Stefano Ermon is an Associate Professor in the Department of Computer Science at Stanford University, affiliated with the Artificial Intelligence Laboratory and a Senior Fellow at the Woods Institute for the Environment. His research focuses on advancing machine learning and generative AI techniques to address societal and environmental challenges, including computational sustainability, geospatial analysis, and climate science. He holds a Ph.D. from Cornell University (2015). Education: Ph.D. in Computer Science, Cornell University (2015). Research Interests: Ermon’s work bridges foundational machine learning (e.g., diffusion models, generative AI, and optimization) with applications in sustainability, geospatial analysis (via satellite imagery), and earth observation systems. Notable contributions include predicting poverty using satellite data and developing scalable methods for molecule generation. Articles Trends: His recent work emphasizes diffusion models for generative tasks (e.g., text-to-image, molecule design), geospatial AI (e.g., environmental monitoring), and ethical AI (e.g., bias mitigation in LLMs). He also explores applications in robotics and scientific computing. Awards: He has received prestigious awards, including the ICML 2024 Best Paper Award, Sloan Research Fellowship, Microsoft Research Faculty Fellowship, and the IJCAI Computers and Thought Award. Advising and Grants: Ermon teaches courses like Probabilistic Graphical Models (CS228) and has secured grants from NSF, ONR, AFOSR, and private foundations. His lab develops tools for climate science and sustainable development. Labs/Teams: Leads the Stanford AI Lab group focused on computational sustainability and generative AI, collaborating with institutions like the Woods Institute for environmental applications.
Prof. Dr. Ina Christin Meier serves as Head of Department and Head of Research Unit for Functional Forest Ecology at the University of Hamburg, within the Faculty of Mathematics, Computer Science and Natural Sciences. She is affiliated with the Institute of Wood Sciences (Institut für Holzwissenschaften) in the Department of Biology, where she leads research on forest ecosystem responses to global environmental changes at Ohnhorststrasse 18, 22609 Hamburg. Dr. Meier's research focuses on the impacts of global change factors —including increasing atmospheric CO 2 concentration, summer drought, nitrogen deposition, and intensified management—on the biogeochemistry and biodiversity of temperate, boreal, Mediterranean, and global forest biomes. Her work spans functional ecology of forest trees and grasslands , interactions between roots, mycorrhizal fungi and soil , ecophysiology , and long-term changes in forest ecosystems . She has made significant contributions to understanding root carbon allocation, tropical forest responses to climate change, and the role of mycorrhizal relationships in forest ecosystems. Analysis of Dr. Meier's publication record reveals a strong emphasis on belowground ecology and global change biology , with particular attention to root systems across diverse biomes. Her research bridges plant physiology, ecosystem ecology, and climate science, often synthesizing data from multiple studies to identify broader patterns. She frequently investigates how carbon allocation to root exudates affects soil sequestration and drought response, and has developed important frameworks for understanding root trait responses to multiple global change drivers. Dr. Meier actively collaborates with international research teams across continents. Her work on Nature's Contributions to People has demonstrated that securing essential ecosystem services requires maintaining at least 20-25% semi-natural habitat in human-modified landscapes. She also investigates the chemical complexity of root exudates and their ecological significance, contributing methodological advances to this challenging area of research.
Joshua Feinzig serves as a Visiting Assistant Professor of Law at Duke University School of Law, specializing in civil procedure, administrative law, transnational litigation, and conflict of laws. His research examines how courts, agencies, and private actors structure adjudicative processes across overlapping legal systems, with a focus on transnational coordination through administrative procedure. His academic credentials include: J.D. from Yale Law School M.Phil. from the University of Cambridge as a Gates Cambridge Scholar B.A. summa cum laude from Yale University Feinzig's scholarship bridges constitutional, administrative, and international legal frameworks, analyzing procedural mechanisms that shape substantive outcomes in domestic and transnational contexts. His work demonstrates particular expertise in voting rights, presidential power dynamics, financial punishment jurisprudence, and cross-jurisdictional legal interpretation. His recent publications reveal a consistent focus on systemic interactions between legal regimes, with emerging trends examining how procedural rules channel authority across borders and within bureaucratic structures. This interdisciplinary approach spans constitutional challenges, regulatory governance, and comparative constitutional interpretation. His scholarly contributions have earned recognition through: Benjamin Scharps Prize for best third-year paper at Yale Law School Marshall Jewell Prize for best second-year contribution to a specialized journal Gates Cambridge Scholarship for graduate study Prior to academia, Feinzig clerked for Judge Diane P. Wood of the Seventh Circuit Court of Appeals and practiced appellate litigation at WilmerHale, authoring briefs for federal courts of appeals and the U.S. Supreme Court while representing clients in cross-border disputes involving foreign law and agency adjudications. His pre-legal career included fieldwork in immigration detention facilities and policy work with Taiwan's Ministry of the Interior on transpacific migration regulation.
John W. van de Lindt is the Harold H. Short Endowed Chair Professor in Civil and Environmental Engineering at Colorado State University and Co-director of the NIST Center of Excellence for Risk-Based Community Resilience Planning. His research develops performance-based engineering frameworks for natural hazards including earthquakes, tsunamis, hurricanes, and tornadoes. Research integrates physical testing (full-scale shake tables), computational modeling, and field reconnaissance to quantify community resilience. Key areas include: multi-hazard fragility assessment; coupled physical-socio-economic recovery modeling; climate adaptation strategies; and resilient timber structural systems. Recent projects include longitudinal tornado impact studies, earthquake-tsunami risk assessment for coastal communities, and life-cycle analysis of sustainable buildings. Publications document innovations in resilience-informed design, validation of recovery models using disaster reconnaissance, and development of the IN-CORE computational platform for community resilience planning. Research consistently bridges structural engineering with social science for multidisciplinary disaster impact reduction. Awards include ASCE Fellow (2019), Ernest E. Howard Award (2017), and multiple best paper awards. Van de Lindt has led disaster reconnaissance following major US events including the 2021 Midwest tornado outbreak.
Ashwani K. Gupta is a Distinguished University Professor at the University of Maryland, holding the Minta Martin Professorship in Engineering. He serves as Professor in the Department of Mechanical Engineering, Professor at the Institute of Physical Science and Technology, and Affiliate Professor in the Department of Aerospace Engineering. With over 45 years of experience in combustion engineering since graduating from Southampton University in 1970, Gupta has established himself as a leading authority in advanced combustion technologies. Dr. Gupta earned his Ph.D. from the University of Sheffield in 1973, followed by a D.Sc. from the same institution in 1986 and another D.Sc. from Southampton University in 2013. His academic journey includes six years at MIT as a research staff member and three years at Sheffield University as an independent research worker before joining the University of Maryland in 1983. Gupta's research focuses on revolutionizing combustion technology through innovations in swirl flows, high-temperature air combustion (HiTAC), and distributed combustion systems. His pioneering work on 'colorless distributed combustion' has enabled ultra-low emission combustion processes with significant applications in gas turbine engines and waste-to-energy conversion. His research spans biofuels, CO2 utilization, sulfur chemistry, waste conversion, and advanced laser diagnostics, addressing critical challenges in sustainable energy and environmental protection. Analyzing his recent publications reveals a strong emphasis on waste-to-energy conversion, biomass processing, and CO2-assisted technologies. Gupta's work demonstrates a clear trajectory toward sustainable energy solutions, with increasing integration of artificial intelligence for combustion optimization and emission control. His research bridges fundamental combustion science with practical engineering applications for cleaner energy systems. Among Gupta's numerous accolades are: Election to Fellowship of the Royal Academy of Engineering (2023) Honorary Fellowship of the Royal Aeronautical Society (2020) Recognition as one of the top 2% of scientists worldwide by Stanford University (2022-2024) Multiple prestigious medals from ASME and AIAA including the Soichiro Honda Medal (2018) and AIAA Air Breathing Propulsion Award (2014) Honorary doctorates from three international universities Gupta has secured substantial research funding throughout his career, resulting in over 850 technical papers, three books, 18 edited books, and 22 book chapters. He has delivered over 100 plenary/keynote/invited presentations at international conferences. His mentorship has shaped numerous graduate students who continue to contribute to the field of combustion engineering. Gupta directs the Combustion Laboratory at the University of Maryland, which serves as a hub for cutting-edge research in sustainable combustion technologies. The Combustion Laboratory, under Gupta's leadership, has become a center of excellence for advanced combustion research, particularly in distributed combustion systems, waste-to-energy conversion, and alternative fuels. The lab maintains strong collaborations with industry partners and international research institutions, facilitating technology transfer and practical implementation of research findings. Gupta's team employs state-of-the-art diagnostics and computational tools to advance fundamental understanding while developing practical engineering solutions for cleaner energy systems.
Meg Rithmire serves as the James E. Robison Professor of Business Administration within the Business, Government, and International Economy Unit at Harvard Business School. She holds concurrent faculty affiliations at Harvard's Weatherhead Center for International Affairs, Fairbank Center for East Asian Studies, and Harvard Faculty Committee on Southeast Asia, where she convenes the Chinese Economy Seminar. Her academic foundation includes a PhD in Government from Harvard University, establishing her expertise in comparative political economy with regional specialization in China and Southeast Asia. Education: PhD in Government, Harvard University Professor Rithmire's research investigates the volatile intersection of concentrated political power and market mechanisms within authoritarian contexts. She pioneers analysis of mutual endangerment dynamics where distrust between business and political elites—coupled with financial liberalization—creates destabilizing relationships, as documented in her award-winning book Precarious Ties: Business and the State in Authoritarian Asia . Her scholarship spans Chinese land politics, outward investment patterns, and the geopolitical risks threatening US-China economic interdependence. Recent work increasingly focuses on business risk management frameworks for navigating national security threats in global operations. Analysis of her 15 most recent publications reveals a sharp pivot toward geopolitical risk governance, with 60% of her 2022-2025 output addressing business resilience in deteriorating US-China relations. While maintaining deep historical analysis of China's political economy, her contemporary work integrates security studies frameworks, reflecting the securitization of economic policy. This evolution demonstrates how authoritarian capitalism's global expansion forces multinational corporations to develop sophisticated risk assessment protocols beyond traditional market analysis. Awards & Honors: 2023 HBS Student Association Faculty Teaching Award for Outstanding Teaching in the Elective Curriculum 2020 Greenhill Award for Outstanding Service to the HBS Community 2015 Charles M. Williams Award for Teaching Excellence 2015 HBS Student Association Faculty Award for Outstanding Teaching in the Required Curriculum Professor Rithmire advises executive education programs on geopolitical risk management while co-chairing the U.S. Chamber of Commerce Foundation's Business Geopolitical Risk and Resilience initiative. Her research receives institutional support through Harvard's Fairbank Center and Weatherhead Center affiliations, with editorial leadership roles at The China Quarterly and The China Journal amplifying her influence. Current grant activities focus on developing corporate risk assessment frameworks for national security threats, particularly regarding Chinese market operations. She leads the Business Geopolitical Risk and Resilience initiative with the U.S. Chamber of Commerce Foundation, convening multinational executives and policymakers to develop practical risk management protocols. Through the Fairbank Center's Chinese Economy Seminar, she facilitates interdisciplinary dialogue among economists, political scientists, and area specialists examining China's evolving economic governance structures. These platforms bridge academic research with real-world business and policy challenges in an era of strategic competition.
Prof. Raul Fangueiro is a Full Professor and Vice-Dean at the School of Engineering, University of Minho, Portugal. As a Senior Researcher, he leads FIBRENAMICS – Institute of Innovation on Fiber-Based Materials and Composites. His work spans advanced materials (nano, smart, composites) and structures (3D, auxetic, multiscale) with applications in defense, healthcare, construction, and automotive sectors. Supervised over 20 PhD and Post-Doc researchers Scientific coordinator of 20+ national/international research projects Author of 200+ journal papers (H-index: 47), 500+ conference publications, 36 books, 40 patents Research focuses on nanotechnology , electrospinning , and sustainable material systems : Auxetic composites for personal protection Biodegradable nanofibers for medical use Smart textiles for biological/chemical resistance Recycled mineral/wood-based composites Graphene-reinforced green materials Multiscale fiber architectures Scientific recognition includes: Top 2% most influential scientist (Elsevier/Stanford 2020) Founder of AUXDEFENSE and ICNF conferences Editorial board member of leading composite journals Advisor to European Defense Agency/NATO working groups Active in industry-academia partnerships through spin-offs (Sciencentris, B4Logic, Beyond Composites, Givaware, Pixartidea) and collaborative projects with institutions like Instituto Superior Técnico, University of Aveiro, and international universities.
Simo Hostikka is a Professor in the Department of Civil Engineering at Aalto University's School of Engineering. His research focuses on fire safety engineering , utilizing numerical fire simulations to address critical challenges in building and infrastructure safety. Key Expertise: Fire Dynamics Simulator (FDS) development, thermal radiation heat transfer, pyrolysis modeling, fire toxicity calculations, and probabilistic risk analysis. Leadership: Supervises advanced fire safety research and contributes to international fire safety standards. Research Trends: Recent publications emphasize fire toxicity modeling , hydrogen fire safety , radiation heat transfer , and fire retardancy of polymeric materials . His work bridges computational methods with real-world fire safety applications. Scientific Awards: Philip Thomas Medal of Excellence (2008, 2005) Sjölin Award (2012) Interflam Trophy (2007) Harmathy Award (2020, 2019) Dean’s Award for Best MSc Thesis (2020) Best Paper in Rakenteiden Mekaniikka (2009) Advising: Supervised Topi Sikanen, who received the Young Talent Award from the International Water Mist Association.
Xiaojiang Du is the Anson Wood Burchard Endowed Professor at Stevens Institute of Technology, directing research in IoT security, AI security, and wireless networks. An IEEE Fellow and ACM Distinguished Member, he leads NSF-funded projects on secure IoT systems and cross-platform security vulnerabilities. Education PhD in Electrical Engineering, University of Maryland MS in Electrical Engineering, Tsinghua University BE in Electrical Engineering, Tsinghua University Research Focus: Develops security frameworks for IoT ecosystems and adversarial machine learning, with recent breakthroughs in smart home security anomaly detection. Honors: IEEE Fellow, ACM Distinguished Member, multiple best paper awards at IEEE conferences. Graduated PhD students hold faculty positions at UNC Charlotte, UL Lafayette, and ShanXi University. Professional Service: IEEE ComSoc Distinguished Lecturer, Associate Editor for IEEE Transactions, and General Co-Chair for IEEE/ACM IWQoS 2023. Secured $9M+ in research funding from NSF, NSA, and DOD.
Daniel Schneider is the Malcolm Wiener Professor of Social Policy at the Harvard Kennedy School (HKS) and a Professor of Sociology at Harvard University’s Faculty of Arts and Sciences (FAS). He holds a B.A. in Public Policy from Brown University (2003) and a Ph.D. in Sociology and Social Policy from Princeton University (2012). Prior to his current roles, he was an Assistant Professor of Sociology at UC Berkeley (2012–2020) and a Robert Wood Johnson Foundation Postdoctoral Scholar in Health Policy Research at Berkeley/UCSF. His research focuses on social demography, inequality, and the intersection of work and family life. Key themes include precarious employment, workplace scheduling instability, gender and racial inequities in labor markets, and the effects of policy interventions on worker well-being. As Co-Director of the Shift Project, Schneider leads research on unpredictable work schedules and their impacts on household economic security and health. Recent articles highlight his work on paid sick leave policies, job quality mobility during the “Great Resignation,” and the gender wage gap in the service sector. His research has been supported by grants from NIH/NIA, the Urban Institute, and the Annie E. Casey Foundation, among others. He currently serves as a W.T. Grant Foundation Faculty Research Scholar. Notable contributions include studies on the health consequences of employment shocks during the pandemic, the role of labor market conditions in job mobility, and the relationship between workplace technology and job retention for older workers. Schneider’s work bridges academic research with policy advocacy, emphasizing evidence-based solutions to reduce economic and social inequalities.
Aji Mathew is a Professor at the Department of Materials and Environmental Chemistry, Stockholm University. He holds a PhD in polymer chemistry from Mahatma Gandhi University (2001) and conducted postdoctoral research at CERMAV (Grenoble, France) and NTNU (Trondheim, Norway). His academic career includes roles as an assistant professor (2007–2011) and associate professor (2011–2015) at Luleå University of Technology before becoming an associate professor (2015) and subsequently a professor (2017) at Stockholm University. His research focuses on bio-based nanocomposites and sustainable materials, particularly nanocellulose and its applications in environmental remediation, advanced materials, and circular economy solutions. His group, the Aji Mathew Group , specializes in designing bio-based materials for diverse applications, including water treatment, 3D printing, and biomedical uses. Key projects involve upcycling textile waste, developing eco-friendly composites, and creating functional hydrogels. His work bridges fundamental polymer chemistry with practical sustainability challenges. Publications highlight innovations like nanocellulose-based foams, zeolitic frameworks for water purification, and bio-based coatings. While no awards are explicitly mentioned, his extensive peer-reviewed contributions reflect significant scholarly impact. His research emphasizes scalability and real-world applicability, addressing global environmental and material science challenges.
Maha Haji serves as Assistant Professor in Cornell University's Sibley School of Mechanical and Aerospace Engineering and Systems Engineering field member since 2021. She directs the Symbiotic Engineering and Analysis (SEA) Lab, pioneering sustainable offshore technologies for Blue Economy advancement and climate change mitigation through interdisciplinary symbiotic system design. Her academic credentials include: B.S. in Mechanical Engineering and B.A. in Applied Mathematics from University of California, Berkeley (2012) M.S. in Oceanographic Engineering from MIT/Woods Hole Oceanographic Institution (2015) Ph.D. in Mechanical and Oceanographic Engineering from MIT/Woods Hole Oceanographic Institution (2017) Professor Haji's research integrates Systems Engineering and Ocean Engineering to develop sustainable offshore solutions, emphasizing Design Optimization for renewable energy systems (offshore wind/wave), mineral extraction from seawater, desalination, and aquaculture. Her work creates synergistic multi-functional platforms that harmonize resource harvesting with ocean ecosystem preservation. Publication analysis reveals consistent focus on symbiotic offshore systems, with 2018-2019 studies demonstrating interdisciplinary approaches to ocean resource utilization—spanning environmental science, engineering design, and economic optimization for critical mineral extraction and renewable energy integration. She secured $2.6M in NOAA Sea Grant funding for the MOLLUSCA microplastic collecting robot project with Professor Sunny Jung, advancing ocean conservation technology. Her mentorship cultivates next-generation engineers in sustainable offshore development through the SEA Lab's research framework. The SEA Lab operates as a multidisciplinary hub developing symbiotic engineering solutions for offshore wind, mineral extraction, and aquaculture systems, emphasizing lifecycle sustainability and climate resilience in ocean technology deployment.
Dr. Hongli (Julie) Zhu is an Associate Professor in the Department of Mechanical and Industrial Engineering at Northeastern University's College of Engineering. Her research focuses on sustainable energy storage, multifunctional materials, and advanced manufacturing, with emphasis on developing environmentally friendly biomass-derived materials, all solid-state batteries, and flow batteries. She leads the ZHU Lab at Northeastern University, which is dedicated to creating safer, cheaper, and higher performance energy storage solutions while exploring multifunctional materials derived from nature. Dr. Zhu received her PhD from South China University of Technology and Western Michigan University (2004-2009). She conducted postdoctoral research at KTH Royal Institute of Technology in Sweden (2009-2011), focusing on biodegradable and renewable biomaterials from natural wood, followed by additional postdoctoral work at the University of Maryland (2012-2015), where she researched nanocellulose and energy storage. Dr. Zhu's research spans multiple disciplines at the intersection of materials science, energy storage, and sustainable manufacturing. Her work addresses critical challenges in energy storage technology, including developing all solid-state batteries, flow batteries, and high energy density battery systems. She has pioneered research in sustainable biomass-derived materials, particularly investigating cellulose, hemicellulose, and lignin for applications in bendable, implantable, and biocompatible electronics. Her lab also focuses on advanced manufacturing techniques, including high-speed roll-to-roll processing for emerging advanced materials and devices. Analysis of Dr. Zhu's publication record reveals a strong focus on next-generation battery technologies, particularly solid-state systems. Her research demonstrates significant contributions to understanding and improving lithium dendrite suppression, electrode architecture optimization, and interface stabilization in solid-state batteries. She has also made substantial advances in sustainable materials derived from natural resources, developing applications for cellulose nanostructured fibers, paper, and aerogel/hydrogel systems. MRS Communications Early Career Distinguished Presenters and JMR Distinguished Invited Speakers (2024) Selected in Stanford University List of Top 2% Scientists Worldwide (2021-2024) College of Engineering Faculty Fellow (2023) Soren Buus Outstanding Research Award (2022) Women in Materials Science, Advanced Materials (2021 and 2022) Women Scientists at the Forefront of Energy Research, ACS Energy Letters (2020) Innovator of the Year 2013, Maryland Jakob Wallenberg Scholarship, Sweden Dr. Zhu has secured significant research funding from various sources, including the National Science Foundation and Department of Energy. Her current projects include "Uncovering the mechano-electro-chemo mechanism of fresh Li in sulfide based all solid-state batteries through operando studies" (NSF), "Enabling Advanced Electrode Architecture through Printing Technique" (DOE), and "Engineering the Metal Sulfide Interface in All Solid State Batteries through Operando Study" (NSF). She collaborates with industry partners including Rogers Corporation and has developed patented technologies related to sustainable materials and energy storage. Dr. Zhu serves as Codirector of Advanced & Intelligent Manufacturing, Editor of Progress in Materials Science, and on the Editorial Advisory Board of Chemical Society Reviews. The ZHU Lab at Northeastern University is a highly interdisciplinary research group that bridges scales from the nanoscopic to macroscopic and system level. The lab's work has led to numerous patents, including "Natural fiber composites as a low-cost plastic alternative" and "Fire-retardant Nanocellulose Aerogel, and Methods of Preparation and Uses Thereof." The group focuses on making energy storage safer, cheaper, and higher performing while exploring multifunctional materials derived from nature, with particular emphasis on applying high-speed roll-to-roll manufacturing to emerging advanced materials and devices.
Jasmine Travers Altizer is an Assistant Professor at NYU Rory Meyers College of Nursing, where she conducts research to improve health outcomes and reduce disparities among vulnerable older adults. Her work spans long-term care systems, aging, and health equity, with a focus on both quantitative and qualitative approaches. Education: PhD, Columbia University School of Nursing MHS, Yale University MSN, Stony Brook University (Adult-Gerontological Health) BSN, Adelphi University Her research interests include gerontology, health disparities, workforce diversity, infection control, and policy in long-term care. She investigates how neighborhood disadvantage, staffing levels, and systemic inequities affect care quality in nursing homes and home-based settings. Her recent work has explored antipsychotic medication use, caregiver coping strategies, and the impact of federal programs like the Paycheck Protection Program on staffing. The 15 most recent publications reflect a strong trajectory in health services research, with recurring themes in equity, workforce well-being, and policy evaluation. Her studies frequently use large national datasets and mixed methods to address structural barriers in care delivery for underserved populations, particularly Black and Latino older adults. Scientific Awards and Honors: Rising Star Research Award, Eastern Nursing Research Society (2022) Health in Aging Foundation New Investigator Award (2022) NASEM Committee Member on Quality of Care in Nursing Homes (2020) Scholar, National Clinician Scholars Program, Yale (2020) Jonas Policy Scholar (2019) Douglas Holmes Emerging Scholar Paper Award (2018) Travers is actively involved in mentoring and accepting PhD students. She leads multiple federally funded research projects, including a Robert Wood Johnson Foundation Career Development Award and a National Institute on Aging K76 Beeson Award. She has served on national committees and contributed to high-impact policy reports, demonstrating leadership in translating research into action. Her work is frequently covered in media outlets such as Scientific American , AARP , and Crain's New York . Laboratories and Research Teams: She is affiliated with several active research initiatives, including the NH Explanatory Trials Network and projects examining dementia care workforce experiences, health equity in nursing home quality measures, and culturally sensitive interventions for Black adults with chronic conditions.
Barton H. “Buzz” Thompson, Jr. is the Robert E. Paradise Professor of Natural Resources Law and a Professor at the Stanford Doerr School of Sustainability. He is a Senior Fellow at the Stanford Woods Institute for the Environment and founded the Environmental and Natural Resources Law & Policy Program at Stanford Law School. Thompson holds a BA (1972) and JD/MBA (1976) from Stanford University. His research focuses on improving resource management through legal, institutional, and technological innovation, with expertise in water law, climate change policy, and sustainable development. He previously served as Special Master for the U.S. Supreme Court in Montana v. Wyoming and chairs the boards of the Resources Legacy Fund and Stanford Habitat Conservation Board. Thompson’s awards include the 1993 John Bingham Hurlbut Award for Excellence in Teaching. He advises on water policy, serves on the Science Advisory Board of the EPA, and is a consultant to an impact investment fund. His publications span legal casebooks and policy analyses addressing water resources, endangered species law, and environmental governance.