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In a lecture to the Stanford community Tuesday night, Professor Sir Gordon Conway argued that sustainably intensifying agriculture, especially in Africa, is the only way to feed a growing global population without greatly expanding the amount of land used for farming. Sir Gordon is an agricultural ecologist and was an early pioneer of sustainable agriculture while working in Malaysia in the 1960s. He is now a professor of international development at Imperial College London and the director of Agriculture for Impact, a project funded by the Bill and Melinda Gates Foundation.

Sir Gordon's lecture, "Can Sustainable Intensification Feed the World?" was the second installment of the Food and Nutrition Policy Symposium Series sponsored by the Center on Food Security and the Environment.

Sir Gordon described three major challenges to ensuring future global food security: food prices are higher and more volatile, one billion people are malnourished (including 1 in 5 children), and rising demand means that 60 to 100 percent more food will be needed to feed the world by 2050. Solving the food security crisis will mean improving both the quantity and the nutrition of food, at stable and affordable prices, in the face of major challenges.

These challenges include factors on the demand side of the global food economy, such as population growth, changing diets, and the use of crops for biofuels. Supply side factors like high fertilizer prices, climate change, and scarcity of land and water put even more pressure on the food system. 

The solution, Sir Gordon said, is agricultural intensification, a set of practices that allow farmers to produce more food with existing land and water. Sustainability is a key component, so that intensification does not also raise greenhouse gas emissions, deplete soil quality, or damage the resilience of farming systems. Sustainable intensification will be especially important in Africa, said Sir Gordon, where population growth and dietary changes will be most dramatic, and where currently crop yields are far below most other areas of the world.

 Farmers, scientists and policymakers can take several approaches to sustainable intensification. An ecological approach includes practices that safeguard environmental resources and reduce farmers’ dependence on chemicals like herbicides and pesticides, such as through organic farming, integrated pest management, agroforestry or conservation agriculture. A genetic intensification approach includes developing better plant varieties, with traits that promote more sustainable agriculture by resisting pests and diseases, or that provide more nutrition. A third approach is socio-economic intensification of agriculture, through the development of farmers’ cooperatives, better links between farmers and markets, and improved access by farmers to insurance and credit.

The goal, Sir Gordon said, is to help farmers “build resilient livelihoods” that will withstand economic and environmental shocks in the coming decades. Good science is important, but strong political leadership, especially within Africa, will be just as crucial.

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Join the Center for African Studies and the Center on Democracy, Development and the Rule of Law's (CDDRL) Program on Social Entrepreneurship (in partnership with the Haas Center for Public Service) for a special lunchtime seminar.

Three leaders from the Global Women’s Water Initiative (GWWI) will share their work in East Africa transforming women from being water bearers to water providers and social entrepreneurs. GWWI is training and building a cadre of women water, sanitation and hygiene (WASH) specialists steeped in a holistic set of technical and entrepreneurial skills to lift themselves from poverty and create self-reliance. Women have developed the capacity to construct technologies, provide health education and generate revenue by professionalizing their services. Come to Africa Table for an engaging hour listening to the stories of these three incredible leaders.

Gemma Bulos is a multi award-winning social entrepreneur, water champion and musician. As Director of the Global Women's Water Initiative, she trains women to be technicians and entrepreneurs who are able to build clean water and sanitation solutions in their communities. Her work has provided over 200,000 people with clean water in Asia and Africa.

Rose Wamalwa manages GWWI in-country logistics as Kenya/Tanzania Regional Coordinator. She was named one of the '8 African Water Women to Watch' by WASH Advocates alongside President Ellen Johnson Sirleaf of Liberia and President Joyce Banda of Malawi. She is currently an IREX Community Solutions Fellow sponsored by the US State Department.

Godliver Businge, Head Technology Trainer is a trained mason, welder, bricklayer, and a candidate for a Civil Engineering degree in Uganda. She is admired for her ability to train women with no background in construction. Godliver received a scholarship from the Uganda Rural Devlop-ment Trust, and was recently featured in Reuters trust.org as a Female Water Role Model. 

Lunch will be served.

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Room 202, Encina Hall West

616 Serra Street, Stanford, CA

Gemma Bulos Director Global Women's Water Initiative
Rose Wamalwa Kenya/Tanzania Regional Coordinator Global Women's Water Initiative
Godliver Businge Head Technology Trainer Global Women's Water Initiative
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In a recent speech, Stanford professor Rosamond Naylor examined the wide range of challenges contributing to global food insecurity, which Naylor defined as a lack of plentiful, nutritious and affordable food. Naylor's lecture, titled "Feeding the World in the 21st Century," was part of the quarterly Earth Matters series sponsored by Stanford Continuing Studies and the Stanford School of Earth Sciences. Naylor, a professor of Environmental Earth System Science and director of the Center on Food Security and the Environment at Stanford, is also a professor (by courtesy) of Economics, and the William Wrigley Senior Fellow at the Freeman Spogli Institute for International Studies and the Stanford Woods Institute for the Environment.

"One billion people go to bed day in and day out with chronic hunger," said Naylor. The problem of food insecurity, she explained, goes far beyond food supply. "We produce enough calories, just with cereal crops alone, to feed everyone on the planet," she said. Rather, food insecurity arises from a complex and interactive set of factors including poverty, malnutrition, disease, conflict, poor governance and volatile prices. Food supply depends on limited natural resources including water and energy, and food accessibility depends on government policies about land rights, biofuels, and food subsidies. Often, said Naylor, food policies in one country can impact food security in other parts of the world. Solutions to global hunger must account for this complexity, and for the "evolving" nature of food security.

As an example of this evolution, Naylor pointed to the success of China and India in reducing hunger rates from 70 percent to 15 percent within a single generation. Economic growth was key, as was the "Green Revolution," a series of advances in plant breeding, irrigation and agricultural technology that led to a doubling of global cereal crop production between 1970 and 2010. But Naylor warned that the success of the Green Revolution can lead to complacency about present-day food security challenges. China, for example, sharply reduced hunger as it underwent rapid economic growth, but now faces what Naylor described as a "second food security challenge" of micronutrient deficiency. Anemia, which is caused by a lack of dietary iron and which Naylor said is common in many rural areas of China, can permanently damage children's cognitive development and school performance, and eventually impede a country’s economic growth.

Hunger knows no boundaries

Although hunger is more prevalent in the developing world, food insecurity knows no geographic boundaries, said Naylor. Every country, including wealthy economies like the United States, struggles with problems of food availability, access, and nutrition. "Rather than think of this as 'their problem' that we don't need to deal with, really it's our problem too," Naylor said.

She pointed out that one in five children in the United States is chronically hungry, and 50 million Americans receive government food assistance. Many more millions go to soup kitchens every night, she added. "We are in a precarious position with our own food security, with big implications for public health and educational attainment," Naylor said. A major paradox of the United States' food security challenge is that hunger increasingly coexists with obesity. For the poorest Americans, cheap food offers abundant calories but low nutritional value. To improve the health and food security of millions of Americans, "linking policy in a way that can enhance the incomes of the poorest is really important, and it's the hard part,” she said.” It's not easy to fix the inequality issue."

Success stories

When asked whether there were any "easy" decisions that the global community can agree to, Naylor responded, "What we need to do for a lot of these issues is pretty clear, but how we get after it is not always agreed upon." She added, "But I think we've seen quite a few success stories," including the growing research on climate resilient crops, new scientific tools such as plant genetics, improved modeling techniques for water and irrigation systems, and better knowledge about how to use fertilizer more efficiently. She also said that the growing body of agriculture-focused climate research was encouraging, and that Stanford is a leader on this front.

Naylor is the editor and co-author of The Evolving Sphere of Food Security, a new book from Oxford University Press. The book features a team of 19 faculty authors from 5 Stanford schools including Earth science, economics, law, engineering, medicine, political science, international relations, and biology. The all-Stanford lineup was intentional, Naylor said, because the university is committed to interdisciplinary research that addresses complex global issues like food security, and because "agriculture is incredibly dominated by policy, and Stanford has a long history of dealing with some of these policy elements. This is the glue that enables us to answer really challenging questions." 

 

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Meeting the world’s need for food in the 21st century presents unprecedented challenges and opportunities. The global population is expected to grow toward 9 billion by 2050, and more families will live in middle-income countries and urban areas with expanding per capita consumption. At the same time, climate change and resource constraints will likely reduce crop and animal production in many locations, potentially creating greater disparities in incomes, food access, and nutrition around the world. Roz Naylor, a thought leader in global food security, will discuss the world’s future food dilemma and present a range of solutions focused on the diversification of food systems, improved input efficiencies, renewable energy use, new crop technologies, and policy adjustments. Her talk will demonstrate how food security, in its broadest form, is tied to security of many other kinds: energy, water, climate, health, the environment, and national security.

FSE director Roz Naylor’s research focuses on economic and biophysical dimensions of food security and environmental impacts of crop and animal production. Her extensive field research and published work span issues related to intensive crop production, aquaculture and livestock systems, biofuels, climate change, food price volatility, and food policy analysis. At Stanford, Naylor teaches courses on the world food economy, humanenvironment interactions, and sustainable agriculture.

Naylor's new book The Evolving Sphere of Food Security (Oxford University Press, September) brings together 19 Stanford scholars from across campus to explore the many faces and facets of global food security. Copies of the book will be available for purchase at the event.

The annual Earth Matters lecture series is jointly sponsored by Stanford Continuing Studies and the Stanford School of Earth Sciences.

Cubberley Auditorium

The Jerry Yang and Akiko Yamazaki
Environment and Energy Building
Stanford University
473 Via Ortega, Office 363
Stanford, CA 94305

(650) 723-5697 (650) 725-1992
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Senior Fellow, Stanford Woods Institute and Freeman Spogli Institute for International Studies
William Wrigley Professor of Earth System Science
Senior Fellow and Founding Director, Center on Food Security and the Environment
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Rosamond Naylor is the William Wrigley Professor in Earth System Science, a Senior Fellow at Stanford Woods Institute and the Freeman Spogli Institute for International Studies, the founding Director at the Center on Food Security and the Environment, and Professor of Economics (by courtesy) at Stanford University. She received her B.A. in Economics and Environmental Studies from the University of Colorado, her M.Sc. in Economics from the London School of Economics, and her Ph.D. in applied economics from Stanford University. Her research focuses on policies and practices to improve global food security and protect the environment on land and at sea. She works with her students in many locations around the world. She has been involved in many field-level research projects around the world and has published widely on issues related to intensive crop production, aquaculture and livestock systems, biofuels, climate change, food price volatility, and food policy analysis. In addition to her many peer-reviewed papers, Naylor has published two books on her work: The Evolving Sphere of Food Security (Naylor, ed., 2014), and The Tropical Oil Crops Revolution: Food, Farmers, Fuels, and Forests (Byerlee, Falcon, and Naylor, 2017).

She is a Fellow of the Ecological Society of America, a Pew Marine Fellow, a Leopold Leadership Fellow, a Fellow of the Beijer Institute for Ecological Economics, a member of Sigma Xi, and the co-Chair of the Blue Food Assessment. Naylor serves as the President of the Board of Directors for Aspen Global Change Institute, is a member of the Scientific Advisory Committee for Oceana and is a member of the Forest Advisory Panel for Cargill. At Stanford, Naylor teaches courses on the World Food Economy, Human-Environment Interactions, and Food and Security. 

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By any measure, China’s economy and defense budget are second only to those of the United States. Yet tremendous uncertainties persist concerning China’s military development and national trajectory, and areas with greater information available often conflated misleadingly. Fortunately, larger dynamics elucidate both areas. Particularly since the 1995-96 Taiwan Strait Crisis, China has made rapid progress in aerospace and maritime development, greatly facilitating its military modernization. The weapons and systems that China is developing and deploying fit well with Beijing’s geostrategic priorities. Here, distance matters greatly: after domestic stability and border control, Beijing worries most about its immediate periphery, where its unresolved disputes with neighbors and outstanding claims lie primarily in the maritime direction. Accordingly, while it would vastly prefer pressuring concessions to waging war, China is already capable of threatening potential opponents’ military forces should they intervene in crises over islands and maritime claims in the Yellow, East, and South China Seas and the waterspace and airspace around them. Far from mainland China, by contrast, it remains ill-prepared to protect its own forces from robust attack. Fortunately for Beijing, the non-traditional security focus of its distant operations makes conflict unlikely; remedying their vulnerabilities would be difficult and expensive. Despite these larger patterns, critical unknowns remain concerning China’s economic development, societal priorities, industrial efficiency, and innovation capability. Dr. Erickson will examine these and related issues to probe China’s development trajectory and future place in the international system. 

 

The views expressed by Dr. Erickson are his alone, and do not represent the policies or estimates of any organization with which he is affiliated.

 

Dr. Andrew S. Erickson is an Associate Professor in the Strategic Research Department at the U.S. Naval War College and a core founding member of the department’s China Maritime Studies Institute (CMSI). He is an Associate in Research at Harvard University’s John King Fairbank Center for Chinese Studies (2008-). Erickson also serves as an expert contributor to the Wall Street Journal’s China Real Time Report (中国实时报), for which he has authored or coauthored 25 articles. In spring 2013, he deployed in the Pacific as a Regional Security Education Program scholar aboard USS Nimitz (CVN68), Carrier Strike Group 11.

Erickson received his Ph.D. and M.A. in international relations and comparative politics from Princeton University and graduated magna cum laude from Amherst College with a B.A. in history and political science. He has studied Mandarin in the Princeton in Beijing program at Beijing Normal University’s College of Chinese Language and Culture and Japanese language, politics, and economics in the year-long Associated Kyoto Program at Doshisha University.

Erickson’s research, which focuses on Asia-Pacific defense, international relations, technology, and resource issues, has been published widely in English- and Chinese-language edited volumes and in such peer-reviewed journals as China QuarterlyAsian SecurityJournal of Strategic StudiesOrbisAsia Policy (forthcoming January 2014), and China Security; as well as in Foreign Affairs, The National InterestThe American InterestForeign PolicyJoint Force QuarterlyChina International Strategy Review (published in Chinese-language edition, forthcoming in English-language edition January 2014), and International and Strategic Studies Report (Center for International and Strategic Studies, Peking University). Erickson has also published annotated translations of several Chinese articles on maritime strategy. His publications are available at <www.andrewerickson.com> and <www.chinasignpost.com>.

This event is co-sponsored with CEAS and is part of the China under Xi Jinping series.

Philippines Conference Room

Andrew Erickson Associate in Research Speaker John King Fairbank Center for Chinese Studies, Harvard University
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Children in rural Kenya are more susceptible to disease and death the farther away they live from clean drinking water, according to Stanford researchers.

In a survey of families in Asembo – a small farming community at the edge of Lake Victoria that has high rates of chronic diarrhea, child malnutrition and child death – a research team from the Center on Food Security and the Environment found that most people live just over a quarter-mile from clean water sources. About 200 feet closer to home are ponds and springs contaminated with E. coli bacteria. Sixty-six percent of families primarily use this contaminated surface water for drinking.

A child in Asembo, Kenya sits next to her family's water storage containers.

A child in Asembo, Kenya sits next to her family's water storage containers.
Photo Credit: Amy Pickering

While water is essential for farming, collecting it is time-consuming and physically exhausting in remote places like Asembo. Previous research has shown that when families must travel long distances for water, child health suffers. The harder it is to collect, the less of it a family will use. A shortage of water for cooking and drinking compromises children’s nutrition and hydration. And it limits hand washing and bathing, making children more susceptible to disease. Quality and availability of water also varies widely from source to source, and the time required to collect water can force families to use dirtier, unimproved water sources that are closer to home. 

In 2011, the FSE researchers partnered with the Centers for Disease Control Kenya Medical Research Institute (CDC-KEMRI), which was already conducting an extensive survey of household-level health indicators in the region. Combining resources with CDC-KEMRI allowed the team – led by FSE Director Rosamond Naylor, a professor of environmental earth system science, and Jenna Davis, an assistant professor of civil and environmental engineering – to use a robust set of data. The information covered about 3,000 households in a five kilometer radius and was collected on a bi-weekly basis for six months. In exploring the links between water, food and health in Asembo, FSE researchers first expanded the definition of water “access” to account for both physical distance and the quality of water sources.

Researchers take a child's measurements in Asembo, Kenya.

Researchers take a child's measurements in Asembo, Kenya.
Photo Credit: Amy Pickering

Researchers then mapped the distance of each household from its nearest water source, and recorded whether the source was improved (such as a deep borewell) or unimproved (surface water like a pond, spring or shallow well). To get the most precise possible data on local water quality, the research team collected samples from each household’s water source and sent them to a local hospital lab for testing. Surveyors then collected data on each household’s water management practices, including water treatment. They measured agricultural output, dietary diversity, and perceived food insecurity, then recorded the weight and height measurements of each child in the household. Respondents also reported the frequency of recent cases of diarrheal disease among children of the household.

Results of the initial survey highlight sobering realities about water access in Asembo. Households in the survey reported average per capita water consumption of only 31 liters per day, including water used for cooking, drinking, hygiene and agriculture. The average walk time to the nearest water source was approximately 15 minutes. The average distance to the nearest improved source was 428 meters, whereas the average distance to unimproved surface water was 374 meters. Water quality tests confirmed that these sources, used by the majority of families, were highly contaminated with E. coli bacteria, while improved water sources were significantly cleaner. Thirty percent of children showed stunted growth, and 11 percent were underweight for their age.

A researcher collects a sample of stored water at a household in Asembo, Kenya.

A researcher collects a sample of stored water at a household in Asembo, Kenya.
Photo Credit: Amy Pickering

Researchers found that close proximity to an abundant water source, regardless of quality, correlated with an increase in food production and diversity, as well as a lower hunger score. Having enough extra water for crop irrigation clearly improves children’s diets – particularly their access to the micronutrients essential for normal physical and cognitive development – and helps them resist disease. Households further from water sources reported lower and less diverse crop yields, as well as poorer child health indicators. Quality was also an important factor, as households with access to clean, improved water reported better child health outcomes than those relying on contaminated surface water.

The ultimate goal of the project, “Rural health and development at the food-water nexus” is to design interventions and policy incentives that help people absorb nutrients in environments where food and water are limited and disease is prevalent. In the next stage of the project, researchers will focus on links between water access and the progression of HIV, and will also investigate how improved diets from better water access can impact household income.

About the Stanford Research Team:

Jenna Davis is Associate Professor of Civil and Environmental Engineering, Higgins-Magid Faculty Senior Fellow at the Stanford Woods Institute for the Environment, and an affiliate of the Center on Food Security and the Environment.
Rosamond Naylor is the Director of the Center on Food Security and the Environment, Professor of Environmental Earth System Science, and the William Wrigley Senior Fellow at the Stanford Woods Institute.
Eran Bendavid is an infectious diseases physician and Assistant Professor of Medicine in the Division of General Internal Medicine, as well as an affiliate of the Center on Food Security and the Environment and the Stanford Health Policy center.
Amy Pickering is a lecturer in the School of Earth Sciences, and a research associate in Civil and Environmental Engineering, the Woods Institute for the Environment, and the Center on Food Security and the Environment.
Glwadys Gbetibouo is a postdoctoral scholar at the Center on Food Security and the Environment.
Katrina ole-MoiYoi is a Ph.D. student at the Center on Food Security and the Environment.

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CISAC
Stanford University
Encina Hall, C206-9
Stanford CA 94305-6165

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Lexie Ross joined CISAC in November 2013 as David Relman’s research and administrative assistant. She is a senior at Stanford majoring in Human Biology with a concentration in Health and Human Performance.

Prior to CISAC, Lexie worked as a research assistant for Human Biology Professor Dr. Anne Friedlander and will serve as a course assistant for a class she is piloting in Environmental Physiology. Lexie is also the captain of Stanford’s varsity women’s water polo team, and has won two NCAA national championships during her time at Stanford.

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Pyongyang is moving ahead on all nuclear fronts: It announced in an April 2 statement that it will adjust and alter the use of existing nuclear facilities to simultaneously stimulate the economy and build up nuclear armed forces, implying that it will promote both commercial and military nuclear programs. It is expanding its missile launch facilities. It has at least one new nuclear test tunnel prepared for another test. It has restarted its plutonium production reactor and continues on the construction of the experimental light water reactor, likely to begin operation in late 2014 or early 2015. It appears to have doubled the size of the modern centrifuge facility in Yongbyon. These developments have set back progress toward restarting the six-party talks. Dr. Siegfried Hecker, drawing on his experiences in North Korea and technical analysis, will review the status of North Korea's nuclear program and suggest a path to resolving the nuclear crisis. 

Siegfried Hecker served as co-director of the Center for International Security and Cooperation (CISAC) from 2007 to 2012. He directed the Los Alamos National Laboratory from 1986-1997 and served as senior fellow until 2005. 

 

Stanford Center at Peking University

CISAC
Stanford University
Encina Hall, C220
Stanford, CA 94305-6165

(650) 725-6468 (650) 723-0089
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Senior Fellow, Freeman Spogli Institute for International Studies, Emeritus
Research Professor, Management Science and Engineering, Emeritus
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Siegfried S. Hecker is a professor emeritus (research) in the Department of Management Science and Engineering and a senior fellow emeritus at the Freeman Spogli Institute for International Studies (FSI). He was co-director of CISAC from 2007-2012. From 1986 to 1997, Dr. Hecker served as the fifth Director of the Los Alamos National Laboratory. Dr. Hecker is an internationally recognized expert in plutonium science, global threat reduction, and nuclear security.

Dr. Hecker’s current research interests include nuclear nonproliferation and arms control, nuclear weapons policy, nuclear security, the safe and secure expansion of nuclear energy, and plutonium science. At the end of the Cold War, he has fostered cooperation with the Russian nuclear laboratories to secure and safeguard the vast stockpile of ex-Soviet fissile materials. In June 2016, the Los Alamos Historical Society published two volumes edited by Dr. Hecker. The works, titled Doomed to Cooperate, document the history of Russian-U.S. laboratory-to-laboratory cooperation since 1992.

Dr. Hecker’s research projects at CISAC focus on cooperation with young and senior nuclear professionals in Russia and China to reduce the risks of nuclear proliferation and nuclear terrorism worldwide, to avoid a return to a nuclear arms race, and to promote the safe and secure global expansion of nuclear power. He also continues to assess the technical and political challenges of nuclear North Korea and the nuclear aspirations of Iran.

Dr. Hecker joined Los Alamos National Laboratory as graduate research assistant and postdoctoral fellow before returning as technical staff member following a tenure at General Motors Research. He led the laboratory's Materials Science and Technology Division and Center for Materials Science before serving as laboratory director from 1986 through 1997, and senior fellow until July 2005.

Among his professional distinctions, Dr. Hecker is a member of the National Academy of Engineering; foreign member of the Russian Academy of Sciences; fellow of the TMS, or Minerals, Metallurgy and Materials Society; fellow of the American Society for Metals; fellow of the American Physical Society, honorary member of the American Ceramics Society; and fellow of the American Academy of Arts and Sciences.

His achievements have been recognized with the Presidential Enrico Fermi Award, the 2020 Building Bridges Award from the Pacific Century Institute, the 2018 National Engineering Award from the American Association of Engineering Societies, the 2017 American Nuclear Society Eisenhower Medal, the American Physical Society’s Leo Szilard Prize, the American Nuclear Society's Seaborg Medal, the Department of Energy's E.O. Lawrence Award, the Los Alamos National Laboratory Medal, among other awards including the Alumni Association Gold Medal and the Undergraduate Distinguished Alumni Award from Case Western Reserve University, where he earned his bachelor's, master's, and doctoral degrees in metallurgy.

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Siegfried S. Hecker Senior Fellow Speaker Freeman Spogli Institute for International Studies, Stanford University
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