Tuesday, November 11, 2008

chen shui-bian detained 11-10-2008 by KMT

Detained Chen in Taiwan hospital

Chen Shui-bian (centre) raises his handcuffed-hands outside the prosecutor's office in Taipei
Earlier in the day Mr Chen was dramatically led away in handcuffs

A court proceeding against Taiwan's former President Chen Shui-bian has been suspended after he asked to be taken to hospital.

Mr Chen told the judges he needed treatment after being pushed earlier in the day, opposition lawmaker Lai Ching-teh told reporters.

Earlier, Mr Chen was detained by prosecutors questioning him over corruption charges.

The charges relate to his eight years in office, which ended in May.

He is accused of money laundering and illegally using a special presidential fund.

He denies any wrongdoing, and accuses the new administration of persecuting him to bow to the wishes of Beijing.

Mr Chen is an ardent supporter of Taiwanese independence, and a trenchant critic of President Ma Ying-jeou's Kuomintang (KMT) administration, which he accuses of pandering to Beijing.

His detention comes days after a historic visit to the island by a senior Chinese envoy was marred by violent protests.

'Pushed from behind'

The former leader was in court for a hearing to decide whether his detention earlier in the day by prosecutors should be formally approved.

Former Taiwanese President Chen Shui-bian chants slogans outside the proscutor's office in Taipei on 11 November 2008
The KMT and the Chinese Communist Party see me as their number one prisoner as I am the biggest stone blocking their way to reunification
Chen Shui-bian

But the hearing was suspended when Mr Chen demanded to be taken to hospital, Mr Lai said.

"The former president told the judges that he was pushed from behind while being escorted out of the prosecutors' office, and demanded that he be sent to the National Taiwan University Hospital to examine his injuries," Mr Lai told reporters, according to the AFP news agency.

"The judges have taken seriously the former president's complaints and decided to suspend the hearing," Mr Lai said.

There were no more details on the type of injury Mr Chen may have sustained.

Earlier on Tuesday, Mr Chen had spent more than six hours in the prosecutors' office answering questions about corruption before he was dramatically handcuffed and led to a waiting car.

'A sacrifice'

As he was led out, he put his handcuffed hands in the air and shouted "political persecution" to an audience of dozens of protesting supporters.

"The KMT and the Chinese Communist Party see me as their number one prisoner as I am the biggest stone blocking their way to reunification," Mr Chen reportedly said.

He said the Chinese envoy, Chen Yunlin, "had a bad time in Taiwan... so Ma Ying-jeou wants to put me in jail as a sacrifice to appease China. I am very honoured and proud to play such a role."

Mr Chen and his family have been mired in corruption allegations since 2006, when his son-in-law was charged with insider trading on the stock market and then jailed for seven years.

The former president is under investigation for allegedly embezzling 14.8 million Taiwan dollars (US$480,500; £306,000) from the government.

The charges have damaged the reputation of the main opposition Democratic Progressive Party (DPP), observers say, which now faces a rough ride in local elections next year.

Taiwan has been ruled separately since the end of the Chinese civil war in 1949; the defeated Kuomintang retreated to Taiwan to create a self-governing entity.

But Beijing sees the island as a breakaway province which should be reunified with the mainland, by force if necessary.



Bookmark with:

Monday, November 10, 2008

你的身體需要那種水果

你的身體需要哪種水果

頭髮 染髮燙髮--酪梨染髮燙髮過易奪走頭髮的水分和油脂,頭髮變得乾枯。成熟的酪梨中含有30的珍貴植物油脂--油酸,對乾枯的頭髮有特殊功效。

大腦 過度用腦--香蕉過度用腦導致人體內維生素、礦物質及熱量缺乏,除了大腦疲憊,還常常感到情緒低落。此時補充香蕉可提供所需營養物質並緩解消極情緒。由於過度用腦消耗多種維生素,因此營養師建議同時補充善存等多維生素片。

眼睛 過度用眼--木瓜長時間盯著電腦屏幕或電視屏幕,過度用眼,則視網膜感光所依靠的關鍵物質維生素A大量消耗,眼睛感到乾燥、疼痛、怕光,甚至視力下降。此時就需要食用可提供大量維生素A的木瓜。

牙齦 牙齦出血--奇異果牙齦健康與維生素C息息相關。缺乏維生素C的人牙齦變得脆弱,常常出血、腫脹,甚至引起牙齒鬆動。奇異果的維生素C含量是水果中最豐富的,因此是最有益於牙齦健康的水果。

心臟 心臟病史--葡萄柚膽固醇過高嚴重影響心血管健康,尤其有心臟病史者,更要注意控制體內膽固醇指標。葡萄柚是醫學界公認最具食療功效的水果,其瓣膜所含天然果膠能降低體內膽固醇,預防多種心血管疾病。

肺臟 長期吸煙--葡萄
長期吸煙的肺部積聚大量毒素,功能受損。葡萄中所含有效成分能提高細胞新陳代謝率,幫助肺部細胞排毒。另外,葡萄還具有祛痰作用,並能緩解因吸煙引起的呼吸道發炎、癢痛等不適症狀。

肌肉 肌肉拉傷--菠蘿肌肉拉傷後,組織發炎、血液循環不暢,受傷部位紅腫熱痛。菠蘿所含的菠蘿蛋白成分具有消炎作用, 可促進組織修復,還能加快新陳代謝、改善血液循環、快速消腫,是此時身體最需要的水果。

皮膚 預防皺紋--芒果若皮膚膠原蛋白彈性不足就容易出現皺紋。芒果是預防皺紋的最佳水果,因為含有豐富的β-胡蘿蔔素和獨一無二的,能激發肌膚細胞活力,促進廢棄物排出,有助於保持膠原蛋白彈性,有效延緩皺紋出現。

血液 供氧不足--櫻桃容易疲勞在多數情況下與血液中鐵含量減少,供氧不足及血液循環不暢有關。吃櫻桃能補充鐵質,其中含量豐富的維生素C還能促進身體吸收鐵質,防止鐵質流失,並改善血液循環,幫助抵抗疲勞。腳部 腳氣困擾--柳橙體內缺乏維生素B1的人容易有腳氣困擾。這種情況下最適合選擇柳橙,它富含維生素B1,並幫助葡萄糖新陳代謝,能有效預防和治療腳氣病。

Monday, November 03, 2008

Ann Dunham

Ann Dunham

From Wikipedia, the free encyclopedia

Jump to: navigation, search
Ann Dunham

Photo of Ann Dunham, circa 1971
Born Stanley Ann Dunham
November 29, 1942(1942-11-29)
Fort Leavenworth, Kansas, US
Died November 7, 1995 (aged 52)
Honolulu, Hawaii, US
Cause of death Ovarian and uterine cancer
Resting place Pacific Ocean
Nationality American
Education B.A., M.A., Ph.D.[1]
Alma mater University of Hawaii
Occupation Rural development
Home town Wichita, Kansas
Spouse(s) Barack Obama (Sr.)
(1961–1964) (divorced)
Lolo Soetoro
(c. 1967–1980) (divorced)
Children Barack Obama
Maya Soetoro-Ng
Parents Madelyn and Stanley Dunham

Dr. Stanley Ann Dunham Soetoro (November 29, 1942 – November 7, 1995), known as Ann Dunham, and later as Ann Sutoro[1] was an anthropologist who specialized in rural development. Born in Kansas, Dunham spent her teenage years in Mercer Island near Seattle, Washington, and much of her adult life in Hawaii. She is the mother of United States Senator and 2008 Democratic presidential candidate Barack Obama.[2]

Contents

[hide]

[edit] Early life

Ann Dunham was born in Fort Leavenworth, Kansas[3] while her father was in the Army.[4] She was named after her father,[3] who reportedly gave his daughter and only child his name because he had wanted a boy; however, she was referred to as "Ann."[5]

Her parents, Stanley Armour Dunham and Madelyn Dunham, met in Wichita, Kansas, and married on May 5, 1940.[6] She had Cherokee, English and Irish heritage from her parents. She was a distant cousin of Vice President Dick Cheney.[7]

After the Pearl Harbor attack her father joined the Army and her mother worked at a Boeing plant in Wichita.[3] At the end of World War II she moved with her parents to California, Texas, and Seattle, Washington, where her father was a furniture salesman and her mother worked for a bank. The family moved to Mercer Island, Washington, in 1956 so that 13-year old Ann could attend the Mercer Island high school that had just opened,[5] where teachers Val Foubert and Jim Wichterman taught the importance of challenging societal norms and questioning authority. Dunham took the lessons to heart; "She felt she didn't need to date or marry or have children." A classmate remembers her as "intellectually way more mature than we were and a little bit ahead of her time, in an off-center way."[5] One high school friend described her as: "If you were concerned about something going wrong in the world, Stanley [Ann] would know about it first ... We were liberals before we knew what liberals were." Another called her "the original feminist."[5]

[edit] Move to Hawaii and first marriage

Ann Dunham and Barack Obama

In 1960 Dunham's parents moved to Hawaii to pursue further business opportunities in the new state. She soon enrolled at the University of Hawaii at Manoa, where she studied mathematics and later anthropology. She met Barack Obama Sr., a student from Kenya and the school's first African student, in a Russian language class at the University.[2] When they became engaged, both sets of parents opposed the marriage, with Obama's father Hussein Onyango Obama in particular objecting. Nevertheless, the couple married on February 2, 1961 in Maui, Hawaii, after discovering she was pregnant.[5][1] On August 4, 1961, at age 18, she gave birth to her first child in Honolulu, named Barack Obama II.[8]

Dunham left school to care for the baby, while Obama Sr. completed his degree. He graduated from the University of Hawaii in June 1962, leaving shortly thereafter to travel to Cambridge, Massachusetts, where he would begin graduate study at Harvard University in the fall.[9] Later that summer, Dunham and the year-old baby Barack stopped to visit her friends in Mercer Island[9][10][11] before joining Obama Sr. in Cambridge. However, mother and son soon returned to Seattle, where she enrolled in the University of Washington.[10][9] Dunham, missing her family, then moved back to Hawaii[10] and filed for divorce in Honolulu in January 1964. Obama Sr. did not contest, and the divorce was granted.[1] Obama Sr. received a Masters degree (AM) in economics from Harvard in 1965[12] and only saw their son again once, in 1971, when Barack was 10 years old.

In an interview, Senator Obama referred to his mother as "the dominant figure in my formative years...The values she taught me continue to be my touchstone when it comes to how I go about the world of politics."[5]

[edit] Second marriage

A few years later, Dunham met an Indonesian student, Lolo Soetoro (ca. 1936-1987), at the East-West Center on the University of Hawaii campus.[13] They married in 1967 and moved to Jakarta, Indonesia, after the unrest surrounding the ascent of Suharto,[2] where he worked as a government relations consultant with Mobil Corporation, the U.S.-based international petroleum company.[14][15]

Soetoro and Dunham had a daughter, Maya Kassandra Soetoro, on August 15, 1970.[6]

In Indonesia, Dunham enriched her son's education with correspondence courses in English, recordings of Mahalia Jackson, and speeches by the Rev. Dr. Martin Luther King Jr. When the young Obama asked to return to Hawaii for high school rather than stay in Asia with her, she agreed, despite the decision being painful for her.[2] Madelyn Dunham's job as a vice-president at The Bank of Hawaii helped pay the steep tuition at Punahou School,[16] with some assistance from a scholarship.[17]

In the 1970s, as Dunham wished to return to work, Soetoro wanted more children. "He became more American," she once said, "as she became more Javanese."[2] Ann Dunham left Soetoro in 1972, returning to Hawaii and reuniting with her son Barack for several years. Soetoro and Dunham saw each other periodically in the 1970s when Dunham returned to Indonesia for her fieldwork[2] but did not live together again. They divorced in 1980.[18]

[edit] Later life

Dunham was not estranged from either ex-husband, and encouraged her children to feel connected to their fathers. She returned to graduate school in Honolulu in 1974, while raising Barack and Maya. When Dunham returned to Indonesia for field work in 1977 with Maya, Barack chose not to go, preferring to finish high school in the United States.[2]

Having been a weaver, Dunham was interested in village industries, therefore moved to Yogyakarta, the center of Javanese handicrafts.[19] In 1992 she earned a Ph.D. in anthropology from the University of Hawaii, under the supervision of Prof. Alice Dewey, with a dissertation titled Peasant blacksmithing in Indonesia: surviving and thriving against all odds.[20] Dunham then pursued a career in rural development championing women’s work and microcredit for the world’s poor, with Indonesia’s oldest bank, the United States Agency for International Development, the Ford Foundation, Women’s World Banking, and as a consultant in Pakistan. She mingled with leaders from organizations supporting Indonesian human rights, women's rights, and grass-roots development.[2]

In 1994, Ann Dunham was diagnosed with ovarian cancer and uterine cancer; she moved back to Hawaii to live near her widowed mother.[2] She died there in 1995 at the age of 52.[21][22] Following a memorial service at the University of Hawaii, Barack and his half-sister, Maya, spread Ann's ashes in the Pacific Ocean on the south side of Oahu.[2]

[edit] Religion

An acquaintance from high school has said that Dunham "touted herself as an atheist, and it was something she'd read about and could argue."[5]

Maya Soetoro-Ng, when asked if her mother was an atheist, said, "I wouldn't have called her an atheist. She was an agnostic. She basically gave us all the good books — the Bible, the Hindu Upanishads and the Buddhist scripture, the Tao Te Ching — and wanted us to recognise that everyone has something beautiful to contribute."[23] "Jesus, she felt, was a wonderful example. But she felt that a lot of Christians behaved in un-Christian ways."[24]

In his 1995 memoir Dreams from My Father Barack Obama wrote, "My mother's confidence in needlepoint virtues depended on a faith I didn't possess... In a land [Indonesia] where fatalism remained a necessary tool for enduring hardship... she was a lonely witness for secular humanism, a soldier for New Deal, Peace Corps, position-paper liberalism."[25] In his 2006 book The Audacity of Hope Obama wrote, "I was not raised in a religious household... My mother's own experiences... only reinforced this inherited skepticism. Her memories of the Christians who populated her youth were not fond ones... And yet for all her professed secularism, my mother was in many ways the most spiritually awakened person that I've ever known."[26] Religion for her was "just one of the many ways — and not necessarily the best way — that man attempted to control the unknowable and understand the deeper truths about our lives," Obama wrote.[24] In 2007 Obama described his mother as "a Christian from Kansas." "I was raised by my mother," he continued. "So, I’ve always been a Christian."[27][28] Also in 2007, he said in a speech, "My mother, whose parents were nonpracticing Baptists and Methodists, was one of the most spiritual souls I ever knew. But she had a healthy skepticism of religion as an institution."[1]

[edit] 2008 presidential campaign ad

A photograph of Dunham holding a young Obama was included in a 30-second television advertisement called "Mother".[22] Obama says in the ad, which focuses on his calls for health care improvements, that his mother spent her final months "more worried about paying her medical bills than getting well."[22]

Barack Obama Biography

Barack Obama Biography

By BarackObama.net Staff

Barack Obama was born in Honolulu, Hawaii, on August 4, 1961.

The name “Barack” means “one who is blessed.” And when Barack was young his family and friends called this blessed young boy “Barry” for short.

His father, Barack Obama, Sr., was from Kenya, and his mother, Ann Dunham, was from Kansas. His parents met at the University of Honolulu when they were students (his father was attending on scholarship).

Barack’s parents separated when he was two years old and then divorced when he was four, and his father eventually returned to Kenya. His mother later married another foreign student, Lolo Soetoro, who was from Indonesia; and in 1967, Barack moved with his new stepfather and mother to Jakarta, where he lived from age six to ten.

When Barack was ten, he returned to Honolulu and lived with his grandparents, who took over parenting duties. While in Honolulu, Barack attended the renowned Punahou School until he graduated in 1979.

During this period, Barack was able to see his biological father, who returned to Honolulu for a brief visit in 1971. Sadly, that would be their last meeting as his father died in an automobile accident in 1982. (Barack would lose his mother to cancer 1995.)

After his 1979 high school graduation, Barack moved to Los Angeles to attend Occidental College. He studied there for two years and then transferred to Columbia University in New York City, where he majored in Political Science and received his Bachelor of Arts degree in 1983.

After graduation, Barack worked in New York at Business International Corporation and New York Public Interest Research Group before returning to Chicago, where he became a community organizer with a church-based group which worked to improve living conditions in poor neighborhoods.

He entered Harvard Law School in 1988, where he was elected the first African-American president of the Harvard Law Review in its 104-year history. He went on to receive his J.D. degree from Harvard in 1991 with magna cum laude honors.

He then returned to Chicago, directed a voter registration drive, and soon became a civil rights attorney and a lecturer on constitutional law; and in 1992, married the love of his life, Michelle.

And it was in Chicago in 1995 that Barack released his first best-selling book: “Dreams from My Father.” He was offered the book contract shortly after becoming the president of the Harvard Law Review. The book is a compelling memoir of his life.

Barack’s political career began with his election to the Illinois Senate in 1996, where he would serve from 1997 to 2004. In 2000, he ran an unsuccessful campaign for a seat in the House of Representatives, but would go on to run for the U.S. Senate a few years later.

And while Barack was running for U.S. Senate, he was presented with the opportunity of a lifetime: to give the keynote address at the 2004 Democratic National Convention in Boston. And it was at that convention that Barack gave one of the most inspiring and moving political speeches ever delivered, and by the time the speech was over, Barack became a political heavyweight and an instant celebrity.

Barack went on to win his U.S. Senate race in a landslide, capturing 70% of the votes. And, riding a wave of strong popularity, published his second best-selling book in 2006, “The Audacity of Hope,” which expanded on the issues he touched on in his 2004 DNC speech.

On February 10, 2007, Barack Obama announced his candidacy for president of the United States.

But of all of Barack’s achievements, nothing has made him prouder than becoming a father to his two wonderful girls: Malia (born 1999), and Sasha (born 2001).

We love you and support you Barack Obama!

Barack Obama's Parents

Barack Obama's Parents

Barack Obama's biological father, Barack Obama, Sr.
Barack Obama's biological father, Barack Obama, Sr.

(Barack Obama, Sr. was from Kenya.)

Barack Obama's biological father, Barack Obama, Sr.
Barack Obama's biological father, Barack Obama, Sr.

Barack Obama's biological mother, Ann Dunham
Barack Obama’s biological mother, Ann Dunham
holding a very young Barack Obama

(Ann Dunham was from Kansas.)

Barack Obama's stepfather Lolo Soetoro
Barack Obama’s stepfather Lolo Soetoro; biological mother Ann Dunham;
and half-sister Maya Soetoro-Ng

(Ann Dunham married Lolo Soetoro, from Indonesia, after she and Barack Sr. were divorced. Barack lived with his stepfather and mother in Indonesia from age 6 - 10.)


Barack Obama's Grandparents
Barack Obama's Grandparents

(When Barack returned to Hawaii at age 10, he lived with his grandparents.)

Microsoft Goes Far Afield to Study Emerging Markets - NYTimes.com

Microsoft Goes Far Afield to Study Emerging Markets - NYTimes.com

Microsoft Research Redmond Research in Software Engineering

New Area in Microsoft Research: Looking for a RiSE in Developer Productivity
By Rob Knies

In the summer of 2008, the leadership at Microsoft Research Redmond reorganized an existing set of research groups with a refreshed, more encompassing mandate: reinventing all aspects of software development. The revamped area, Research in Software Engineering (RiSE), headed by Wolfram Schulte, includes a diverse set of topics such as experimental software engineering, human interactions in programming, software reliability, programming-language design and implementation, and theorem proving. He recently found time to discuss the new area and the challenges it is addressing:

Q: How is RiSE going to address all of those topics?

Schulte: As our Web site shows, you’ll see that it is organized into 10 broad research areas, ranging from the development process itself all the way to the underlying runtimes and system software the code eventually runs on. Our research projects span multiple areas. The important thing is to address the set of current challenges we see: global software development, multicore and Web concurrency, reliability, security, and energy-efficient computing. These challenges are interdependent and so their solutions must be as well.

Q: Concurrency is a hot topic these days. What is RiSE doing in that area?

Schulte: With multicore machines, most of our programs are parallel. Today, we need a way to express parallelism, and we need analysis tools to find errors related to concurrency.

Wolfram Schulte
Wolfram Schulte

To give .NET programmers a much more reliable way to program multi-core machines, Daan Leijen recently developed a library of high level concurrency abstractions, called the Task Parallel Library (TPL), which will ship as part of the Parallel Extensions to .NET in .NET 4.0.

Now that we can express parallelism, we need to have analysis tools to make sure there are no races, deadlocks, or performance bottlenecks. To address some of these problems, Madan Musuvathi and Shaz Qadeer have developed CHESS, which uncovers data races by controlling the scheduler for the different threads in a program. CHESS will be presented during the Professional Developers Conference [PDC].

But in the long run, our existing concurrency models of programming, with threads and locks, are not adequate. If you think about the way that our abstractions have evolved, we started with assembly language, we went to C, and we have managed languages today. Threads and locks should be seen as the assembly-language level. We need better abstractions and are looking to do more here.

Q: Static analysis has always been a strong point of MSR. What is new in that area?

Schulte: Yes, we have had a lot of success in static analysis. For instance, Tom Ball and colleagues built the Static Driver Verifier toolkit, which helps eliminate blue screens from drivers in Windows and improves the reliability of the platform. Manuel Fähndrich contributed to the SAL project, the annotation language for the static checkers PREfix and PREfast, which won Microsoft’s Chairman’s Award for Excellence in Engineering in 2007. Rustan Leino has led the Spec# project, a research effort that has created the world’s leading program-verification system for object-oriented programming.

Now, a spinoff from our previous work is making its way into .NET. At PDC, the Code Contracts project will be shown. It has been developed in part by Mike Barnett and Francesco Logozzo. It provides a language-independent way for programmers to record their design decisions for any .NET language. We then have tools that mine those contracts to generate proper documentation, to check them at runtime, or even to statically verify code relative to the contracts. In a sense, code contracts and the associated tools act as grammar checking for programmers, while today’s compilers are like spell checkers.

Q: What does the virtual team for testing work on?

Schulte: Testing is in desperate need of automation: It continues to cost as much as 50 percent of the development effort. We have recently combined automated testing with static analysis based on research Patrice Godefroid started while he was at Bell Labs.

Another PDC presentation will be the Pex project, headed by Nikolai Tillmann and Peli de Halleux. Pex builds on Patrice’s ideas and brings them to a new level. It performs an intelligent exploration of software to systematically discover its behavior, thereby forcing it into the possibly faulty corner cases that manual testing is often unable to find. Even without guidance, Pex often automatically reaches high code coverage. As a side effect, Pex immediately generates concrete test cases. The test cases can be used for immediate debugging or as regression suites.

Q: What does the virtual team for experimental software engineering look at?

Schulte: This is an interesting virtual team because it spans two Microsoft Research labs. It includes Nachi Nagappan in Redmond and Brendan Murphy of Microsoft Research Cambridge. They measure Microsoft’s internal software-development process to make better predictions on how the next similar project will run. The team analyzes the development process and resulting software artifacts to understand how likely it is that a particular piece of code still has defects. If you do those analyses and have the right statistical models, you can also do better risk estimation and resource allocation. Their focus is not just at the software-system level, but also, more holistically, at the team/project level, for instance, the impact of organizational structure on software quality.

Q: This all sounds very applied. Are any teams looking at more foundational issues?

Schulte: Certainly! But foundations often pay off in very applied ways. We are doing amazing work on automated theorem proving. Nikolaj Bjørner and Leo de Moura have created Z3, which has won most of the categories in the worldwide competition for Satisfiability Modulo Theorem solvers. This is not only a theoretical achievement, but also provides the underlying engine for most of our program analysis and testing tools.

A true foundational result is recent work by Yuri Gurevich: he has solved a logic problem that has been open for more than 70 years. Yuri has proven Church’s thesis, which tries to rigorously define what computability means.

Q: People in your area are also looking at the human side of programming. What is the research there?

Schulte: Ultimately, our code is all developed by people. If we don’t understand how people collaborate with their teammates, we might miss a huge opportunity to help the overall development process.

Previous work by Rob DeLine and his team has had impact by mining all of the information related to a development project to help new developers who have just joined a product team. During PDC, Andrew Begel will show one incarnation of this work, Deep Intellisense.

One interesting future question is: How can we develop a code base when engineers are distributed over different locations and over different time zones? It’s the question of global software development. Can we provide tools to enable them to work as if they were in the next room?

Q: Then you have a virtual team looking at programming languages themselves. What is going on there?

Schulte: You can either create a new programming language or impose rules for using an existing programming language. We are working on both.

RiSE group photo
For members of the RiSE group, the passion to improve software engineering runs red-hot.

Programmers appreciate type systems because they provide partial guarantees for your program, for instance, that the variables only hold values of a proper type. But the type systems for existing languages such as C# and Visual Basic are very restrictive. We are exploring much more expressive type systems. For instance, we can guarantee that processes have to obey a certain protocol if they want to exchange messages with each other. The Singularity project followed this approach with the static analysis enabled by type system extensions to C#.

But we also need to address all the systems already written. In fact, we can improve them a lot just by changing the underlying runtime systems. Using the traditional engineering techniques of redundancy and randomization, Ben Zorn has created RobustHeap, a memory allocator resilient against buffer overruns. Trishul Chilimbi uses program analysis from the performance point of view. He has built various low-overhead profiler and data-relocation tools that help find performance bottlenecks in code, whether it’s sequential code or contention problems in concurrent code. And he is focused on extending this work to improve software energy efficiency.

Q: Another hot topic these days is Web programming. Are you looking into that?

We have three great projects that will be presented during PDC. Ben Livshits and Emre Kıcıman have developed AjaxView, the first system that provides a view of the overall performance of a Web application. This includes the server, the client, and the latency on the wire in between. They also developed Doloto, which rewrites a JavaScript application so that individual pieces can be downloaded on demand, thus reducing the wait before a Web application can begin running. Finally, there is BAM, developed by Ethan Jackson, which enables cloud applications to be specified as logic programs independently from implementation technologies and service connectivity. Complete, runnable, programs are then generated with the single push of a button.

Q: How would you like to engage the research community outside of Microsoft?

Schulte: We already have lots of interactions with the academic community. We host many visiting researchers and Ph.D. interns. We participate in conferences and co-author papers with researchers outside of Microsoft. But I would also like to have more interaction with the broader developer and tester community.

Q: Your team is playing a larger role in this year’s PDC. What are your goals for that event?

Schulte: The most important goal is engaging in a discussion with developers who work on the Microsoft platform. Going to academic conferences, we get a lot of exposure to one set of people, but not to those people who would just like to use our research ideas without necessarily going into the details. They just want to see how they work. By going to the PDC, we hope we can attract lots of developers and testers and engage with them in a discussion about whether they like what they are seeing. Maybe we misunderstand their main problem. Maybe it’s the build system, not the programming environment per se, that is the most difficult to use for them. That might reprioritize our research efforts.

We’ll have several tools as downloads available for the PDC, either from DevLabs, where prototype tools for Microsoft Visual Studio can be downloaded and explored, or from the Microsoft Research Web site, where we make tools available for non-commercial use to get feedback.

Q: With the RiSE initiative, how long will it take before you can evaluate what you have accomplished? What are you hoping to see once you get there?

Schulte: We believe we can make major advances in each of the research areas we are looking at. For instance, in concurrency we think that a new programming model will emerge that can guarantee programs will behave correctly by construction. For testing, we think we can extend the impact we have had on finding security bugs for codecs to whole applications.

Research isn’t on a time schedule. Addressing the right research questions, then coming up with solutions, and then looking for opportunities to harness those ideas—that’s what we would like to do.

Article from microsoft reseach 11-03-2008

The computer, once a tool for scientists, is becoming a collaborator

It's not just a tool serving science anymore. It's becoming a part of the science.


Computer science -- it's not just about hardware and software anymore.

It's about oceans, stars, cancer cells, proteins and networks of friends. Ken Birman, a computer science professor at Cornell University, says his discipline is on the way to becoming "the universal science," a framework underpinning all others, including the social sciences.

An extravagant claim from someone with a vested interest? The essence of Birman's assertion is that computers have gone from being a tool serving science -- basically an improvement on the slide rule and abacus -- to being part of the science. Consider these recent developments:

"Systems biologists" at Harvard Medical School have developed a "computational language" called "Little b" for modeling biological processes. Going beyond the familiar logical, arithmetic and control constructs of most languages, it reasons about biological data, learns from it, and incorporates past learning into new models and predictors of cells' behaviors. Its creators call it a "scientific collaborator."

Microsoft Research (MSR) is supporting a U.S.-Canadian consortium building an enormous underwater observatory on the Juan de Fuca Plate off the coast of Washington state. Project Neptune will connect thousands of chemical, geological and biological sensors on more than 1,000 miles of fiber-optic cables and will stream data continuously to scientists for as long as a decade. Researchers will be able to test their theories by looking at the data, but software tools that MSR is developing will search for patterns and events not anticipated by scientists and present their findings to the scientists.

Last year, researchers from Harvard Medical School and the University of California, San Diego, used statistical analysis to mine heart-disease data from 12,000 people in the Framingham Heart Study and learned that obesity appears to spread via social ties. They were able to construct social networks by employing previously unused information about acquaintances that had been gathered solely for the purpose of locating subjects during the 32-year study.

Computer scientists and plant biologists at Cornell developed algorithms to build and analyze 3-D maps of tomato proteins. They discovered the "plumping" factor that is responsible for the evolution of the tomato from a small berry to the big fruit we eat today. Researchers then devised an algorithm for matching 3-D shapes and used it to determine that the tomato-plumping gene fragment closely resembles an oncogene associated with human cancers. That work would have taken decades without computer science, researchers say.

While these applications might seem to have little in common, they represent a class of scientific problems involving experimental data that is voluminous and complex. In fact, the raw information is so overwhelming that scientists are often at a loss to know where to begin to make sense of it. Computer science is pointing the way.

"A trend that is becoming increasingly clear is that computer science is not just a discipline that provides computational tools to scientists," says Jon Kleinberg, a Cornell professor who won a MacArthur "genius" grant in 2005 for his work on social networks. "It actually becomes part of the way in which scientists build theories and think about their own problems."

Kleinberg, who discovered the underlying rules that govern the widely publicized "six degrees of separation" phenomenon, says that computer algorithms will be to science in the 21st century what mathematics was in the 20th century. He says tackling a problem algorithmically allows scientists to change the question from "what is" to "how to," he says.

For example, the "small world" principle -- in which any two people are connected by short chains of acquaintances -- was demonstrably true, but no one understood just how these chains worked or why they were so short. "Looking at it as a computer scientist, I saw there was really an algorithm going on, a subtle algorithm based on distributed routing," Kleinberg says. His predictions about how friendships are formed at different distances, based on those algorithms, have been borne out by experiments.

In another example, biologists struggled with something called the Leventhal Paradox: From an astronomical number of possibilities, proteins fold in the optimum way far faster than can be explained by trial and error. Biologists and computer scientists working together developed algorithms that in essence showed how the proteins find shortcuts to optimum folds without trying every possibility. "That turned out to be a very nice 'how to' problem," Kleinberg says.


Tony Hey, Microsoft Corp.'s vice president for external research, speaks of "e-science," a set of technologies for supporting scientific projects where there is a huge amount of data (often distributed), the data and multiple collaborators are networked, and multiple disciplines, including computer science, converge. These projects tend to be enormously complex, and sorting them out is what the tools, algorithms and theories of computer science can help do, he says.

Hey says a "fourth paradigm" in science is emerging. For thousands of years, we have had experimental science, he says. Since Newton, we have had theoretical science, by which experimental results can be predicted by equations. Then, in the second half of the 20th century, we added simulation science, enabled by fancier equations and supercomputers. Now, Hey says, we are entering the era of "data-centric science."

The essence of data-centric science is to aggregate data, often in large quantities and from multiple sources, and then mine it for insights that would never emerge from manual inspection or from analysis of any one data source. He cites as an example a project called Galaxy Zoo, in which the public was invited to help classify millions of galaxies as either spiral or elliptical based on a million detailed images posted online by the Sloan Digital Sky Survey.

The work behind Galaxy Zoo is simple, boring even, and the goal was just to establish a large-scale inventory that would help scientists derive theories about how galaxies evolve. But a year ago, a strange and wondrous thing happened. A high school teacher and Galaxy Zoo volunteer in the Netherlands discovered what would become known as Hanny's Voorwerp, an enigmatic object of a type never seen before. No one is sure just what the distant green cloud is -- perhaps an extremely rare type of quasar -- and it is now getting intense scrutiny from astronomers.

Roger Barga is a researcher at MSR who is developing tools for e-science, which he calls "in silico science -- science done inside the computer." He says two technological developments are driving e-science. "The first is that our ability to capture data -- through bigger machines, bigger colliders, more sensors and so on -- is outpacing our ability to analyze it by conventional means."

The second is the emergence of new tools for pattern recognition and machine learning -- algorithms that improve over time as they deal with more and more data, without human programming -- and other new ways to organize, access and mine vast amounts of data. For the Neptune ocean observatory, MSR is building a "scientific workflow workbench" on top of Microsoft Windows Workflow, to save, systematize and catalog all the data. It will help scientists visualize oceanographic data in real time and compose and conduct experiments.

The workbench work recognizes that it isn't enough to just analyze data. When data is distributed, complex and voluminous, just getting organized and keeping track of progress is a daunting job for the scientist. The days of microscope, pencil and notebook research are long gone.

Barga says e-science will profoundly affect the practice of science. "Scientists will have to ask themselves if they are theoreticians or bench scientists or one of these new computational scientists in their area. You'll see the branding of a new kind of scientist."

The availability of petabytes of data from the Internet will transform the practice of sciences involving human behavior, Kleinberg says. "For millennia, social interaction has been transient, ephemeral and essentially invisible to the standard techniques of scientific measurement," he says. "It's hard to go around measuring people's friendships and conversations, or why they make decisions. But now we have these digital trails that were never available before. Google is not just looking for simple correlations; all that data is being passed through very sophisticated probability models."

Related Article

For more on how computational technology is changing science, read this Q&A with iShoe's Erez Lieberman.

He says the vast data stores and analytical techniques now available mean that scientists no longer have to formulate detailed theories and models and then test them on experimental data. Sketchy ideas can be tried against the data, with the data and tools fleshing out the model, in effect collaborating with the researcher to develop a theory. "The mass of data lets you fill in the details whose broad outline you have created," he says. "Then you run massive amounts of data through it and discover that in the specifics, certain things matter much more than we thought and certain things much less."

Jeremy Gunawardena, director of the Virtual Cell Program at Harvard Medical School, says an emerging model of the cell likens it to a computer -- with inputs and outputs and logical decision-making processes.

"A number of biologists with significant stature in the field really feel this is the new way forward for biology," he says. "But we are still in the very early days."


Tuesday, July 29, 2008








邱強簡介

這傢伙到底是何方神聖?能讓負責台灣安全的國安會三大巨頭,三個鐘頭從頭到尾聆聽他一個人演講。前不久,職掌台灣安全的最高機構國安會,透過管道安排,邀請美國一位具有特殊背景的神秘人物來台,對內部做了一場有關「台海危機處理及危機化解」的專題演講。

現 場聆聽者有國安會秘書康莊銘耀、兩位副秘書長,以及海基會、國防部參謀總部等相關主管幹部。兩個小時的專題演講結束後,與會的不少高階將官、重要幹部等, 都對這個身高不滿一百六十公分,模樣並不顯眼的台灣學者充滿疑惑:「這個從美國請來的小個子到底是何來路?能令長官們這麼信他。」

這個人是邱強,道道地地的台灣人:認識他的人都稱呼他「危機處理大師」。

拜科技之賜,美國近年冒出不少華裔億萬富翁:不過,邱強是極少數不靠科技而能晉身億萬富豪的台灣人。他的專長極為特殊:他開的公司全世界僅此一間,別無他家!

美國企業界封他為「危機大師」。他靠分析風險與化解危機致富,公司共有一千多名各種領城的精英專家,工作只有一項:解決危機。

從 三十五歲創立公司至今十四年。邱強博士的危機處理公司,總共在十幾個國,處理過一千六百多個不同的危機,從美國三哩島核能掌故、大停電、波斯灣戰爭到俄國 核能外洩、土耳其大地震都是這位蜚聲國際危機博士的代表作。除了國際性的危機處理,美國企業家口中的 Chung Chiu,更是許多跨國性集團遇到經營危機第一個想到的救世主:包括全球知名比爾.蓋茲的微軟公司、資本額高達兩千億美元猶太人開的的石油公司 Texaco 等世界前五百大公司,都曾經委請這個來自台灣的「小巨人」幫忙化解各種經營危機為轉機,到現在,這些大企業的某些老闆仍然與邸強維持良好的互動關係。雖然 身為風險與危機處理公司的總裁,而且是美國知名的華籍億萬富豪,邱強一向很低調,沒必要不接受各種媒體的採訪。本刊獲悉他應國安會邀請來台秘密演講,透過 管道安排,在他離台飛美前夕,獨家採訪這位全球獨一無二專靠化解危機致富的億萬富豪。今年四十九歲的邱強,出生書香世家。父親邱言曦(楠)畢業於日本帝國 大學新聞系,一生任職公務員,幹到新聞局副局長退休、之後獲聘為美洲中國時報的首任發行人。

邱 強高中考上建中,但他坦承年少輕狂,好玩不 受念書,邱強說:「我玩到連教科書都扔掉了,真是玩得很離譜!」直到考前三個月,才重新買書苦讀,結果考上清大核能工程系。邱強說:「清華四年最大的收 獲,是建立我思考邏輯的底子。」當年,邱強是掛車尾最後一名考上:畢業時,卻是全班第一名。之後,他跟一般念理工科的畢生一樣申請留學,他以百分之一的幸 運機率,竟然獲得麻省理工學院核能工程研究所的就讀許可,厲害的是學校還給他獎學金(只有一個名額)。能打敗那麼多的競爭者獨獲青睞,邱強自己也感到很驚 訝。第一天報到時,他大膽問系主任:「為何會選中我?」系主任笑著回答:「不是你特別優秀,也不是別的學生比較差,最主要的原因是你雖然最後一名考進清 大,卻是第一名畢業,我們認為你有潛力!」

邱 強念了一年就頓利拿到碩士,指導教授認為他資質不錯,攻理工最好也要懂得企管,於是建議他到 隔鄰的哈佛修商務管理。邱強在哈佛念完八個月的課程後,獲益良多,他說:「麻管理工學院讓我學習數據分析:哈佛增強找的邏輯概念。還有認識了馬英九和他的 老婆周美青,又碰上台灣退出聯合國,那真是一段令人動容的歲月。」

回 到麻省理工學院,邱強轉攻機械工程博士,指導教授剛巧是系主任。邱強 覺得很幸運,教授讓他率領一組十六名大學生協助做流體力學的實驗:他自謙運氣好,人時地都配合無間,竟然在八個月內,博士論文與實驗一氣呵成,又通過博士 面試,使他打破以往紀錄,成為麻省理工學院前無古人、後無來者,第一個也是唯一一個在八個月就獲得博土學位的研究生,當時,他才二十四歲(他因身體因素沒 服兵役)。

由於表現特別優異,邱強一拿到博士 學位,就進入全世界最大的燃燒工程公司當核能工程設計師。他運用他博士論文發明的「邱氏定 律」,幫公司提升30%核能發電的功率,第二年立刻被破格拔擢為經理(通常須四十歲左右)。二十七歲,這個身材矮小的「台灣ㄧㄣ仔」,已經被美國政府核能 管制委員會聘為三哩島核電外洩首席調查員,帶領十六個核能專家,分析處理這次意外事故造成的危機,以及日後預防化解之道。這是他第一次在大事故危機處理嶄 露頭角,美國政府對這位年僅二十七歲的台灣小伙子,特別刮目相看。邱強的優越表現,讓許多白人既欽羨又忌妒,往公司也受到一些排擠,因此,當他三十五歲當 上有色人種最高職位資深經理,他決定離職。

人 才不會被埋沒的,市值達三百二十億美金的南加大電力公司,立刻聘請他當副總裁。當時,南加大 電力公司因經營管理不善,股價從二十一美元跌落至十四元,可是高層始終沒發現癥結,邱強博士當下向總裁提出,必須立刻做緊急危機處理,否則不僅股價持續下 跌,甚至會危及公司生存。南加大電力公司總裁撥款四百五十萬美元,讓他成立危機診斷及化解小組,他找十名各專業領域的精英,花了七個月時間研析處理,對症 下藥,公司的營運獲得立即明顯的改善,股價也從新回升到二十一元。他也因此發現,美國有許多跨國企業,卻沒一家專門解決危機的公司,於是,他跳出來組成全 球惟一的危機及風險管埋公司。

接下來,找上門 的大企業是美國第二大的石油公司,當時市值達一千億美金的Texaco。透過南加大電力請邱 強幫忙把脈,當時Texaco碰到生產成本過高、銷售速度太慢,導致競爭力薄弱的問題,邱強花了五個月時間,透過科學的數據分析,發現最大的問題出在管理 制度;而公司道有危機,卻查不出危機的原因,以及化解的方法。邱強因為成功幫這些跨國性集團解決危機,連世界猶太人首富開的市值達兩千億美金的 Home Depot 家具連鎖店,也來請他開藥方。這次,因為遭逢美國經濟不景氣,存貨又過多,邱強整整花了兩年的時間,才提升了45%的業績成長率,雖然時間長了些。猶太首 富還是很感激他。

一九八六年,舉世最大的電腦 軟體微軟公司,比爾蓋茲下面第四號人物科技執行長席思麥,也親自登門求診。微軟的病灶跟一般 公司不同,微軟的軟體雖然稱霸全世界,但卻有本土語言翻譯的障礙,也就是如何讓「產品當地化並被接受」,而且要比競爭對手快。邱強透露,他只用三個月的時 間,就解決了微軟的「速度危機」,至於是何妙方,他說基於職業道德與商業機密,無法洩漏,否則必須負出高額的賠償。

不 過,這位國際公認的 「危機化解大師」點出,處理各種不同類型的危機,有一個共通處,就是:什麼是危機?怎麼樣發現危機?如何化為機為轉機?他目前接的case幾乎都是國際性 的集團,而且並非來者不拒,有兩種情況他會婉拒;一種是已經病入膏肓;一種是因為股價跌落,大股東要求問診,執行者僅為應付做形上的敷衍。此外,如果遇上 兩家同質性的公司,他一定堅守職業道德,只挑選一家。

邱 強最著名的代表作之一,是一九九零的美國對伊拉克發動突襲,代號「沙漠風暴」的軍 事行動。邱強首度透露這段秘辛,一九九零年九月,他突然接到白宮首席安全顧問約翰‧史勒辛格的緊急電話,問他:「可不可以研擬伊拉克可能再度發動戰爭所造 成危機的各種分析,以科學客觀的數據研判哪些危機可能發生?」五角大廈要他負責「沙漠風暴」行動的「危機數據分析及破解」,邱強立即招集危機處理及數據分 析的博士精英,成立秘密七人小組,花了四個月時間,研擬出伊拉克可能對阿拉伯或美國發動戰爭的一百二十八種狀況,並針對每一種情況找出化解之道。周詳的模 擬計畫完成後,他親自飛往華盛頓DC,到白宮與約翰‧史勒辛格報告,並為此再白宮與其他專家開了三次冗長的機密會議。一九九一年一月底,美國決定在二月二 十三日發動突襲。

約翰‧史勒辛格又打一通電話 給他,請他研擬在發動戰突襲時可能導致的危機;這次,邱強的危幾處理小組研擬出五種可能情 況,並提出破解之道。這場驚動全球的沙漠風暴突襲行動,完全在美國的掌握之中,在七天之內迅速攻下伊拉克,美軍付出極少的代價,伊拉克卻死傷慘重。邱強再 度透露一個秘辛:「如果伊拉克也有做戰爭的危機處理,美國不可能在七日內打贏戰爭;而且美國最擔心的一種情況,伊拉克根本沒有想到。如果,伊拉克用上這 招,美國一定投鼠忌器,這場戰爭不見得會快速打贏。」當然,美國政府付出一筆相當豐厚的酬勞,邱強在「沙漠風暴行動」的風險分析與危機處理,讓他不僅名利 雙收,更提升他公司的國際知名度。



去 年,台灣發生五十 年來的七二九超級大停電,台灣透過美國政府能源總署找到他,由當時的經濟部長王志剛聘請他回台成立國際小組,調查大停電危機的原因。邱強由於成為國際危機 化解大師,忙的十年沒回台灣,自己又是台灣人,沒談酬勞就一口答應,而且還率領了十三個博士級精英來台調查。花了三個月的時間,邱強與他的危機處理小組, 終於找出為何只倒一個輸電塔就造成全台灣大停電的癥結。邱強說:「事關國家安全,而且我們也簽了保密協定,所以不能透露。」

在國安會的內部演講中,他指出台灣當前有四大危機:軍事危機、財政危機、經濟危機及信心危機。多數台名眾最擔心中共武力犯台;邱強卻認為,這種危機機率最小,因為,中共要付出最高的代價,獲益卻最低。他覺得目前最大的危機反而是信心問題,信心危機台灣付出的成本最大而中共卻不必動一兵一彈,就可輕易達成。處理過各種不同型態與層面,這位傑出危機大師說:不管國家或台灣企業有需要,我一定回來為台灣打拼!




危機


邱強

邱強簡介

這傢伙到底是何方神聖?能讓負責台灣安全的國安會三大巨頭,三個鐘頭從頭到尾聆聽他一個人演講。前不久,職掌台灣安全的最高機構國安會,透過管道安排,邀請美國一位具有特殊背景的神秘人物來台,對內部做了一場有關「台海危機處理及危機化解」的專題演講。

現 場聆聽者有國安會秘書康莊銘耀、兩位副秘書長,以及海基會、國防部參謀總部等相關主管幹部。兩個小時的專題演講結束後,與會的不少高階將官、重要幹部等, 都對這個身高不滿一百六十公分,模樣並不顯眼的台灣學者充滿疑惑:「這個從美國請來的小個子到底是何來路?能令長官們這麼信他。」

這個人是邱強,道道地地的台灣人:認識他的人都稱呼他「危機處理大師」。

拜科技之賜,美國近年冒出不少華裔億萬富翁:不過,邱強是極少數不靠科技而能晉身億萬富豪的台灣人。他的專長極為特殊:他開的公司全世界僅此一間,別無他家!

美國企業界封他為「危機大師」。他靠分析風險與化解危機致富,公司共有一千多名各種領城的精英專家,工作只有一項:解決危機。

從 三十五歲創立公司至今十四年。邱強博士的危機處理公司,總共在十幾個國,處理過一千六百多個不同的危機,從美國三哩島核能掌故、大停電、波斯灣戰爭到俄國 核能外洩、土耳其大地震都是這位蜚聲國際危機博士的代表作。除了國際性的危機處理,美國企業家口中的 Chung Chiu,更是許多跨國性集團遇到經營危機第一個想到的救世主:包括全球知名比爾.蓋茲的微軟公司、資本額高達兩千億美元猶太人開的的石油公司 Texaco 等世界前五百大公司,都曾經委請這個來自台灣的「小巨人」幫忙化解各種經營危機為轉機,到現在,這些大企業的某些老闆仍然與邸強維持良好的互動關係。雖然 身為風險與危機處理公司的總裁,而且是美國知名的華籍億萬富豪,邱強一向很低調,沒必要不接受各種媒體的採訪。本刊獲悉他應國安會邀請來台秘密演講,透過 管道安排,在他離台飛美前夕,獨家採訪這位全球獨一無二專靠化解危機致富的億萬富豪。今年四十九歲的邱強,出生書香世家。父親邱言曦(楠)畢業於日本帝國 大學新聞系,一生任職公務員,幹到新聞局副局長退休、之後獲聘為美洲中國時報的首任發行人。

邱 強高中考上建中,但他坦承年少輕狂,好玩不 受念書,邱強說:「我玩到連教科書都扔掉了,真是玩得很離譜!」直到考前三個月,才重新買書苦讀,結果考上清大核能工程系。邱強說:「清華四年最大的收 獲,是建立我思考邏輯的底子。」當年,邱強是掛車尾最後一名考上:畢業時,卻是全班第一名。之後,他跟一般念理工科的畢生一樣申請留學,他以百分之一的幸 運機率,竟然獲得麻省理工學院核能工程研究所的就讀許可,厲害的是學校還給他獎學金(只有一個名額)。能打敗那麼多的競爭者獨獲青睞,邱強自己也感到很驚 訝。第一天報到時,他大膽問系主任:「為何會選中我?」系主任笑著回答:「不是你特別優秀,也不是別的學生比較差,最主要的原因是你雖然最後一名考進清 大,卻是第一名畢業,我們認為你有潛力!」

邱 強念了一年就頓利拿到碩士,指導教授認為他資質不錯,攻理工最好也要懂得企管,於是建議他到 隔鄰的哈佛修商務管理。邱強在哈佛念完八個月的課程後,獲益良多,他說:「麻管理工學院讓我學習數據分析:哈佛增強找的邏輯概念。還有認識了馬英九和他的 老婆周美青,又碰上台灣退出聯合國,那真是一段令人動容的歲月。」

回 到麻省理工學院,邱強轉攻機械工程博士,指導教授剛巧是系主任。邱強 覺得很幸運,教授讓他率領一組十六名大學生協助做流體力學的實驗:他自謙運氣好,人時地都配合無間,竟然在八個月內,博士論文與實驗一氣呵成,又通過博士 面試,使他打破以往紀錄,成為麻省理工學院前無古人、後無來者,第一個也是唯一一個在八個月就獲得博土學位的研究生,當時,他才二十四歲(他因身體因素沒 服兵役)。

由於表現特別優異,邱強一拿到博士 學位,就進入全世界最大的燃燒工程公司當核能工程設計師。他運用他博士論文發明的「邱氏定 律」,幫公司提升30%核能發電的功率,第二年立刻被破格拔擢為經理(通常須四十歲左右)。二十七歲,這個身材矮小的「台灣ㄧㄣ仔」,已經被美國政府核能 管制委員會聘為三哩島核電外洩首席調查員,帶領十六個核能專家,分析處理這次意外事故造成的危機,以及日後預防化解之道。這是他第一次在大事故危機處理嶄 露頭角,美國政府對這位年僅二十七歲的台灣小伙子,特別刮目相看。邱強的優越表現,讓許多白人既欽羨又忌妒,往公司也受到一些排擠,因此,當他三十五歲當 上有色人種最高職位資深經理,他決定離職。

人 才不會被埋沒的,市值達三百二十億美金的南加大電力公司,立刻聘請他當副總裁。當時,南加大 電力公司因經營管理不善,股價從二十一美元跌落至十四元,可是高層始終沒發現癥結,邱強博士當下向總裁提出,必須立刻做緊急危機處理,否則不僅股價持續下 跌,甚至會危及公司生存。南加大電力公司總裁撥款四百五十萬美元,讓他成立危機診斷及化解小組,他找十名各專業領域的精英,花了七個月時間研析處理,對症 下藥,公司的營運獲得立即明顯的改善,股價也從新回升到二十一元。他也因此發現,美國有許多跨國企業,卻沒一家專門解決危機的公司,於是,他跳出來組成全 球惟一的危機及風險管埋公司。

接下來,找上門 的大企業是美國第二大的石油公司,當時市值達一千億美金的Texaco。透過南加大電力請邱 強幫忙把脈,當時Texaco碰到生產成本過高、銷售速度太慢,導致競爭力薄弱的問題,邱強花了五個月時間,透過科學的數據分析,發現最大的問題出在管理 制度;而公司道有危機,卻查不出危機的原因,以及化解的方法。邱強因為成功幫這些跨國性集團解決危機,連世界猶太人首富開的市值達兩千億美金的 Home Depot 家具連鎖店,也來請他開藥方。這次,因為遭逢美國經濟不景氣,存貨又過多,邱強整整花了兩年的時間,才提升了45%的業績成長率,雖然時間長了些。猶太首 富還是很感激他。

一九八六年,舉世最大的電腦 軟體微軟公司,比爾蓋茲下面第四號人物科技執行長席思麥,也親自登門求診。微軟的病灶跟一般 公司不同,微軟的軟體雖然稱霸全世界,但卻有本土語言翻譯的障礙,也就是如何讓「產品當地化並被接受」,而且要比競爭對手快。邱強透露,他只用三個月的時 間,就解決了微軟的「速度危機」,至於是何妙方,他說基於職業道德與商業機密,無法洩漏,否則必須負出高額的賠償。

不 過,這位國際公認的 「危機化解大師」點出,處理各種不同類型的危機,有一個共通處,就是:什麼是危機?怎麼樣發現危機?如何化為機為轉機?他目前接的case幾乎都是國際性 的集團,而且並非來者不拒,有兩種情況他會婉拒;一種是已經病入膏肓;一種是因為股價跌落,大股東要求問診,執行者僅為應付做形上的敷衍。此外,如果遇上 兩家同質性的公司,他一定堅守職業道德,只挑選一家。

邱 強最著名的代表作之一,是一九九零的美國對伊拉克發動突襲,代號「沙漠風暴」的軍 事行動。邱強首度透露這段秘辛,一九九零年九月,他突然接到白宮首席安全顧問約翰‧史勒辛格的緊急電話,問他:「可不可以研擬伊拉克可能再度發動戰爭所造 成危機的各種分析,以科學客觀的數據研判哪些危機可能發生?」五角大廈要他負責「沙漠風暴」行動的「危機數據分析及破解」,邱強立即招集危機處理及數據分 析的博士精英,成立秘密七人小組,花了四個月時間,研擬出伊拉克可能對阿拉伯或美國發動戰爭的一百二十八種狀況,並針對每一種情況找出化解之道。周詳的模 擬計畫完成後,他親自飛往華盛頓DC,到白宮與約翰‧史勒辛格報告,並為此再白宮與其他專家開了三次冗長的機密會議。一九九一年一月底,美國決定在二月二 十三日發動突襲。

約翰‧史勒辛格又打一通電話 給他,請他研擬在發動戰突襲時可能導致的危機;這次,邱強的危幾處理小組研擬出五種可能情 況,並提出破解之道。這場驚動全球的沙漠風暴突襲行動,完全在美國的掌握之中,在七天之內迅速攻下伊拉克,美軍付出極少的代價,伊拉克卻死傷慘重。邱強再 度透露一個秘辛:「如果伊拉克也有做戰爭的危機處理,美國不可能在七日內打贏戰爭;而且美國最擔心的一種情況,伊拉克根本沒有想到。如果,伊拉克用上這 招,美國一定投鼠忌器,這場戰爭不見得會快速打贏。」當然,美國政府付出一筆相當豐厚的酬勞,邱強在「沙漠風暴行動」的風險分析與危機處理,讓他不僅名利 雙收,更提升他公司的國際知名度。



去 年,台灣發生五十 年來的七二九超級大停電,台灣透過美國政府能源總署找到他,由當時的經濟部長王志剛聘請他回台成立國際小組,調查大停電危機的原因。邱強由於成為國際危機 化解大師,忙的十年沒回台灣,自己又是台灣人,沒談酬勞就一口答應,而且還率領了十三個博士級精英來台調查。花了三個月的時間,邱強與他的危機處理小組, 終於找出為何只倒一個輸電塔就造成全台灣大停電的癥結。邱強說:「事關國家安全,而且我們也簽了保密協定,所以不能透露。」

在國安會的內部演講中,他指出台灣當前有四大危機:軍事危機、財政危機、經濟危機及信心危機。多數台名眾最擔心中共武力犯台;邱強卻認為,這種危機機率最小,因為,中共要付出最高的代價,獲益卻最低。他覺得目前最大的危機反而是信心問題,信心危機台灣付出的成本最大而中共卻不必動一兵一彈,就可輕易達成。處理過各種不同型態與層面,這位傑出危機大師說:不管國家或台灣企業有需要,我一定回來為台灣打拼!

Wednesday, May 18, 2005

銀髪族底下永遠的書法班

永遠的書法班、來自於老師的高瞻遠視,班長的勞苦奔波.以及學生們通力合作的精彩演出.
打從創班開始,老師即深知維持其永久性之不易、遂於開課首堂就與班長商槎,列出我們書法班的四大宗旨:
以筆會友、
弘揚華文、
陶情清心、
益智長寿.
這四大宗旨看似與書法毫無關联,而其實這正是我們老師的髙明所在:將書法蘊藏於這四大信念中、讓學生們沒有教條、亦無課業,只有在〝會友〞中永享書法之趣,無習字之苦.所以上課後不久、就有一學生向我反應,〝班長!我最喜歡這種課啦!名為上課實則享樂也,我在家裡地方雖寛敞、桌子也比這裡的大、文房更有好几宝,可是我一坐下來,寫不到三分鐘就沒勁了,然後一停就好幾個月、不再提筆.這當然不成.現在這裡,每月只繳十塊錢、每週就有兩個小時非提筆不可、而且提的非常有勁,因為邊提筆邊聊天、手酸了又有奌心咖啡在旁拿來享用、偶爾也有髙級茗茶提供大家助興,我雖習字不滿三篇、說話多過三千,但我真的是奉行老師的宗旨、帶筆來會友啊!況且說華語弘揚華文沒錯啊,而聊天心情輕鬆愉快、自然延年益寿〞
事實真的是如此!
開班迄今、沒有一句怨言.個個:
春風滿面來上課、
神清氣爽習書法.
課堂上,老師何炳森先生,含笑用筆展其超過一甲子的書法功力,說話大半讓給班長及一些喜歡說笑的學生.時爾哄堂大笑、時爾细细數語、時爾鴉雀無声.一片輕鬆和諧氣氛中、兩個鐘頭即如電飛逝.勿怪乎有的學生反應說:
老師,我們可不可以每天都來上課?
班長,我可不可以預付整年費用?這樣可常保住我的座位.
更勿怪乎每星期五早上十奌未到、我來開門時、就己有學生在門口叫着:
盼望着!盼望着!星期五又到啦!哈!哈!哈!
我不得不承認:
書法班之有今日、
確是老師宗旨所引領,真乃高招也!!

愛因斯坦的大腦-1

  有时候,一個人的好坏是很難界定的,比如Dr.Thomas Harvey.
50年前,他“悄悄”取走屬于爱因斯坦遗体一部分的2.7磅重的 灰色物质——爱因斯坦大腦的下落在很長一段時間成謎;7 年前,年近9旬的他“身心俱疲”,主動開始向数家世界顶级脑神经研究机構转交他将近半個世纪的“珍藏”;在不同的版本裡,他被描述成迥異的人:猥琐的、神 经质的、自大的、一個可耻的盗腦者、一個惡毒的医生、一個好人……
但無論如何,现在的Harvey只是一位92歲的垂垂老翁,居住在 NewJersey鄉下一個並不热鬧的小镇上。盡管他曾因为50年前“生命中最重要一刻作出的决定”而招來罵名甚至丢了工作,但他並不後悔,也從未後悔 过。“他是個天才,如果我把它(指大腦)留在那兒我会抱憾终生的!”Harvey說。
  1955年4月18日,一颗人類的巨星隕落了。76歲的 爱因斯坦因“大動脈腫瘤破裂”在美国NewJersey的PricetonUniversityHospital溘然長逝。然而原訂将為爱因斯坦验屍的验 屍官卻臨時因故無法前來,直到最後一刻,就職于PrincetonU.Hospital、時年42歲的Dr.Harvey才臨危受命接下了驗屍之職,這一 变動改变了 Harvey的往後大半生.
  根据另外一本書的描述,Harvey在為爱因斯坦驗屍時、將他的大腦完整取出,浸在防腐药水裡,然後 带回家。他曾辩解说,由于爱因斯坦的家屬事先同意对屍体解剖,而在當時的医院裡,一般解剖屍體、就包括摘除大腦,這樣做並無不妥.只是這後續發生的故事, 卻是出人意表,真非愛因斯坦所願看到,欲知後事如何、請看下一篇!