School of Engineering
Showing 3,501-3,600 of 6,015 Results
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William Mitch
Professor of Civil and Environmental Engineering
BioBill Mitch received a B.A. in Anthropology (Archaeology) from Harvard University in 1993. During his studies, he excavated at Mayan sites in Belize and surveyed sites dating from 2,000 B.C. in Louisiana. He switched fields by receiving a M.S. degree in Civil and Environmental Engineering at UC Berkeley. He worked for 3 years in environmental consulting, receiving his P.E. license in Civil Engineering in California. Returning to UC Berkeley in 2000, he received his PhD in Civil and Environmental Engineering in 2003. He moved to Yale as an assistant professor after graduation. His dissertation received the AEESP Outstanding Doctoral Dissertation Award in 2004. At Yale, he serves as the faculty advisor for the Yale Student Chapter of Engineers without Borders. In 2007, he won a NSF CAREER Award. He moved to Stanford University as an associate professor in 2013.
Employing a fundamental understanding of organic chemical reaction pathways, his research explores links between public health, engineering and sustainability. Topics of current interest include:
Public Health and Emerging Carcinogens: Recent changes to the disinfection processes fundamental to drinking and recreational water safety are creating a host of highly toxic byproducts linked to bladder cancer. We seek to understand how these compounds form so we can adjust the disinfection process to prevent their formation.
Global Warming and Oceanography: Oceanic dissolved organic matter is an important global carbon component, and has important impacts on the net flux of CO2 between the ocean and atmosphere. We seek to understand some of the important abiotic chemical reaction pathways responsible for carbon turnover.
Sustainability and Persistent Organic Pollutants (POPs): While PCBs have been banned in the US, we continue to produce a host of structurally similar chemicals. We seem to understand important chemical pathways responsible for POP destruction in the environment, so we can design less persistent and problematic chemicals in the future.
Engineering for Sustainable Wastewater Recycling: The shortage of clean water represents a critical challenge for the next century, and has necessitated the recycling of wastewater. We seek to understand ways of engineer this process in ways to minimize harmful byproduct formation.
Carbon Sequestration: We are evaluating the formation of nitrosamine and nitraminecarcinogens from amine-based carbon capture, as well as techniques to destroy any of these byproducts that form. -
John Mitchell
Mary and Gordon Crary Family Professor in the School of Engineering, and Professor, by courtesy, of Electrical Engineering and of Education
Current Research and Scholarly InterestsProgramming languages, computer security and privacy, blockchain, machine learning, and technology for education
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Reginald Mitchell
Professor of Mechanical Engineering, Emeritus
BioProfessor Mitchell's primary area of research is concerned with characterizing the physical and chemical processes that occur during the combustion and gasification of pulverized coal and biomass. Coals of interest range in rank from lignite to bituminous and biomass materials include yard waste, field and seed crop residues, lumber mill waste, fruit and nut crop residues, and municipal solid waste. Experimental and modeling studies are concerned with char reactivity to oxygen, carbon dioxide and steam, carbon deactivation during conversion, and char particle surface area evolution and mode of conversion during mass loss.
Mitchell’s most recent research has been focused on topics that will enable the development of coal and biomass conversion technologies that facilitate CO2 capture. Recent studies have involved characterizing coal and biomass conversion rates in supercritical water environments, acquiring the understanding needed to develop chemical looping combustion technology for applications to coals and biomass materials, and developing fuel cells that use coal or biomass as the fuel source. Studies concerned with characterizing coal/biomass blends during combustion and gasification processes are also underway.
Professor Mitchell retired from Stanford University in July 2020, after having served over 29 years as a professor in the Mechanical Engineering Department. -
Paul Mitiguy
Lecturer, Mechanical Engineering
BioFrom Milton MA and shaped by La Salettes with Shaker roots, Paul did his undergraduate work at Tufts University and his mechanical engineering graduate work (PhD) at Stanford under Thomas Kane.
As a young adult, Paul worked summers landscaping, farming, logging, and construction, then worked at MIT Lincoln Laboratory, NASA Ames, Knowledge Revolution, and MSC.Software, was a consulting editor for McGraw-Hill (mechanics), and has been a consultant for the software, robotics, biotechnology, energy, automotive, and mechanical/aerospace industries.
He helped develop force/motion software used by more than 12 million people worldwide and translated into 11 spoken languages. These software applications include Interactive Physics, Working Model 2D/3D, MSC.visualNastran 4D (now SimWise), NIH Simbody/OpenSim, and the symbolic manipulators Autolev/MotionGenesis.
Paul currently works on Drake, open-source software developed by TRI (Toyota Research Institute) to simulate robots. In his role as Lead TRI/Stanford Liaison for SAIL (Toyota's Center for AI Research at Stanford), he facilitates research between TRI and Stanford.
At Stanford, Paul greatly enjoys working with students and teaches mechanics (physics/engineering), controls/vibrations, and advanced dynamics & computation/simulation. He has written several books on dynamics, computation, and control (broadly adopted by universities and professionals).
Paul is highly appreciative of support from Stanford alumni Dave Baszucki (Roblox CEO). Paul greatly appreciates having worked with Dave and team in developing internationally acclaimed physics, engineering, and educational software, including Interactive Physics, Working Model, and MSC.visualNastran.
He is very grateful to students, co-instructors (TAs), faculty, and staff. -
Subhasish Mitra
William E. Ayer Professor of Electrical Engineering and Professor of Computer Science
BioSubhasish Mitra holds the William E. Ayer Endowed Chair Professorship in the Departments of Electrical Engineering and Computer Science at Stanford University. He directs the Stanford Robust Systems Group, serves on the leadership team of the Microelectronics Commons AI Hardware Hub, leads the Computation Focus Area of the Stanford SystemX Alliance, and is the Associate Chair (Faculty Affairs) of Stanford Computer Science. His research ranges across Robust Computing, NanoSystems, Electronic Design Automation (EDA), and Neurosciences. Results from his research group have influenced almost every contemporary electronic system and have inspired significant government and research initiatives in multiple countries. He has held several international academic appointments — the Carnot Chair of Excellence in NanoSystems at CEA-LETI in France, and Invited Professor at ETH and EPFL in Switzerland and University of Tokyo in Japan. Prof. Mitra also has consulted for major technology companies including AMD (XIlinx), Anthropic, Cisco, Google, Intel, Samsung, and Sony. He recently cofounded TenX Semi, a startup on AI autopilot for chip design.
In the field of Robust Computing, he has created many key approaches for circuit failure prediction, CASP on-line diagnostics, QED system validation, soft error resilience, and X-Compact test compression. Their adoption by industry is growing rapidly, in markets ranging from cloud computing to automotive systems, under various names such as Silicon Lifecycle Management, Predictive Health Monitoring, In-System Test, In-field Scan, In-fleet Scan. His X-Compact approach has proven essential to cost-effective manufacturing and high-quality testing of almost all contemporary digital systems. X-Compact and its derivatives enabled billions of dollars of cost savings across the industry.
In the field of NanoSystems, with his students and collaborators, he demonstrated several firsts: the first NanoSystems hardware among all beyond-silicon nanotechnologies for energy-efficient computing (the carbon nanotube computer), the first 3D NanoSystem with computation immersed in data storage, the first published end-to-end computing systems using resistive memories (Resistive RAM-based non-volatile computing systems delivering 10-fold energy efficiency versus embedded flash), and the first monolithic 3D integration combining heterogeneous logic and memory technologies in silicon foundry. These received wide recognition: cover of NATURE, several Highlights to the US Congress, and highlight as "important scientific breakthrough" by news organizations worldwide.
Prof. Mitra's honors include the Harry H. Goode Memorial Award (by IEEE Computer Society for outstanding contributions in the information processing field), Newton Technical Impact Award in EDA (test-of-time honor by ACM SIGDA and IEEE CEDA), the University Researcher Award (by Semiconductor Industry Association and Semiconductor Research Corporation to recognize lifetime research contributions), the EDAA Achievement Award (by European Design and Automation Association, for outstanding lifetime contributions to electronic design, automation and testing), the Intel Achievement Award (Intel’s highest honor), and the Distinguished Alumnus Award from the Indian Institute of Technology, Kharagpur. He and his students have published over 15 award-winning papers across 5 topic areas (technology, circuits, EDA, test, verification) at major venues including the Design Automation Conference, International Electron Devices Meeting, International Solid-State Circuits Conference, International Test Conference, Symposia on VLSI Technology/VLSI Circuits, and Formal Methods in Computer-Aided Design. Stanford undergraduates have honored him several times "for being important to them." He is a Fellow of the Association for Computing Machinery (ACM) and the Institute of Electrical and Electronics Engineers (IEEE), and a Foreign Member of Academia Europaea. -
Ariam Mogos
Lecturer, d.school
BioAriam Mogos leads emerging technology initiatives at Stanford's Hasso Plattner Institute of Design (d.school), where she helps students and educators work with emerging technologies like AI and blockchain, and shapes conversations around the tech’s ethical implications on humans and nature. Her design work and research also investigates the ways that technology can foster playful learning experiences that bridge communities and cultures.
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Aadhityaa Mohanavelu
Ph.D. Student in Civil and Environmental Engineering, admitted Autumn 2023
BioAadhityaa Mohanavelu is a Ph.D. candidate in the Osman Lab at Stanford University, where he works on quantifying water and infrastructure challenges and developing more equitable and resilient infrastructure systems. His research uses tools and techniques from diverse disciplines, including computational modeling, artificial intelligence, qualitative methodology, spatial analysis, and sensor-based experiments, to better understand infrastructure and environmental problems and develop innovative solutions.
He has a strong background in modeling hydro-climatic systems, studying infrastructure resilience, and assessing environmental hazards. Aadhityaa is a 2023 Quad Fellow in the inaugural cohort. Outside research, he loves to hike, read books and travel. -
Parviz Moin
Franklin P. and Caroline M. Johnson Professor in the School of Engineering
BioMoin is the founding director of the Center for Turbulence Research. Established in 1987 as a research consortium between NASA and Stanford, Center for Turbulence Research is devoted to fundamental studies of turbulent flows. Center of Turbulence Research is widely recognized as the international focal point for turbulence research, attracting diverse groups of researchers from engineering, mathematics and physics. He was the founding director of the Institute for Computational and Mathematical Engineering at Stanford.
Professor Moin pioneered the use of direct and Large Eddy Simulation techniques for the study of turbulence physics, control and modelling concepts and has written widely on the structure of turbulent shear flows. His current interests include: Computational physics, Physics and control of turbulent boundary layers, hypersonic flows, propulsion, flow control, large eddy simulation for aerospace applications and aircraft icing. -
Stephen Monismith
Obayashi Professor in the School of Engineering and Professor of Oceans
Current Research and Scholarly InterestsHydrodynamics of lakes, estuaries, coral reefs, kelp forests and the coastal ocean
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Ashby Monk
Senior Res Engineer, Center for Sustainable Development and Global Competitiveness
BioDr. Ashby Monk is currently a Senior Research Engineer, School of Engineering at Stanford University, and holds the position of Executive Director of the Stanford Research Initiative on Long-Term Investing.
Ashby has more than 20 years of experience studying and advising investment organizations. He has authored multiple books and published 100s of research papers on institutional investing. His latest book, The Technologized Investor, won the 2021 Silver Medal from the Axiom Business Book Awards in the Business Technology category.
Outside of academia, he has co-founded several companies that help investors make better investment decisions, including Real Capital Innovation (acquired by Addepar), FutureProof, NetPurpose, D.A.T.A., ThirdAct, Growthsphere, SheltonAI and Long Game Savings (acquired by Truist). He is also a member of the CFA Institute’s Future of Finance Advisory Council and was named by CIO Magazine as one of the most influential academics in the institutional investing world.
Ashby received his Doctorate in Economic Geography at the University of Oxford, holds a Master’s in International Economics from the Université de Paris I - Pantheon Sorbonne, and has a Bachelor’s in Economics from Princeton University -
Stephen B. Montgomery
Stanford Medicine Professor of Pathology, Professor of Genetics and of Biomedical Data Science and, by courtesy, of Computer Science
Current Research and Scholarly InterestsWe focus on understanding the effects of genome variation on cellular phenotypes and cellular modeling of disease through genomic approaches such as next generation RNA sequencing in combination with developing and utilizing state-of-the-art bioinformatics and statistical genetics approaches. See our website at http://montgomerylab.stanford.edu/
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Jonathan Lee Montoya
Affiliate, Civil and Environmental Engineering
BioJonathan Lee Montoya studies equitable pathways in STEM disciplines at the intersection of Engineering and Computer Science Education. Jonathan is a practitioner at heart. He holds secondary teaching credentials in Biological Sciences, Geosciences, and Career Technical Education. He has also taught Virtual Design and Construction. Jonathan received his Ph.D. and M.A. in Education from the University of California, Irvine, where he was an NSF Ridge to Reef Scholar and Eugene Cota-Robles Scholar. He also holds an M.A. in STEEM education from Santa Clara University, where he was an NSF Robert Noyce Teacher Scholar. Jonathan received his B.S. in Environmental Sciences with an emphasis in Ethics at Humboldt. He also studied Botany and Environmental Education in Argentina and Chile.
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Louie Montoya
Lecturer, d.school
BioA self-proclaimed deeper learning education nerd, Louie Montoya joined the d.school in 2018 to work with educators on learning and implementing design in the classroom. Today he leads the Deeper Learning Puzzle Bus, a K12 lab mobile experiment designed to look at how “escape rooms” can change the way educators think about measurement and assessment, as well as bring more delight into the classroom.
A first generation Mexican American raised across the western hemisphere, Louie developed an interest in other cultures that anchors his work on behalf of equitable practices in the design process. As an experience designer at the Business Innovation Factory in Rhode Island, Louie co-designed and ran the Teachers for Equity Fellowship that worked with educators across the United States to address issues of racial inequity in their schools and classrooms. As a member of the Deeper Learning network Louie focuses on building capacity around skills such as collaboration, communication and critical thinking with students. -
Jordan Moore
Postdoctoral Scholar, Materials Science and Engineering
BioJordan Moore is currently a postdoctoral fellow at Stanford University, appointed in both the Departments of Materials Science & Engineering and Neurology. He earned his Ph.D. from The Ohio State University within the Department of Biomedical Engineering, where he was mentored by Dr. Daniel Gallego Perez. During his doctoral studies, Jordan's research primarily centered around the application of electroporation for gene delivery in vivo, with a specific focus on cell-reprogramming.
His work in his Ph.D. program aimed to address the restoration of blood flow to damaged peripheral nerves, contributing to the promotion of nerve regeneration and functional recovery. As a postdoctoral researcher, Jordan is currently co-mentored by Professor Sarah Heilshorn and Dr. Marion Buckwalter. In this role, he is dedicated to the development of innovative biomaterial-based platforms for gene and drug delivery. His research focuses on the treatment of stroke-related injuries and the prevention of cognitive decline. -
Joseph Fitzpatrick Moore, P.E.
Adjunct Lecturer, Civil and Environmental Engineering
BioMember, State Bar of California; Registered California Professional Civil Engineer; Fellow, American College of Construction Lawyers; Past Chair, International Bar Associaton, International Construction Projects Commitee; Board Member, International Constructon Law Alliance. Partner, Hanson Bridgett, LLP. Joseph is a dual qualified lawyer and civil engineer. His law practice focuses on complex domestic and international construction projects and disputes.
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Holden Moore
Undergraduate, Management Science and Engineering
Undergraduate, Symbolic SystemsBioStanford University undergraduate student majoring in symbolic systems with a concentration in neuroscience. Pursuing an interdisciplinary degree across diverse fields of study including computer science, mathematics, neuroscience, statistics, philosophy, and psychology.
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Dinesh D Moorjani
Student, Program-Jain, R.
BioDinesh Moorjani is a serial tech founder & CEO, venture capital investor, and professor. He is the founder and Managing Partner of Time Zero Capital, a technology venture capital firm investing in responsible innovation.
Dinesh founded Hatch Labs Inc. where he served as Chairman & CEO and cofounded Tinder (NASDAQ: MTCH) in 2012. Dinesh built several technology companies including Saffronart, a global eCommerce marketplace for Indian fine art and collectibles backed by Sequoia Capital, where he continues to serve on the board. Dinesh also cofounded Kleverbeast—a no-code SaaS application development platform and Monet Analytics—an AI platform that decodes human emotion.
Dinesh served in numerous executive leadership roles at multinational corporations, including as Managing Director at Comcast Ventures, Sr. Vice President and Group Head of Mobility at IAC/InterActive Corp, and in various leadership roles at Samsung Electronics in the US and Asia. He built his early career in the Global Energy Practice at AD Little, Goldman Sachs, and as an early employee at Mainspring (IPO 2000, acquired by IBM 2001). Dinesh served as an independent board director at Alight (NYSE: ALIT) and on the advisory boards of Fortune 500 companies including American Express, Assurant, and Cox Automotive. He served on the board of directors of Zoox (acquired by Amazon), a leader in autonomous vehicles. Dinesh served as an advisor to Warburg Pincus, the global private equity firm, where he was previously an EIR, co-investing alongside the firm and serving in a governance capacity on portfolio company boards.
Dinesh is an adjunct professor at the UCLA Anderson School of Management, and regularly guest lectures at Harvard, Stanford, and MIT. Dinesh also serves on the Harvard Business School California Research Center Advisory Board. He supports disenfranchised youth and education through his non-profit work as a board director at the United Friends of the Children and the Organization for Social Media Safety. Dinesh continues to serve as a Board Trustee at the University of California, Merced. Dinesh earned his BS in Chemical Engineering from Northwestern University and MBA from Harvard. Dinesh is a PhD Candidate in the Engineering Department at Stanford University. -
José Moreno Reyes
Graduate, Stanford Center for Professional Development
BioI lead AIJ Global, a multi-family-owned private investment firm that backs first-time CEOs acquiring small businesses through search funds. Our aim is to build durable, impact-driven businesses and leaders who are ready. I have held four board seats across four countries, with one successful exit in 2025. I trained as an electronic and computer engineer and worked in IT, data systems, and web development before moving into investing. I came to Stanford to explore business topics and update my thinking as the world changes rapidly and our work spans diverse sectors and geographies. I am now studying engineering topics because AI is too broad and moving too fast for most organizations to keep pace. Understanding AI alone is not enough; decision science and operational thinking are what make it work in practice. I want to help close that gap across our portfolio companies and other investments. I also advise on AI adoption and operational strategy. Stanford GSB alumnus. MAM, Yale. Outside work, I enjoy sailing, modern art, and food culture, from neighborhood kitchens to omakase. Happy to connect on search funds, venture investing, applied AI, and board governance.
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Ryuta Moriyasu
Visiting Scholar, Aeronautics and Astronautics
BioVisiting Scholar at Autonomous Systems Lab. | Ph.D. in Informatics | Safe and reliable control design with AI-based modeling
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Suzanne Morze
Associate Director, Leadership Giving, School of Engineering - External Relations
Current Role at StanfordAssociate Director of Annual Giving, School of Engineering
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Fernando Mujica
Adjunct Professor, Electrical Engineering
BioFernando Mujica is an Adjunct Professor in the Department of Electrical Engineering at Stanford University. He received the Ph.D. degree in electrical engineering from the Georgia Institute of Technology in 1999 and B.S. and M.S. degrees from Universidad Simón Bolivar in 1993 and 1995, respectively. Prof. Mujica's research interests are in the area of signal processing. He has been granted more than 25 US patents over a wide range of applications. Prof. Mujica was elected to the Tau Beta Pi Teaching Honor Roll in 2022.
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Kunal Mukherjee
Assistant Professor of Materials Science and Engineering
BioKunal Mukherjee is an assistant professor in Materials Science and Engineering at Stanford. He has been an assistant professor in the Materials department at UC Santa Barbara (2016-2020), held postdoctoral appointments at IBM TJ Watson Research Center (2016) and MIT (2015), and worked as a transceiver engineer at Finisar (2009-2010).
The Mukherjee group specializes in semiconductors that emit and detect light in the infrared. Our research enables better materials for data transmission, sensing, manufacturing, and environmental monitoring. We make high-quality thin films with IV-VI (PbSnSe) and III-V (GaAs-InAs/GaSb) material systems and spend much of our time understanding how imperfections in the crystalline structure such as dislocations and point defects impact their electronic and optical properties. This holds the key to directly integrating these semiconductors with silicon and germanium substrates for new hybrid circuits that combine infrared photonics and conventional electronics.