Wednesday, December 6, 2017
Friday, December 1, 2017
How scientists and supercomputers could make oceans drinkable- physics know
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Aleksandr NoySenior Research Scientist,Lawrence Livermore National Laboratory |
Removing salt from seawater is an enormous challenge. Researchers may have the answer – but it will require a whole lot of processing power.
ALEKSANDR NOY HAS big plans for a very small tool. A senior research scientist at Lawrence Livermore National Laboratory, Noy has devoted a significant part of his career to perfecting the liquid alchemy known as desalination – removing salt from seawater. His stock-in-trade is the carbon nanotube. In 2006, Noy had the audacity to embrace a radical theory: maybe nanotubes – cylinders so tiny, that they can be seen only with an electron microscope – could act as desalination filters. It depended on just how wide the tubes were. The opening needed to be big enough to let water molecules flow through but small enough to block the larger salt particles that make seawater undrinkable. Put enough carbon nanotubes together and you potentially have the world’s most efficient machine for making clean water
Exascale computing can help solve fresh water shortagesFaster supercomputers will aid researchers who are studying desalination and depollution filters to boost the amount of drinkable water in the world
Exascale computing can help solve fresh water shortagesFaster supercomputers will aid researchers who are studying desalination and depollution filters to boost the amount of drinkable water in the worldThursday, October 5, 2017
The Nobel Prize in Physics 2017-physicsknow
Nobel Prize in Physics 2017
Gravitational wave researchers win Nobel Prize

Rainer Weiss (left) from MIT, Barry Barish from Caltech, and Kip Thorn from Caltech all shared the 2017 Nobel Prize in Physics.
Three American physicists have won the 2017 Nobel Prize in Physics for their contribution to detecting gravitational waves. 
The Nobel Prize in Physics 2017 was divided, one half awarded to Rainer Weiss, the other half jointly to Barry C. Barish and Kip S. Thorne "for decisive contributions to the LIGO detector and the observation of gravitational waves".
Thursday, September 7, 2017
physics is in our everyday life |PhysicsKnow|
physics is in our everyday life |PhysicsKnow|
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Sunday, September 3, 2017
This Month in Physics History- September 1905 -PhysicsKnow
September 1905: Einstein's Most Famous Formula
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Einstein's Most Famous Formula-physicsknow |
Although several renowned scientists published papers bearing on the theory of special relativity prior to 1900 - including Maxwell, Lorentz and Henri Poincaré - 1905 is generally recognized as the birth year of special relativity. That year saw publication of two important papers on the subject, by an obscure patent clerk named Albert Einstein.
Having failed to obtain a university post teaching mathematics and physics, Einstein was working in the patent office in Bern, Switzerland, when he completed an astonishing range of theoretical physics publications, all written in his spare time with
out the benefit of close contact with scientific literature or colleagues.
In June, 1905, Einstein proposed what we know today as the special theory of relativity. He based his theory on a reinterpretation of the classical principle of relativity, which postulates that the laws of physics must have the same form in any frame of reference. The theory also assumed that the speed of light remained constant in all frames of reference, as required by Maxwell's theory.
But it was later that year, in a paper received by the Annalen der Physik on September 27, applying his equations to study the motion of a body, that Einstein showed that mass and energy were equivalent, a startling new insight he expressed in a simple formula that became synonymous with his name: E=mc2. However, full confirmation of his theory was slow in coming. It was not until 1933, in Paris, when Irène and Frédéric Joliot-Curie took a photograph showing the conversion of energy into mass, in which a quantum of light carries energy up from beneath and converts into mass in the middle, creating two particles which curve away from each other.
Monday, August 28, 2017
NASA say-Large Asteroid to Safely Pass Earth on Sept. 1 2017 - physicsknow
Tuesday, August 22, 2017
A line that connects a planet to the sun sweeps out equal areas in equal times.-physicsknow
By Shailesh kumar August 22, 2017
Developing Kepler's Law of Areas-PhysicsKnow, Kepler's Law, The Law of Areas-PhysicsKnow No comments
The Law of Areas-PhysicsKnow
The orbital radius
and angular velocity of the planet in the elliptical orbit will vary. This is
shown in the animation: the planet travels faster when closer to the sun, then
slower when farther from the sun. Kepler's second law states that the blue sector
has constant area.
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| Kepler-second-law |
This is
one of Kepler's laws.This empirical law discovered by Kepler arises
from conservation of angular momentum. When the planet is closer to the
sun, it moves faster, sweeping through a longer path in a given time.
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Developing Kepler's Law of Areas-PhysicsKnow
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