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Zia Mian, a research assistant with the Program on Science and Global Security (PS&GS) at Princeton University and lecturer of public and international affairs at the Woodrow Wilson School, has been with PS&GS since 1997. His interests include nuclear weapons and nuclear energy programs in South Asia, and finding alternative policies that can contribute to disarmament and sustainable development. With Dr. Pervez Hoodbhoy, Mian co-produced Crossing the Lines, a documentary film about India, Pakistan, and the battle over Kashmir, which was shown at CISAC this past summer. He has edited and co-edited a number of books on South Asia, including Out of the Nuclear Shadow (co-edited with Smitu Kothari; Zed Press, London and Rainbow Press, New Delhi, 2001). Mian has also co-edited a volume with Iftikhar Ahmad and Dohra Ahmad, Between Past and Future: Selected Essays on Pakistan by Eqbal Ahmad (Oxford University Press, Karachi).

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Zia Mian Research Assistant, Program on Science and Global Security, and Lecturer, Woodrow Wilson School of Public and International Affairs Speaker Princeton University
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Dr. Liu first offered his view on the current state of the software industry's development and in particular software outsourcing to China. Software prices and margins continue to drop. Coupled with this reality is Liu's view that "only 10-15% of software development is truly innovative and therefore suitable to be developed in Silicon Valley". As software development platforms and communication technologies, especially the Internet, become ubiquitous and affordable, distributed software development is becoming the rule.

China's challenges and advantages in software outsourcing

Compared to India, the leader in software outsourcing, China has its own distinct challenges. Chinese software companies have almost no U.S. customers for a number of reasons: language barriers, different working styles, customers' concern for software piracy, and the lack of experienced programmers and technical managers in China. Yet, China also has its advantages. Not only does it have a rapidly expanding domestic software market, but it also has a large pool of fresh engineering talent. "The key, therefore," asserted Dr. Liu, "lies in someone creating the right environment to train and build a local team to be able to develop and deliver world-class software products."

Augmentum's software development goals

This is what Augmentum has set out to accomplish. "...[W]e want to build a world-class, distributed development team for software product development... like the ODM model in the PC world..." declared Dr. Liu. Based on this vision, Augmentum's strategy hinges on its insistence to develop software for top US customers, such as Motorola, Business Objects, and PalmSource--and to rely primarily on local Chinese engineers. Explained Liu: "We want to make sure that the center of most of the people of that team is going to be in China, even though the locomotive, the teachers, is in the U.S., because that's where the leadership is in the software product development world."

Drawing on decades of experience developing top software teams at IBM and other companies, Dr. Liu detailed his company's efforts to attract the brightest local engineers and train them to be even better. He explained, "Culture and team is the true differentiation of Augmentum.... The real...challenge is to build the right culture with the right core team." The company insists on having no expatriates in their China operations but promoting close interaction between experienced mentors in the U.S. and the young teams in China, sometimes using some creative approaches for recruitment and training. For example, Augmentum puts all of its new hires under "a stress test" after hiring and proactively maintains an "upfront churn of at least 30%" in the first three-month period." Their end goal: "a world-class software development team that can bridge the East and the West but still has a cost structure comparable to local companies."

Liu's focus for the future

Despite experienced leadership, ties to leading U.S. companies, and strong young software teams, Augmentum faces real challenges. Liu acknowledged skeptics who question the ability to build a world-class team through working on the "crumbs of companies" of "projects they don't want to work on themselves." Nevertheless, he is confident in the trajectory of Augmentum's future growth, as the company is expecting to double its employees every year for the coming few years. In addition, Dr. Liu's vision includes a landscape beyond Augmentum. "I have a very simple focus. I want to train a lot of world-class software developers in China to serve the world. Many of them will not be working for Augmentum. It is fine...I want to bring my experience to there to make it happen. And the best vehicle to do that at this moment and time, the wave [that] I want to jump on is outsourcing, because it is growing the fastest."

Biography of Leonard Liu

Leonard Liu has spent 30 years in the systems industry, with a track record of developing innovative computing technologies into successful businesses. Most recently, he served as president of ASE Group, a leading provider of IC test and packaging services, having held roles as Chairman and CEO of Walker Interactive Systems, COO of Cadence Design Systems, and President of Acer Group. He was an early champion of outsourcing to India and China at Cadence and Walker. Dr. Liu began his career at IBM where he was responsible for the creation and implementation of SQL and the management of CICS, SNA and AIX, eventually overseeing the worldwide Database and Language lines-of-business. He received his undergraduate degree from Taiwan University and his Ph.D. from Princeton University.

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Focus on Innovation and Entrepreneurship in Greater China

SPRIE is a multidisciplinary research program at Stanford University that focuses on innovation and entrepreneurship in leading high technology regions in the United States and Asia. SPRIE has an active community of scholars at Stanford as well as research affiliates in the United States, Mainland China, Taiwan, Japan, Korea, Singapore, and India. During 2005-2006, SPRIE is expanding a new initiative on the rise of leading high technology regions in Greater China and their impact on the global knowledge economy. Specific research topics include globalization of R&D, executive leadership, university-industry linkages, venture capital industry development and leading high technology clusters in Greater China. In addition, industries of ongoing research at SPRIE include semiconductors, computers, telecommunications, and software.

SPRIE Graduate Research Fellows: Research Assistantships & Support for International Field Research

As part of its new initiative on innovation and entrepreneurship in Greater China, SPRIE will select outstanding Stanford students as SPRIE Graduate Research Scholars. SPRIE Graduate Research Scholars will work with SPRIE faculty and senior researchers at Stanford for two (or more) academic quarters in 2005-2006 to gather and analyze data, conduct interviews in Silicon Valley, contribute to publications, and advance progress on the overall project agenda. During summer 2006, they will conduct SPRIE field research through interviews or surveys with business and government leaders in Beijing, Shanghai, or Hsinchu. As part of SPRIE's international research team, they will have the opportunity to interact closely with project leaders and visiting scholars at Stanford as well as partners in Asia, such as the Ministry of Science and Technology, Tsinghua University, or Zhongguancun Science Park in Mainland China or the Industrial Technology Research Institute (ITRI) in Taiwan. They will also participate in SPRIE's public and invitation-only seminars and workshops with academic, business, and government leaders. The financial award will include RA support at 15-20 hours/week (or equivalent) plus summer stipend to cover travel, living expenses, and research.

How To Apply (limited to current Stanford graduate students)

Successful candidates will have demonstrated a track record of superior analytical ability, strong oral and written communication skills (including full fluency in English and Chinese), knowledge of high technology and entrepreneurship, high motivation, and willingness to be part of a dynamic international research team.

Applicants should submit:

  1. A brief statement (not to exceed two single-spaced pages), which describes the candidate's interests and skills,
  2. a curriculum vitae
  3. contact information for 2 references, preferably recent professors, advisors, or employers

Send applications to:

SPRIE
Encina Hall - East 301
Stanford University 94305-6055

or by email to George Krompacky. Questions? Please contact George Krompacky, Program Coordinator, by email or call 650.725.1885

Deadline for receipt of all materials: December 30, 2005

Applicants will be notified of decisions in January 2006

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The Stanford Project on Regions of Innovation and Entrepreneurship (SPRIE) is a multidisciplinary research program of the Shorenstein Asia-Pacific Research Center at Stanford University that focuses on innovation and entrepreneurship in leading high technology regions in the United States and Asia. SPRIE has an active community of scholars at Stanford as well as research affiliates in the United States, China, Taiwan, Japan, Korea, Singapore, and India.

Fellowship Program

As part of its initiative on Greater China, SPRIE will select two outstanding post-docs or young scholars as SPRIE Fellows at Stanford for the academic year 2006-2007 for research and writing on Greater China and its role in the global knowledge economy. The primary focus of the program is the intersection of innovation and entrepreneurship and underlying contemporary political, economic, technological and/or business factors in Greater China (including Taiwan, Mainland China, Singapore). Topics of particular interest include, but are not limited to, globalization of R&D, executive leadership, university-industry linkages, venture capital industry development and leading high technology clusters in Greater China. In addition, industries of ongoing research at SPRIE include semiconductors, computers, telecommunications, and software.

SPRIE Fellows at Stanford will be expected to be in residence for at least three academic quarters, beginning the fall quarter of 2006. Fellows take part in Center activities, including research forums, seminars and workshops throughout the academic year, and are required to present their research findings in SPRIE seminars. They will also participate as members of SPRIE's team in its public and invitation-only seminars and workshops with academic, business and government leaders. Fellows will also participate in the publication programs of SPRIE and Shorenstein Asia-Pacific Research Center. The Fellowship carries a stipend of $40,000.

How to Apply

Applicants should submit:

1) A statement of purpose not to exceed five single-spaced pages which describes the research and writing to be undertaken during the fellowship period, as well as the projected products(s) that will be published;

2) a curriculum vitae (with research ability in Chinese preferred); and

3) 2 letters of recommendation from faculty advisors or other scholars. All applicants must have Ph.D. degrees conferred by August 30, 2006.

Address all applications to:

Stanford Project on Regions of Innovation and Entrepreneurship,

Shorenstein Asia-Pacific Research Center,

Encina Hall - East 301,

Stanford University

Stanford, CA 94305-6055

Questions? Please contact George Krompacky, Program Coordinator

Deadline for receipt of all materials: January 13, 2006

Applicants will be notified of decisions in March 2006

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Allen S. Weiner examines to what degree the global "war on terror" that has erupted since September 11, 2001 fits the "just war" doctrine of international relations or even whether it can properly be considered a war at all in terms of positive international law. Whether or not these labels apply is not merely a matter of academic debate, Weiner notes, but has broader implications for the international legal responsibilities of the United States in Afghanistan, Iraq and other theaters of the "war on terror

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Allen Weiner Warren Christopher Professor of the Practice of International Law and Diplomacy Speaker FSI; Stanford Law School
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China's software industry is at an inflexion point. For the past decade, China has been in the shadow of India's spectacular success in the IT outsourcing industry. While changes are underway, many challenges remain. However, it is possible to build software development teams in China, collaborating with teams in the United States, to be as good as software development teams anywhere in the world.

Dr. Liu will discuss his experience as Chairman and CEO of Augmentum, a value-added software development services company that has grown in two years to more than 450 people worldwide, 90% of them at Augmentum's development facility in Shanghai. Sixty percent of Augmentum's work is high-value added such as total products and solutions, from architecture to system integration test. All their customers are in North America -- many of them leaders in their respective industries.

Leonard Liu has spent 30 years in the systems industry, with a track record of developing innovative computing technologies into successful businesses. Most recently, he served as president of ASE Group, a leading provider of IC test and packaging services, having held roles as Chairman and CEO of Walker Interactive Systems, COO of Cadence Design Systems, and President of Acer Group. He was an early champion of outsourcing to India and China at Cadence and Walker. Dr. Liu began his career at IBM where he was responsible for the creation and implementation of SQL and the management of CICS, SNA and AIX, eventually overseeing the worldwide Database and Language lines-of-business. He received his undergraduate degree from Taiwan University and his Ph.D. from Princeton University.

Part of SPRIE's Greater China and the Globalization of R&D seminar series

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Leonard Liu Chairman and CEO, Augmentum, former executive at Cadence, Acer Group & IBM Speaker
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In his first term in office, President George W. Bush established and nurtured a close personal relationship with Russian President Vladimir V. Putin. Early on, Bushs overtures toward his counterpart in the Kremlin produced beneficial results for the presidents policies. President Bush succeeded in persuading Putin to acquiesce in the abrogation of the Anti-Ballistic Missile Treaty, a revision of the Cold War arms-control regime that Bush deemed necessary for his security agenda. After the attacks of September 11, Putin sided publicly and unequivocally with the United States in the war on terror, providing material and intelligence assistance to the American military intervention in Afghanistan and not hindering the deployment of American troops in Central Asia. Since then, Russian and American officials claim that the two countries have continued to share intelligence in fighting cooperatively the global war on terror.

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Policy Review
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Michael A. McFaul
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The nuclear nonproliferation regime has come under attack from proliferation determinists, who argue that resolute proliferants connected by decentralized networks can be stopped only through the use of aggressive export controls or regime change. Proliferation pragmatists counter that nuclear aspirants are neither as resolved nor as advanced as determinists claim. A technical review of recent proliferators' progress reveals that Iran, North Korea, and Libya (before it renounced its nuclear program) have been unable to significantly cut development times; the evidence that these regimes are dead set on proliferating and cannot be persuaded to give up their nuclear programs is not compelling. Because these states lack tacit knowledge, the most effective way to dissolve the hub-and-spoke or star-shaped structures of their nuclear and ballistic missile networks is to target the hubs--that is, second-tier proliferators such as Pakistan that have assisted these states with their nuclear and missile programs. Past strategies aimed at dissuading proliferants have been most successful when they combine diplomatic, social, and economic benefits with credible threats and clear red lines. The United States should therefore use these strategies instead of regime change to target current and potential hub states to halt further proliferation.

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International Security
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Scholars attribute conventional violence in a nuclear South Asia to a phenomenon known as the "stability/instability paradox." According to this paradox, the risk of nuclear war makes it unlikely that conventional conflict will escalate to the nuclear level, thereby making conventional conflict more likely. Although this phenomenon encouraged U.S.-Soviet violence during the Cold War, it does not explain the dynamics of the ongoing conflict between India and Pakistan. Recent violence has seen Pakistan or its proxies launching limited attacks on Indian territory, and India refusing to retaliate in kind. The stability/instability paradox would not predict such behavior. A low probability of conventional war escalating to the nuclear level would reduce the ability of Pakistan's nuclear weapons to deter an Indian conventional attack. Because Pakistan is conventionally weaker than India, this would discourage Pakistani aggression and encourage robust Indian conventional retaliation against Pakistani provocations. Pakistani boldness and Indian restraint have actually resulted from instability in the strategic environment. A full-scale Indo-Pakistani conventional conflict would create a significant risk of nuclear escalation. This danger enables Pakistan to launch limited attacks on India while deterring all out Indian conventional retaliation and attracting international attention to the two countries' dispute over Kashmir. Unlike in Cold War Europe, in contemporary South Asia nuclear danger facilitates, rather than impedes, conventional conflict.

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Engineering as a profession in the United States and other developed nations may soon face a crisis. As a result of sophisticated telecommunications and the digitization of engineering work processes, increasing portions of engineering work can be done without close proximity to particular persons, places, or other processes. In principle at least, this work can be done anywhere in the world that has access to (1) global telecommunications networks and requisite software packages and (2) adequately trained personnel. Undergraduate engineering students in relatively advanced developing nations, such as India and China, follow a curriculum roughly comparable to the one taught in developed nations. Thus, even as barriers to performing conventional engineering work remotely are eroding, a global pool of conventionally trained engineers is growing. This means that U.S. engineers are now in global competition with engineers in developing nations whose wages are 40 to 80 percent lower than ours.

In this paper, our discussion is limited to work that is relocated but still services markets in developed countries (rather than work done to meet the needs of local markets in developing countries). Offshoring of this work can not only directly replace existing workers, but can also capture jobs that would have been added to the U.S. economy, especially for fast-growing entrepreneurial ventures that must lower cash expenditures and speed up product development. Recent examples include Silicon Valley high-technology start-up companies that establish offshore subsidiaries very early in their life cycles. In these cases, offshoring does not reflect direct job displacement but redirects job growth to lower cost developing nations, at the same time making the start-up more competitive.

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The Bridge: Linking Engineering and Society
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Rafiq Dossani
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