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Matthew Rojansky is a JD candidate at Stanford Law School and a CISAC predoctoral fellow. His research focuses on international law and security, counter-terrorism and counter-proliferation. He is currently conducting a study of UN Security Council legitimacy in the global counter-terrorism context, and developing a theory of network-based attribution for internationally wrongful acts. He has worked for the U.S. Department of Justice's Office of Special Investigations, the National Democratic Institute for International Affairs, the Israel Ministry of Foreign Affairs, and private law firms, where he has worked on international trade and IP litigation.

He received an AB in Soviet history from Harvard University. Next year, he will serve as a clerk for the United States Court of Appeals for the Armed Forces.

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Matthew Rojansky Speaker
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This article critiques the Eurocentric character of debates over combat motivation and battlefield conduct. It compares two approaches to these topics, the societal and the organizational, with the experience of the Indian army and other British imperial forces in the second world war. Different ways of thinking about nationalism, culture and military service are assessed against the distinctive character of colonial forces. Rather than seeing culture as derived only from ethnic heritage, as in the societal approach, the article develops a cultural analysis of the regular military institution and the ways in which it transforms people from diverse backgrounds into soldiers. This argument attends both to what soldiers share and to hybrid fusions of local and military culture.

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Journal of Contemporary History
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In this article, we critique the Eurocentric character of security studies as it has developed since World War II. The taken-for-granted historical geographies that underpin security studies systematically misrepresent the role of the global South in security relations and lead to a distorted view of Europe and the West in world politics. Understanding security relations, past and present, requires acknowledging the mutual constitution of European and non-European worlds and their joint role in making history. The politics of Eurocentric security studies, those of the powerful, prevent adequate understanding of the nature or legitimacy of the armed resistance of the weak. Through analysis of the explanatory and political problems Eurocentrism generates, this article lays the groundwork for the development of a non-Eurocentric security studies.

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Review of International Studies
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Jeffrey R. Cooper is an SAIC Technical Fellow, Vice President for Technology, and Chief Science Officer of SAIC Strategies, Simulation & Training Business Unit at Science Applications International Corporation (SAIC). He received his undergraduate and graduate education at The Johns Hopkins University, where he was later Professorial Lecturer in Arms Control and Defense Analysis at the School of Advanced International Studies (SAIS). In addition to long-standing focus on strategic analysis and military transformation, his core interest is using information to improve intelligence analysis, decision making, C2, and operational effectiveness in order to enhance U.S. national security. Cooper served in a range of senior government positions, including White House Staff and Assistant to the Secretary of Energy.

For the past several years, Cooper's focus has been largely on intelligence matters, with particular emphasis on analytic failures and methods to improve all-source analysis capabilities. Most recently, he chaired the Panel on Unexpected Threats for the DNI's Quadrennial Intelligence Community Review (QICR). Cooper was a Professional Staff Member of the Presidential Commission on Future Intelligence Capabilities (Silberman-Robb Commission) and has been actively involved in work on the Revolution in Intelligence Affairs and Intelligence Transformation. His monograph on "Curing Analytic Pathologies" will be published shortly by CIA's Center for the Study of Intelligence.

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Jeffrey Cooper Speaker Science Applications International Corporation
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In his State of the Union address in January, President Bush stressed the importance of improving math education. He proposed to "train 70,000 high school teachers to lead advanced placement courses in math and science, bring 30,000 math and science professionals to teach in classrooms, and give early help to students who struggle with math."

But where will these teachers come from? And will the training of teachers be sufficient to increase the number of students choosing math and science careers? And why does all this matter?

Because mathematics is the foundation of the natural sciences. It is no coincidence that Isaac Newton, the man who formulated the law of gravitational attraction that revolutionized our understanding of the universe, was also the man who popularized the calculus. And the natural sciences, however pure, are what give us airplanes, cable TV and the Internet.

In the 2003 Program for International Student Assessment, a test that measures math literacy, American 15-year-olds performed worse than their peers in 23 countries, as well as those in Hong Kong. It's not hard to see why. According to the National Council of Teachers of Mathematics, 40 percent of the nation's middle school math teachers do not have the equivalent of an undergraduate minor in math. The average starting salary of a teacher is only $30,000, whereas the average starting salary for a recent college graduate in computer science or engineering is $50,000.

Short of following the British, who have proposed paying experienced math teachers more than $100,000, with a guaranteed minimum of $70,000, where will we find a way to attract the thousands of teachers George Bush wants?

New York State initiated an innovative program to bring teachers from Jamaica for two or four years to teach in New York schools. Jamaica, a developing nation where one U.S. dollar equals 65 Jamaican dollars, is nonetheless a stable, English-speaking nation with an unbroken democratic tradition; it stands poised to beat the United States in establishing the world's first Institute for Mathematical Methods in Counterterrorism. When teachers for the New York program were recruited on the campus of the University of the West Indies, recruiters found more experienced math and science teachers than they ever dreamed they would.

But you can have all the teachers in the world and still not inspire kids to learn math. My friend Autumn e-mailed me about her nephew, Joshua: "He's upset because he's asked several of the math teachers why math is important or what are certain formulas used for -- there has to be a use, correct?"

Autumn told her nephew about my work in counterterrorism and for the television crime drama "Numb3rs." Autumn reported, "He's told his math teachers about you as well, and about the show 'Numb3rs.' He's informing them that through something called lattice theory you are managing to fight terrorists -- all with math."

Mathematics is art, and should be appreciated for its beauty, not simply for its utility. But we cannot expect 11 year-olds to cherish totally order-disconnected topological spaces as much as professional mathematicians do.

As I first proposed in January 2005, television shows like "Numb3rs" (or "Medium") -- where the main characters are mathematicians -- could work with the National Council of Teachers of Mathematics to show kids how math is really used; the council and Texas Instruments are now working together to use "Numb3rs" to promote math literacy in schools.

Another way to inspire kids is to relate mathematics to something they see every day. In order to excite students and draw funding to his school, school superintendent Ronald Ross of Roosevelt, N.Y., has begun looking into the idea of creating a curriculum involving math and counterterrorism. What kinds of topics would students learn?

The opening line of the Oscar-winning movie "A Beautiful Mind" is "Mathematicians won the war." During World War II, the mathematics underlying cryptography played an important role in military planning. Winston Churchill admired Alan Turing, the mathematician who had mastered the German codes, recognizing him as the man who had perhaps made the single greatest individual contribution to defeating Hitler.

At Los Alamos, the lab that built the atomic bomb, Cliff Joslyn uses lattice theory to mine data drawn from thousands of reports of terrorist-related activity to discover patterns and relationships that were previously in shadow.

Lattice theoretical methods developed at MIT tell us the probability that we have disabled a terrorist cell, based on how many men we have taken out and what rank they hold in the organization. Lauren McGough, a Massachusetts high school student, tested the accuracy of this model by getting her classmates to pretend they were terrorists, passing orders down a fictitious chain of command, essentially confirming what the theory predicts.

High school students could learn algebra, trigonometry, calculus and logic while also learning concrete applications involving homeland security. No longer would students yawn and ask, "What is math good for?" Beauty could defeat both terror and boredom.

Whatever you may think of the State of the Union address, when it comes to supporting math education, we should all see pi to pi. President Bush is correct when he says that mathematics education in America must improve if the United States is to stay economically competitive, but the stakes are much higher than that. During the Cold War, the United States would not have tolerated a military gap between itself and its adversaries. Yet today, with 61 percent of all U.S. doctorates in math going to foreigners (15 percent to Chinese), we readily accept a "math gap."

Dollar for dollar, the best defense against our adversaries' weapons of mass destruction may be our allies in the Americas, armed with weapons of math instruction.

Improving math education is not merely a smart idea. It is a matter of national security. Algebra is one revolutionary Islamic concept we cannot afford to neglect or ignore.

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San Francisco Chronicle
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George Habash, a militant and former secretary-general of the Popular Front for the Liberation of Palestine, once characterized terrorism as a "thinking man's game." Fighting terrorism is a thinking game, too, as illustrated by CISAC scholars Lawrence M. Wein and Jonathan Farley who use operations research and mathematics to devise rational methods for homeland security policy making.

George Habash, a militant and former secretary-general of the Popular Front for the Liberation of Palestine, once characterized terrorism as a "thinking man's game." Using mathematics, researchers at Stanford University's Center for International Security and Cooperation (CISAC) have made fighting terrorism a thinking man's game as well.

CISAC affiliate Lawrence M. Wein of the Graduate School of Business and CISAC Science Fellow Jonathan Farley are both applying mathematical models to homeland security problems, such as preventing a nuclear detonation in a major U.S. city and determining whether terrorist cells have likely been disrupted.

Wein, who teaches operations classes about different business processes used to deliver goods and services, has focused his research on bioterrorism and border issues. He has performed, he says, the first mathematical analyses of hypothetical botulism poisoning, anthrax outbreaks and smallpox infections.

"One overriding theme of my work is that all these homeland security problems are operations problems," said Wein, the Paul E. Holden Professor of Management Science. "Just as McDonald's needs to get hamburgers out in a rapid and defect-free manner, so too does the government have to get vaccines and antibiotics out and test the borders for nuclear weapons or terrorists in a rapid and defect-free manner."

In collaboration with Stephen Flynn of the Council on Foreign Relations, a nonpartisan research center, Wein recently has conducted research to improve security at U.S. borders and ports. Port security has received significant attention recently owing to the furor over Dubai Ports World's bid to manage six terminals at major U.S. harbors. The aim of Wein and Flynn's work is to prevent terrorists from bringing into the country a nuclear weaponbe it an atomic bomb or a so-called "dirty bomb," or conventional explosive packed with radioactive waste.

"Of all the problems I've studied, this is the most important because the worst-case terrorist scenario is a nuclear weapon going off in a major U.S. city and also it is the one the government has dropped the ball on the most," Wein said. "They have done a very poor job."

Instead of using the existing approach, where U.S. Customs actively inspects a minority of containers based on information from a specialized tracking system designed to identify suspicious containers, Wein and Flynn have recommended the government use a multi-layer, passive screening system for every container entering the country. Under their system, Customs would photograph a shipping container's exterior, screen for radioactive material and collect gamma-ray images of the container's contents. If terrorists shielded a bomb with a heavy metal such as lead to hide it from radiation detectors, gamma-ray imaging would allow inspectors to see the shielding and flag the container for inspection. Wein and Flynn believe this whole process would cost about $7 per container.

"Right now about maybe 6 percent of the containers are deemed suspicious and they will go through some testing and the other 94 percent of the containers just waltz right into the country without an inspector laying an eye on them," Wein said. "What we're proposing to do is 100 percent passive testing."

Wein's earlier work addressed a different threat: bioterrorism. In 2005, Wein revealed the nation's milk supply was vulnerable--a terrorist could potentially poison 100,000 gallons of milk by sneaking a few grams of botulinum into a milk tanker. Although the government and dairy industry have collaborated to intensify the heat pasteurization formula for milk, Wein is still pushing for additional botulinum testing, which he says would cost less than 1 percent of the cost of milk.

Wein also has used math to study smallpox outbreaks, the U.S. fingerprint identification system and U.S.-Mexico border security issues. Wein's congressional testimony on the fingerprint identification system in 2004 led to a switch from a two-finger system to a 10-finger system. His 2003 research on anthrax attacks resulted in a Washington, D.C., pilot program to use the U.S. Postal Service to distribute antibiotics throughout the capital after an outbreak. Seattle is now testing a similar program.

"In Washington, D.C., now, if there is a large-scale anthrax attack, postal workers will be the first to get their Cipro and, on a voluntary basis, they will go door-to-door distributing antibiotics," Wein said.

He said the common thread throughout his research is queuing theory, or the mathematical study of waiting lines, but he also draws upon mathematical epidemiology for his smallpox studies; air dispersion models for the anthrax model; supply chain management for the milk study; probability theory for the fingerprint identification system; and models for nuclear transport and detection for his work with containers.

From tainted lactose to lattice structures

While Wein is working on improving the government's counterterrorism systems, Jonathan Farley is working to figure out when terrorist organizations have been effectively disrupted. His mathematical model is designed to help law enforcement decide how to act once they have captured or killed a terrorist or a number of terrorists in a cell.

A professor at the University of the West Indies who will chair the Department of Mathematics and Computer Science there next year, Farley is on a one-year science fellowship at CISAC. In 2003, he co-founded Phoenix Mathematical Systems Modeling Inc., a company that develops mathematical solutions to homeland security problems.

He is using lattice theory--a branch of mathematics that deals with ordered sets--to determine the probability a terrorist cell has been disrupted once some of its members have been captured or killed.

"Law enforcement has to make decisions about what resources they should allocate to target different cells," Farley said. "The model should provide them with a more rational basis for allocating their scarce resources. ... It will inform you when you're making decisions about how much time and effort and how much money you're going to spend going after a particular cell."

While at Stanford, Farley hopes to unearth the perfect structure, mathematically speaking, for a terrorist cell--or in other words, a cell structure that is most resistant to the loss of members.

"If it's possible to determine the structure of an ideal terrorist cell, you can focus on a much smaller number of possibilities, because it makes more sense to assume the adversary is going to be smart rather than stupid," Farley said.

Farley has suggested it is possible Al-Qaida and other terrorist organizations already may have figured out the perfect structure for a terror cell by trial and error.

"I don't expect Osama bin Laden to be reading lattice theory in his caves in Afghanistan," said Farley. "But if it follows from the mathematics, perhaps heuristically, the terrorists will have come to the same conclusion--that this is the best way to structure a terrorist cell."

Although Farley acknowledges his model is not a panacea for terrorism, he hopes it will help reduce guesswork that might be involved in pursuing terrorists.

"It's not that I think mathematics can solve all of these problems," Farley said. "Because it can't. But it's better to use rational means to make decisions rather than guesswork."

John B. Stafford is a science-writing intern at Stanford News Service.

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For almost 20 years the Energy Department has been investigating and developing Nevada's Yucca Mountain as the site for a deep underground repository to accept spent fuel from all the power reactors and high level waste left over from bomb programs. The future of US nuclear energy is widely thought to be tied to the success of the project. In 2002 Congress gave DOE the green light to take the next step to submit an NRC license application demonstrating compliance with applicable standards. DOE promised such an application in December 2004. It delayed and delayed and now DOE no longer has a date for submitting an NRC application, but it will be no earlier than 2008.

What's holding it up? What is the history of the project? What are its technical and managerial and legal problems? What has been the effect of Nevada's opposition? How will recent project changes and the administration's new nuclear policy (GNEP) affect Yucca Mountain? What are the prospects for project licensing and completion? Is Yucca Mountain the only option for dealing with the country's spent fuel?

Dr. Victor Gilinsky is a Washington, D.C.-based consultant on energy. He has been active on proliferation issues for many years, going back to his early work at RAND in Santa Monica, California. He joined RAND soon after receiving a PhD in physics from the California Institute of Technology in 1961. In 1971 he moved to the Atomic Energy Commission in Washington, D.C., where he was assistant director for policy and program review. From 1973 to 1975, he was head of the RAND Physical Sciences Department. From 1975 to 1984, he served on the Nuclear Regulatory Commission (NRC), having been appointed by President Gerald Ford and reappointed by President Jimmy Carter. During his NRC tenure, Dr Gilinsky was heavily involved in nuclear-export issues. In 1982 he received Caltech's Distinguished Alumnus Award.

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Victor Gilinsky Former NRC Commissioner Speaker
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National security and global climate change are key motivations for seriously examining strategies for sustainable energy independence. We currently import more than 60% of our oil -- soon to be 70% -- from sources that are either unfriendly or unstable. We are also importing a substantial and increasing amount of natural gas from outside of North America.

The effectiveness of recent widespread supply abuses provides evidence of the fragility of the US economy to interruption of that energy supply stream for whatever end. This vulnerability and the mounting evidence of greenhouse gas induced climate change demand a fundamental change in US energy policies and behavior.

This paper draws on data presented at a National Academy of Engineering meeting last June and other sources to examine the options proposed and endeavors to separate the signal from the considerable noise associated with the subject. I propose a set of solutions that appear readily achievable to eliminate all dependency on imported oil and gas. The seminar provides an opportunity to get some expert feedback and discussion of the policy changes involved.

L. David Montague, an independent consultant, retired as President of the Missile Systems Division at Lockheed Martin Missiles and Space in 1996. A member of the National Academy of Engineering, Mr. Montague has 50 years of background in design, development and management of strategic and tactical military weapon systems. In addition to his development expertise in both tactical and strategic strike and defensive systems, his experience includes the requirements, development, and national security policy issues of strategic forces and defense systems to protect against weapons of mass destruction.

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David Montague CISAC Affiliate; Former President, Missile Systems Division, Speaker Lockheed Martin Missiles and Space
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