From: MenarikDotCom | Say: News| Stock Exchange Forum |Saham

Kejadian manusia sememangnya terdiri dari roh dan jasad

Suatu masa saya terfikir bagaimana kiranya jika makhluk yang Allah S.W.T cipta boleh dikembalikan dengan suatu kesedaran yang lama dengan jasad yang baru apabila kiamat kelak?

Bagaimana YA?

Senang sahaja. Sudah pasti Allah maha bijaksana. DIA yang bijaksana telah menciptakan roh yang menempati jasad manusia. Sesungguhnya jika tiada roh maka tiadalah pengiraan amal baik dan jahat.

Anda boleh mengikuti perbincangan roh dan jasad di sini:

Sila download

Politik-Malaysia-Perbincangan Roh dan Jasad.pdf

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Movie Transformers (2007)

I like this movie because it look like AI in future. So many thing to learn, develop, test, and apply before we become transformers.

Did you watch it?

Here the synopsis of the movie

Cog AI:

Cog to be a set of sensors and actuators which tries to approximate the sensory and motor dynamics of a human body. Except for legs and a flexible spine, the major degrees of motor freedom in the trunk, head, and arms are all there. Sight exists, in the form of video cameras. Hearing and touch are on the drawing board. Proprioception in the form of joint position and torque is already in place; a vestibular system is on the way. Hands are being built as you read this, and a system for vocalization is also in the works. Cog is a single hardware platform which seeks to bring together each of the many subfields of Artificial Intelligence into one unified, coherent, functional whole.

Cog

MIT cog link

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Saya ingin menulis sebuah buku yang mengisarkan pembelajaran sehari-hari dapat meningkatkan pemahaman dan pencapaian dalam mencapai matlamat.

Segala matlamat yang ingin dicapai memerlukan peralatan yang memberikan alat bantuan mempercepat atau dapat dicapai dalam masa yang lama.

Pencapaian anda adalah perjalanan anda menuju destinasi.

Apakah makna “unlock”?

Bolehkah anda unlock sesuatu yang anda tidak fahami?

Kepandaian buatan

Gagasan yang kami pelajari dengan bergaul dengan lingkungan kami adalah mungkin yang pertama untuk terjadi kepada kami kalau kami memikirkan sifat belajar. Kalau seorang bayi bermain, melambaikan persenjataannya, atau pandangan tentang, tidak mempunyai guru tegas, tetapi itu mempunyai langsung sensorimotor hubungan sampai lingkungannya. Menggunakan hubungan ini menghasilkan kekayaan informasi tentang sebab dan efek, tentang akibat tindakan, dan sekitar apa yang melakukan untuk mencapai cita-cita. Di seluruh jiwa kami, interaksi seperti itu adalah niscaya seorang sumber utama pengetahuan tentang lingkungan kami dan sendiri.
Entah kami sedang belajar mengemudikan mobil atau mengadakan percakapan, kami mengetahui benar-benar bagaimana lingkungan kami menanggapi apa yang kami lakukan, dan kami mencoba mempengaruhi apa yang terjadi lewat kelakuan kami. Belajar dari interaksi foundational gagasan mendasari hampir semua teori belajar dan inteligen.

Lebih baik saya menulis buku mengenai Pembelajaran Mesin

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Yeah, i’m back home. Where i was start my attention and work like others.

Now i come back and back to my room. I look my table and my emotion make me remember my old activity.

I’m feel so ‘rindu’ to my old behaviour.

This is my journey… when my setup and all emotion come to my head give me some emotion to love to my work better than before.

This will make me some idea.

Try this. Take a holiday for a week. Leave your everyday job. Which do you like the job very much. In the holiday don’t do anything about your job. Stay in your position. You will get the rindu or love to do your job back like before. It is a tools which can give you better result in looking your job.

I want you to think about this. Because i want write it to my book. It is about emotion and consiousness.

Information.
News.
Thinking.
Knowledge.
Judgement.
What you a doing?

Ya, semuanya pengenalan mengenai kesedaran manusia. Adakah mesin boleh di beri kesedaran?

Pada masa dahulu saya ada membuat satu projek mengenai mesin yang membolehkan pemahaman mengenai kesedaran.

Artificial intelligence.

Masih ada lagi URL web saya:

http://wave.prohosting.com/duriyan/chat.html

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Current activities of the RoboCup consists of:

* Technical Conferences
* RoboCup International Competitions and Conferences
* RoboCup Challenge Programs
* Education Programs
* Infrastructure Development

Nevertheless, RoboCup International Competitions and Conferences is the central pillar of our activity, where researchers can get together and evaluate research progress.

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I want to share with you my hobby. This is one of the evolution of robotic and artificial intelligence world.

When i was teens all ai in the development phase but it is not so obvious and develop over the times.

Robocup

What is RoboCup?

RoboCup is an international research and education initiative. Its goal is to foster artificial intelligence and robotics research by providing a standard problem where a wide range of technologies can be examined and integrated.

The concept of soccer-playing robots was first introduced in 1993. Following a two-year feasibility study, in August 1995, an announcement was made on the introduction of the first international conferences and football games. In July 1997, the first official conference and games were held in Nagoya, Japan. Followed by Paris, Stockholm, Melbourne and Seattle where the annual events attracted many participants and spectators. The 6th RoboCup 2002 was held in Fukuoka, Japan in cooperation with Busan, Korea, while the 7th edition in 2003 took place in Padua, Italy. In 2004 in Lisbon, Portugal. 2005 in Osaka, Japan, 2006 in Bremen, Germany, and now in 2007 in Atlanta, USA. The events were covered by national and international media all over the world.

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Do you heard about AI. But the medical diagnosis with AI is found in early 1970s it became clear that conventional tools such as flow charts, pattern matching, and Bayes’ theorem.

Diagnosis

A form of artificial intelligence is being used more and more frequently in diagnosis. There are all types of areas where A.I. can determine whether the behaviour of different systems is correct. Initially, the easiest systems for computer intelligence to calculate whether systems are being run to specifications is other computers. Automobiles are a prime example of this. There are increasing numbers of sensors for every new model year in automobiles. A computer can be plugged in and, after copying the information recorded by the sensors, make a determination as to any problems that fall outside the normal range of use. It is important for computer system algorithms to be able to determine which part of a system is failing, where that part is located, the type of fault in the part and many systems now provide the steps to fix the problems. All diagnosis is based on observations which are taken by different sensors.

A major determinant to the effectiveness of A.I. to accurately diagnose problems is the base of knowledge it works with. The number of variables involved in even simple diagnoses like an automobile are large. Then for each variable there is a different weight applied to each. Then each weight can change over time. These calculations become more and more complex the more variable the subject. The initial knowledge usually comes from people who are experts in a particular field. However one of the major tasks of the creation of A.I. is the development of intuition which mankind is able to utilize.

In time it is likely that artificial intelligence will be able to diagnoses with a high degree of accuracy, not only technical systems with the necessary number of sensors, but organic matter as well. Walk into a doctors office and let the wall know how you are feeling. Next thing you know the room speaks to you and tells you both your diagnosis, treatment, and prognosis.

Ai diagnosis

http://en.wikipedia.org/wiki/Diagnosis_(artificial_intelligence)

http://en.wikibooks.org/wiki/The_Computer_Revolution/Artificial_Intelligence/Diagnosis

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Massachusetts Institute of Technology kicked off EurekaFest, a four-day public celebration of inventors and inventions, with a ceremony Wednesday honoring winners of MIT’s Ideas Competition, whose teams of contestants focus on ways technology can alleviate humanitarian problems.

Arne Bomblies, of Team Malaria Solutions, a competition winner this year, shows his team’s solution to reducing malaria in the mosquito-prone Sahel zone of Africa. These seeds, which are from the Neem, a tree naturally abundant in the region and fruitful in the wet season, can be shelled, crushed into a powder and sprinkled on ponds and puddles to kill mosquito larvae.

The Neem provides a low-cost, low-tech solution to villagers who can process and use the nut powder without outside assistance. Because the active ingredients in Neem powder consist of more than 90 different chemicals, the mosquito larvae will not build up a resistance to the powder as they do with manmade pesticides, said Bomblies.

The team, which includes Bomblies, Mustafa Dafalla, Paul Montgomery and Rebecca Gianotti, is planning a trip in June to Banizoumbou, Niger, to conduct further proof-of-concept tests that Neem powder works. Previous tests have shown that it reduces local mosquito populations by 80 percent.

Credit: Candace Lombardi/CNET News.com

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Humanoid projects.

CAMBRIDGE, Mass.–The winners of the latest Ideas Competition took on big health issues facing poor countries by doing what most technology innovators do: apply the right mix of intellect, imagination and persistence to the problem.

The Massachusetts Institute of Technology handed out its Ideas Competition awards Wednesday evening to kick off EurekaFest, a four-day public celebration of inventors and inventions. The competition (”Ideas” is an acronym for Innovation Development Enterprise Action Service) is an annual event recognizing achievements in technology that make the world a better place.

For the first time, the competition featured an award for technological solutions designed to alleviate problems exacerbated by poverty.

The Yunus Challenge Ideas Award for 2006/2007 asked for a low-cost solution to tuberculosis sufferers’ nonadherence to drug regimens designed to treat the disease. The focus was patients in rural communities of poor countries.

The current system for getting these patients to take their medication is called direct-observation therapy, or DOT, which requires health workers to monitor the administration of every dose of medicine for a period of six to eight months. DOT not only is costly, it has been found logistically difficult to implement.

There were two winning teams, one offering a solution called CellCentives, the other offering an invention called uBox.

CellCentives proposed a disposable pill packet that reveals a numeric code each time a pill is removed within a prescribed time frame. The code, which can be punched into the keypad of the TB patient’s cell phone, rewards the patient’s compliance with free cell phone minutes.

The other Yunus Challenge winner, Team Cabanga, proposed the uBox, a round, plastic pill dispenser that lights up to prompt patients to take their next pill. Twisting the uBox dispenses a dosage and records the time. The information can then be retrieved with a USB-like device when DOT workers make their scheduled visits. The uBox, which records when patient data is retrieved, can also be used to monitor DOT workers and offer them incentives for success. Beyond TB sufferers, the uBox system also could be applied to patients suffering from other diseases that require extensive treatment, including HIV/AIDS.

“It adds accountability to DOTs and so increases the effectiveness of DOTs. It can also be privatized for commercial use,” said Bill Thies, an MIT Ph.D. candidate who was part of Team Cabanga.

The $7,500 award (given to each team) is named for the 2006 Nobel Prize winner Muhammad Yunus, who pioneered the idea of microcredit–issuing small-business loans to the poor.

Lee Lynd, who won this year’s $100,000 Lemelson-MIT Award for Sustainability for his development of cellulose-derived ethanol, was the keynote speaker at the Ideas Competition ceremony. He said personal relationships and focus on long-term goals are key to a successful life of service through tech innovation.

“Be clear about who you wish to serve…be persistent, be persistent, be persistent. I started this service path in the 1970s. I had years of 20 percent success rates per year. You know I tried to start a biofuel company in the ’90s and failed. I tried to start (an engineering think tank) and failed,” said Lynd, whose biofuel company Mascoma recently received a $4.9 million grant from the Department of Energy.

One-third of an Ideas team must be made up of full-time MIT students in order to qualify for the competition. Submissions are judged for “innovation, feasibility and community impact.” In addition to the Yunus Challenge, several other awards were given.

Team Malaria Solutions won an Ideas award for its use of Neem, a readily available tree in the mosquito-infested Sahel zone of Africa. Its seeds can be crushed into a powder and sprinkled in ponds to kill mosquito larvae, thereby reducing the spread of malaria.

BlueSteel, a team of MIT undergraduates, won an Ideas award for its invention of a training bike for developmentally challenged children.

EurekaFest, dubbed the “Woodstock of invention,” was coordinated by the Lemelson-MIT Program and the Museum of Science, Boston. The EurekaFest events, which run through May 5, include panel discussions, museum exhibits, competitions and talks.

http://news.com.com/MIT+honors+humanitarian+tech+invention/2100-1008_3-6181196.html

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RAGE AGAINST THE MACHINE REUNITED AT COACHELLA 2007