Professor Hidehiko Ichimura of the University of Tokyo will share recent results from his research on the health of older adults and the retirement process in Japan. His research draws upon a unique data source, the Japanese Study of Aging and Retirement (JSTAR). This rich dataset provides information on how middle-aged and elderly Japanese live in terms of economic, social, and health outcomes, and how these interact with their family status. The JSTAR project aims to provide longitudinal data enabling detailed policy-relevant comparisons to other industrialized countries (e.g. the Survey on Health, Aging and Retirement in Europe, the US Health and Retirement Study, the English Longitudinal Study on Aging, and similar surveys now launched in Korea, China, and India).

Professor Ichimura received his BA in economics from Osaka University in 1981 and his Ph.D. in economics from the Massachusetts Institute of Technology (MIT) in 1988. He has taught at the University of Minnesota, the University of Pittsburgh, and University College London. He is now Professor in the Graduate School of Public Policy and Graduate School of Economics at the University of Tokyo. 

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Hidehiko Ichimura Professor in the Graduate School of Public Policy and Graduate School of Economics Speaker University of Tokyo
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Wheat is a staple crop throughout much of India, but in many areas it is commonly sown past the optimum window for yields. Recent technologies, such as adoption of no-till practices or earlier maturing cotton and rice varieties, have enabled some farmers to sow wheat earlier, but repeatable and publicly available measurements of sow date trends are lacking. Here we utilize satellite measurements since 2000 to estimate sow dates over a decade throughout wheat growing areas in India. Comparisons with ground-based sow dates in Punjab confirmed the reliability of satellite estimates, and data from two independent satellite sensors were used as a robustness check. We find statistically significant (p < 0.05) shifts toward earlier sowing of wheat throughout much of Haryana and Uttar Pradesh, with insignificant changes in Punjab. A production-weighted average of the entire region indicates that, on average, wheat was sown 1 week earlier by 2010 than it was at the beginning of the decade. Using previously published experimental estimates of yield gains from earlier sowing, we estimate that an overall yield gain of at least 5% averaged across India can be explained by the sow date trend. Given that national yield changes since 2000 have been less than 5%, our results indicate that the sow date shift has been a major factor in yield changes over the past decade, and that the net yield effect of all factors other than sow date has been close to zero, perhaps even negative. The results also indicate that sow dates in much of Haryana and western Uttar Pradesh are nearing or already at the optimum window for yields, so that yield benefits from sow date shifts will likely diminish in the next decade.

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China and some other Asian countries have experienced a large surplus of men of marriageable age. The existing literature studies the impact of sex imbalance using aggregate sex ratios, such as at the county, city, or province level. However, these studies may miss important impacts on health and behavior because the relevance of surplus sons to family decisions mainly stems from pressure conveyed through social interactions with the local reference group.

This paper draws from unique social network data, collected from households' long-term spontaneous gift exchange records (li dan), combined with household panel data from 18 Chinese villages to explore the prevalence of men's localized pressure to get married. The surveyed villages are home to Chinese ethnic minorities, which largely circumvents endogenous fertility decisions on the first-born child due to the implementation of One Child Policy and its associated relaxations afterwards. To identify the effect of pressure to find wives for their sons on parental risky behavior, we focus on comparing families with a first-born boy versus a first-born girl and distinguish the network spillover effect from the direct effect.

The spatial econometric decompositions suggest that the pressure mainly originates from a few friends with unmarried sons and unbalanced sex ratios in the friendship networks, though own village sex ratio and having an unmarried son also affects parental risk-taking behavior. The results are consistent across specifications allowing for long-run and short-run effects. We also find similar patterns for parental working hours, their likelihood to engage in entrepreneurial activities and decision to migrate. In contrast, parents with a daughter do not demonstrate this pattern. Since the sex ratio imbalance in China will probably worsen in the next decade, disentangling the real sources of marriage market pressure may help design policies to improve parental well-being.

Dr. Xi Chen's main research interests involve health economics and development economics in the developing contexts. He recently completed his PhD in applied economics at Cornell. His research seeks to better understand how social interactions affect health behavior and outcomes, how socioeconomic status drives social competition. Most of his current work draws on primary data from China and secondary data from India and Indonesia.

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Xi Chen Assistant Professor Speaker Department of Health Policy and Management Yale School of Public Health
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When the Soviet Union dissolved at the end of 1991, the independent Republic of Kazakhstan was left with the world’s fourth largest nuclear arsenal and a huge nuclear infrastructure, including lots of fissile materials, several nuclear reactors, the Ulba Metallurgical Plant, and the enormous Semipalatinsk Nuclear Test Site. The return of the nuclear weapons to Russia (thanks to former Secretary of Defense William Perry), the transport of vulnerable highly-enriched uranium to the U.S. (Project Sapphire), the disposition of the fast reactor fuel, and upgrading of security and safeguards at its research reactors have been the subject of numerous reports. The story of what has been done with what the Soviets left behind at the test site and the dangers it presented will be the main topic of my presentation. It is a great story of how scientists from three countries worked together effectively among themselves and with their governments to deal with one of the greatest nuclear dangers in the post-Cold War era.


About the speaker: Siegfried S. Hecker is co-director of the Stanford University Center for International Security and Cooperation, Senior Fellow of the Freeman Spogli Institute for International Studies, and Professor (Research) in the Department of Management Science and Engineering. He also served as Director of the Los Alamos National Laboratory from 1986-1997. Dr. Hecker’s research interests include plutonium science, nuclear weapon policy and international security, nuclear security (including nonproliferation and counter terrorism), and cooperative nuclear threat reduction. Over the past 20 years, he has fostered cooperation with the Russian nuclear laboratories to secure and safeguard the vast stockpile of ex-Soviet fissile materials. His current interests include the challenges of nuclear India, Pakistan, North Korea, the nuclear aspirations of Iran and the peaceful spread of nuclear energy in Central Asia and South Korea. Dr. Hecker has visited North Korea seven times since 2004, reporting back to U.S. government officials on North Korea’s nuclear progress and testifying in front of the U.S. Congress. He is a fellow of numerous professional societies and received the Presidential Enrico Fermi Award.

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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 Co-Director Speaker Center for International Security and Cooperation
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Walter H. Shorenstein
Asia-Pacific Research Center
Encina Hall, Room C331
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Ajay Verghese joined the Walter H. Shorenstein Asia-Pacific Research Center (APARC) during the 2012–13 academic year from The George Washington University, where he received his PhD in political science in August 2012.

His research interests are broadly centered on ethnicity, conflict, and South Asia. His doctoral dissertation, Colonialism and Patterns of Ethnic Conflict in Contemporary India, examines why ethnic conflicts in multi-ethnic states revolve around one identity rather than another. He argues that British colonial rule is the key determinant of contemporary patterns of ethnic violence in India. During his time at Shorenstein APARC, he converted his dissertation into a book manuscript.

Verghese has been published in Qualitative & Multi-Method Research, and has received funding for language training and fieldwork in India from a variety of sources, including the U.S. State Department, the American Institute of Indian Studies, the Sigur Center for Asian Studies, and the Konosuke Matsushita Memorial Foundation.

Verghese also holds a BA in political science and French from Temple University.

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The Program on Human Rights at CDDRL and the Center for South Asia  are honored to host Filmmaker Anand Patwardhan for this special film screening and discussion as part of the Collaboratory project.

Anand Patwardhan's new film "Jai Bhim Comrade" took 14 years to complete. Beginning with an incident at Ramabai Colony in Mumbai where 10 Dalits were shot dead by the police in 1997, the film goes on to explore the music of protest of those who were treated as "untouchables" by a caste hierarchy that has ruled the Indian sub-continent for thousands of years.

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Researchers at the Freeman Spogli Institute for International Studies are finding ways to fight tuberculosis in India, curb violence in Latin America and improve conditions for thousands of people living in the world’s largest slums.

Their work – and the research underway by other faculty members across the Stanford campus trying to solve some of the world’s most persistent problems – is supported in part by the Global Underdevelopment Action Fund. The program awards up to $40,000 to individual researchers creating projects that tackle issues like hunger, poverty and poor governance.

Since it was established in 2010, the Action Fund has doled out nearly $800,000 to 20 researchers.

Now entering its fourth round of Action Fund grants, FSI is seeking proposals from faculty interested in multidisciplinary research aimed at influencing and changing government policies, creating practical solutions to seemingly intractable problems, and training students.

A new feature of the program is incremental funding of up to $5,000 for projects that include a plan for engaging and mentoring an undergraduate student on the research team.

Award recipients will present their work at a monthly Action Fund seminar during the academic year and submit a summary report at the end of the funding period.

Proposals are due by Oct. 31 and will be announced by vmarian@stanford.edu

Work done by previous grant recipients will be showcased in a series of seminars dubbed “Action Fund Fridays” over the next several months.

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It is critically important for cost-effective and efficacious products to be developed indigenously within India. The Stanford-India Biodesign (SIB) program is designed to bring to market novel medical devices for India’s medically underserved, including those living in poverty. The purpose of the study is to identify the barriers that exist in India to commercializing low-cost medical technologies. The current work developed by SIB will be used as case studies, along with a literature review and ecosystem assessment, to determine the key issues that prevent or slow device commercialization in this environment. By studying these issues, new strategies and risk mitigation techniques can be designed to help more of projects succeed. The results are expected to have a wider impact beyond the SIB program given the number of entrepreneurial medical technology opportunities that are just beginning to be developed in India.

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Paul Yock Stanford Health Policy Associate, Martha Meier Weiland Professor in the School of Medicine and Professor of Bioengineering and, by courtesy, of Mechanical Engineering and at the GSB Speaker
Anurag Mairal Director, Global Exchange Programs Speaker
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Katrina grew up in Nairobi, Kenya, and spent much of her youth camping on the East African savannah and exploring coral reefs in the Indian Ocean. She moved to the US at the age of eighteen, and holds a B.A. from Brown University in International Relations, an M.A. from the University of Washington in Marine Affairs, and a PhD in Environment and Resources from the Stanford Emmett Interdisciplinary Graduate Program in Environment and Resources.

Her professional experience includes several years in international development consulting in Washington DC, where she provided programmatic and technical support to USAID-funded fisheries and water management programs in South Asia and Sub-Saharan Africa. Working with the UN Food & Agriculture Organization's Bay of Bengal Large Marine Ecosystem Program, she reviewed the status of marine protected areas in eight South Asian countries (Maldives, Sri Lanka, India, Bangladesh, Myanmar, Thailand, Malaysia and Indonesia) and presented recommendations to senior government officials from each country on ways to improve marine resource management across borders. In the field of agriculture, she worked with a private drip irrigation and greenhouse company in Israel, and also co-founded and ran a farm with 200+ customers on the outskirts of Tel Aviv. Most recently, she traveled to Thailand, Indonesia and the Philippines to provide technical advice on the design of a marine fisheries traceability program meant to improve food security and the health of marine ecosystems. She is currently the Director of Sustainability for Victory Farms.

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The United States continues to endure the worst drought to hit the country in over 50 years. Although conditions have improved, 53 percent of the US is still experiencing moderate or worse levels of drought. The United States Department of Agriculture (USDA) projected last week that the drought will reduce the nation’s corn yield by 13 percent and soybean yield by 12 percent. As the world’s largest exporter of corn, soybean and wheat, this major disruption in U.S. supply is already having an impact on global food prices.

Is this summer a glimpse of what our future could look like under a changing climate, and what does that mean for the world’s poor who are disproportionately impacted by volatile food prices? What policy options are available to help avoid a repeat of the 2007-2008 food crisis? I sat down with FSE visiting scholar Thomas Hertel, an agricultural economist from Purdue University, to discuss these questions and related research as he wraps up his sabbatical year here at Stanford.

 

DEAN: The current drought has already had a dramatic impact on US corn prices, exceeding record highs of $8 a bushel. While American consumers are unlikely to feel the impacts until next year, the spike in corn prices has sparked debate over whether to drop or temporarily suspend US ethanol mandates to free up supply and ease the pressure on world food prices. In April, you published a paper in Nature Climate Change with Stanford environmental scientist Noah Diffenbaugh that looked at this very scenario.

How are current biofuel policies affecting the market’s ability to respond to extreme weather events like the current drought?

HERTEL: The remarkable thing about that paper is how timely it was. We predicted a volatile interplay between an extremely hot summer and the Renewable Fuel Standard for corn ethanol, and that is what we are now seeing, with the value of the mandates’ Renewable Identification Numbers (RINs) accruing greater value as the drought deepens. There are increasing calls for a waiver of the mandated 13.2 billion gallons of corn ethanol needed to meet this year’s federal renewable-fuel standards. This new source of demand (about 40 percent of production last year) has absorbed virtually all of the increased output the US has generated over the past eight years. By limiting the ability of commodity markets to adjust to yield fluctuations, biofuel mandates work in exactly the wrong direction. These price spikes are likely to be even larger in the future if these policies are not altered.

 

DEAN: In that same paper you warn that extreme weather events, like the current drought, are likely to become more common and potentially even more intense under a changing climate. To better understand the impacts of climate change on global agricultural production, trade, prices and poverty you have developed a global trade analysis model (GTAP), now used by over 10,000 members. Some of those results were published in a 2010 paper with FSE fellow David Lobell and FSE affiliated researcher Marshall Burke.

What have been some of the most interesting findings to come out of that model?

HERTEL: Prior to the publication of our 2010 paper in Global Environmental Change, most studies of climate change and poverty focused on the likely impact on prices and low income food consumers. Our paper was one of the first to examine the impact on wages and farm incomes. We found that low income farm households in regions of the world that are relatively less hard hit by climate change may actually benefit from the ensuing rise in world prices. Of course, low income consumers worldwide, as well as farmers in the regions hardest hit by climate change, such as Southern Africa and South Asia, will be hurt.

 

DEAN: Poor households in developing countries spend a disproportionately large amount of their disposable income on food. Even small price spikes can have a large impact.

What policies are needed to help protect the world’s poorest from price volatility?

HERTEL: This is an important question. Being a trade economist, I think immediately of trade policies and their role in improving or worsening the situation. From a global perspective, the best thing that can be done is for all regions of the world to share in the needed adjustments to events like the US drought of 2012. If all countries were to adjust their corn use by just a modest  amount, the shortfall could be accommodated more easily. However, the evidence from the 2007-2008 commodity crisis suggests that many countries – most notably India and China – responded to the crisis by adjusting border policies so as to shield domestic consumers from the price rise, thereby failing to share in the adjustment. This, in turn, made the world price rise larger and worsened the situation for low income households in other developing countries.

 

DEAN: In addition to focusing on climate change impacts on agriculture and poverty, you have a long-standing interest in agricultural impacts on the environment, and the role economics can play in mitigating agriculture’s destructive planetary impacts. The latter is particularly important given that agricultural production accounts for 70 percent of global freshwater consumption, 38 percent of total land use, and 14 percent of the world’s greenhouse gas emissions.

How are economic forces impacting the kind of farming we see today?

HERTEL: One of agriculture’s most important impacts on the environment has been its contribution to global greenhouse gas emissions (GHGs). Farming accounts for a disproportionate share of GHGs, including nitrous oxide emissions from fertilizer applications, methane emissions from livestock and paddy rice, as well as indirect emissions from the conversion of tropical forests to agricultural uses. There is little doubt that the globalization of agriculture has contributed to an acceleration of land conversion in some regions which had previously been insulated from world markets. New agricultural technologies offer great hope for moderating such GHG emissions – both by reducing the emissions intensity of agricultural production and by reducing the total amount of land required to feed the world. And there is evidence that more rigorous enforcement of restrictions on land conversion in places like the Amazon can have a tangible impact on global emissions. So the answer lies in a combination of investments, regulations and enforcement. We have explored the potential for agriculture and land-based mitigation policies to contribute to reduced GHG emissions – as well as the implications for food security – in a joint project with the UN-Food and Agriculture Organization. These findings are forthcoming in a paper in the Proceedings of the National Academy of Sciences.

 

DEAN: While at Stanford, you have had the opportunity to work closely with climate and earth system scientists to conduct research on the energy-water-land-agriculture-climate nexus under the umbrella of John Weyant’s Integrated Assessment Modeling (IAM) project and with former Purdue colleague, Noah Diffenbaugh.

How did you enjoy working in such an interdisciplinary environment?

HERTEL: This was the first deeply interdisciplinary experience of my career and it was both challenging and rewarding. Noah is the person who first stimulated my research interest in climate change five years ago. The idea that extreme events could have an important impact on agriculture, food prices and poverty is something that we have been exploring intensively since that time. However, it was only in the context of this sabbatical—with the help of Martin Scherer and Monika Verma—that we were able to really get our teeth into the issue, resulting in the April paper.

 

DEAN: You also taught an interdisciplinary graduate seminar with FSE fellow David Lobell on global agricultural land use change in 2050.

What sort of lessons did you learn from teaching an interdisciplinary seminar?

HERTEL: I really enjoyed the opportunity and the challenge of teaching an interdisciplinary course. I was fortunate to work closely with David Lobell in designing this course, as the structure was different from the typical economics course which I have taught in the past. Teaching the course also changed my perspective on which research questions are most important. Sometimes the points that most intrigue economists are of little broader relevance, while some of those issues which seem obvious to economists are deserving of much greater attention, more thorough investigation and better communication to the broader scientific community. I plan to offer this course when I return to Purdue, and I am also planning to write a textbook based on this course.

 

DEAN: You have also been working on the launch of an open source data program called GEOSHARE (Geospatial, Open-Source Hosting of Agriculture, Resources and Environmental Data).

What does GEOSHARE do and why is it needed?

Hertel: Feeding 9 billion people in 2050 in the face of a changing climate, while preserving the environment and eliminating extreme poverty, is one of the most important challenges facing us today. Yet the data currently available to understand how global and local phenomena affect the agriculture-environment-poverty nexus are insufficient to advance needed discovery and enable effective decision making. In order to address this limitation, we have initiated GEOSHARE. During my time at Stanford I was able to finalize funding for a two-year pilot effort aimed at providing proof of concept. It will prototype this freely available, global, spatially explicit database which will be accompanied by analysis tools and training programs for new scientists, decision makers, and development practitioners.

 

What will you take away with you from your time spent here on the Farm?

HERTEL: I greatly enjoyed my colleagues and conducting research, auditing courses (including a course in Geographical Information Science and David Lobell’s course in Climate and Agriculture) and teaching. But I also had great fun cycling and hiking in the hills around Palo Alto, windsurfing, singing in a local choir, and partaking of all that San Francisco has to offer. This is a lovely place to spend a sabbatical leave!

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