http://www.comsol.com/2013-user-presentations
Application Areas:
AC/DC Electromagnetics
Acoustics and Vibrations
Batteries, Fuel Cells, and Electrochemical Processes
Bioscience and Bioengineering
Chemical Reaction Engineering
Computational Fluid Dynamics
Electromagnetic Heating
Geophysics and Geomechanics
Heat Transfer and Phase Change
MEMS and Nanotechnology
Microfluidics
Multiphysics
Optics, Photonics and Semiconductors
Optimization and Inverse Methods
Particle Tracing
Piezoelectric Devices
Plasma Physics
RF and Microwave Engineering
Simulation Methods and Teaching
Structural Mechanics and Thermal Stresses
Transport Phenomena
Minggu, 15 Desember 2013
Sabtu, 07 Desember 2013
Joint Institute for Laboratory Astrophysics
JILA,
formerly known as the Joint Institute for Laboratory Astrophysics, is
one of the leading physical science research institutes in the United
States.
http://jila.colorado.edu/
Research at JILA ranges from the behavior of ultracold atoms and molecules, through the design of precision optics and lasers, to the processes that shape the stars and galaxies, encompassing these broad categories:
Astrophysics
Atomic and Molecular Physics
Biophysics
Chemical Physics
Nanoscience
Optical Physics
Precision Measurement
http://jila.colorado.edu/
Research at JILA ranges from the behavior of ultracold atoms and molecules, through the design of precision optics and lasers, to the processes that shape the stars and galaxies, encompassing these broad categories:
Astrophysics
Atomic and Molecular Physics
Biophysics
Chemical Physics
Nanoscience
Optical Physics
Precision Measurement
Senin, 25 November 2013
Kuliah Umum Fisika
Quantum Computing and the Limits of the Efficiently Computable
Scott Aaronson, an expert in the realm of computational complexity theory and the founder of ComplexityZoo.com online encyclopedia of computational complexity theory delivered Carnegie Mellon University's 2011 Buhl Lecture.
In his lecture titled "Quantum Computing and the Limits of the Efficiently Computable," Aaronson discusses what quantum computers are, whether they can be built on a large scale, and what's known today about their capabilities and limitations.
He goes beyond quantum computers to touch on speculative models of computation, including closed time-like curves and nonlinearities in the Schrodinger equation — an equation that describes how the quantum state of a physical system changes in time.
An associate professor of electrical engineering and computer science at the Massachusetts Institute of Technology, Aaronson's work on the subject of quantum computing has included limitations of quantum algorithms in the black-box model, the learnability of quantum states, and quantum versus classical proofs and advice.
He writes a popular blog:
http://www.scottaaronson.com/blog
Computational Physics Research Division
Computational Physics Research Division
Vision
Mission
Sumber:
http://en.wikipedia.org/wiki/Computational_physics
Vision
Mission
Computational physics is the study and implementation of numerical algorithms to solve problems in physics for which a quantitative theory already exists.
Historically, computational physics was the first application of modern computers in science, and is now a subset of computational science.
It is sometimes regarded as a subdiscipline (or offshoot) of theoretical physics, but others consider it an intermediate branch between theoretical and experimental physics, a third way that supplements theory and experiment.
Sumber:
http://en.wikipedia.org/wiki/Computational_physics
Jumat, 01 November 2013
Selasa, 01 Oktober 2013
Kuliah Umum Energi dan Materi Gelap
Recent Presentations:
Lansdowne Lecturer, U of Victoria, Nov 2011. Public lecture on "The Dark Side of the Universe"; colloquium on "Identifying the Nature of Dark Matter"
Silicon Valley Astronomy Lecture (pdf, audio), May 2009
TED 2008: "The search for dark energy and dark matter" (Feb 2008)
Classes without Quizzes, Oct 2006, and NCN AAPT Keynote Address, Nov 2006. “Dark Matter and Dark Energy: Mysteries of the Universe”
Galapagos World Summit Presentation, June 22, 2006: “CP Violation in the Quark Sector: What have we learned?”(6.7 MB)
APS Plenary Talk, April 16, 2005 “Mysteries of Heavy Flavors”
UC Irvine Seminar, October 20, 2004: “Quirks in the Search for Pentaquarks”
Caltech Colloquium, Nov. 13, 2003: “Physics at the B Factories: Progress and Prospects”
Classes without Quizzes for Stanford Alumnae, Oct. 17, 2003: “Matter and Antimatter: Not Quite a Mirror Image”
Presentation at Feb 2001 AAAS meeting: “Matter and Antimatter: Not Quite a Mirror Image”
https:// physics.stanford.edu/ people/faculty/ patricia-burchat
Lansdowne Lecturer, U of Victoria, Nov 2011. Public lecture on "The Dark Side of the Universe"; colloquium on "Identifying the Nature of Dark Matter"
Silicon Valley Astronomy Lecture (pdf, audio), May 2009
TED 2008: "The search for dark energy and dark matter" (Feb 2008)
Classes without Quizzes, Oct 2006, and NCN AAPT Keynote Address, Nov 2006. “Dark Matter and Dark Energy: Mysteries of the Universe”
Galapagos World Summit Presentation, June 22, 2006: “CP Violation in the Quark Sector: What have we learned?”(6.7 MB)
APS Plenary Talk, April 16, 2005 “Mysteries of Heavy Flavors”
UC Irvine Seminar, October 20, 2004: “Quirks in the Search for Pentaquarks”
Caltech Colloquium, Nov. 13, 2003: “Physics at the B Factories: Progress and Prospects”
Classes without Quizzes for Stanford Alumnae, Oct. 17, 2003: “Matter and Antimatter: Not Quite a Mirror Image”
Presentation at Feb 2001 AAAS meeting: “Matter and Antimatter: Not Quite a Mirror Image”
https://
Kamis, 19 September 2013
Physics Education Research Division
Physics Education Research Division
Vision
Mission
Team Leader: Mr. Whisnu Trie Seno Ajie, S.Pd.
Vision
Mission
Team Leader: Mr. Whisnu Trie Seno Ajie, S.Pd.
Langganan:
Postingan (Atom)



