergraduate and graduate curricula is needed to train future environmental biologists. Through the Macrosystems EDDIE (Environmental Data-Driven Inquiry and Exploration) p…
A framework for developing a real-time lake phytoplankton forecasting system to support water quality management in the face of global change
Phytoplankton blooms create harmful toxins, scums, and taste and odor compounds and thus pose a major risk to drinking water safety. Climate and land use change are increasing the frequency and severity of blooms, motivating the development of new approaches for preemptive, rather than reactive, water management. While several real-time phytoplankton forecasts have been developed to date, none are both automated and quantify uncertainty in their …
Increasing exposure to global climate change and hopes for the era of climate adaptation
The Anthropocene is characterised by technological innovations, increases in industrial productivity, accelerating globalisation, and a rising computer- and information-based cultural evolution. At the same time , humankind is leaving significant footprints on its environment, with pollution approaching or even trespassing planetary boundaries. Since the 1980s, accelerating climate change has been severely affecting biomes and Earth’s systems wit…
Ecology (5 works) · Biology (4 works) · Computer Science (4 works) · Environmental Science (4 works) · Ecology (3 works) · Fish Ecology and Management Studies (3 works) · Aquatic Ecosystems and Phytoplankton Dynamics (2 works) · Climate change (2 works) · Environmental resource management (2 works) · Geology (2 works)