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Τρίτη 5 Μαΐου 2015

Gyroscopes

    

Gyroscopes





Δημοσιεύτηκε στις 22 Μαΐ 2013
Astronaut Mike Fossum demonstrates how gyroscopes are used to stabilize
spacecraft.

http://www.nasa.gov/education/STEMsta...
ΑΝΑΡΤΗΣΗ ΑΠΟ ΤΟ YOUTUBE 5/5/2015

Δευτέρα 4 Μαΐου 2015

R6. Angular Momentum and Torque

    

R6. Angular Momentum and Torque



Δημοσιεύτηκε στις 3 Σεπ 2013
MIT 2.003SC Engineering Dynamics, Fall 2011
View the complete course: http://ocw.mit.edu/2-003SCF11
Instructor: J. Kim Vandiver

License: Creative Commons BY-NC-SA
More information at http://ocw.mit.edu/terms
More courses at http://ocw.mit.edu
ANAΡΤΗΣΗ ΑΠΟ ΤΟ YOUTUBE 4/5/2015

Back to the Big Bang: Inside the Large Hadron Collider

    





Δημοσιεύτηκε στις 4 Μαρ 2015
Venture
deep inside the world’s biggest physics machine, the Large Hadron
Collider. This extraordinary feat of human engineering took 16 years and
$10 billion to build, and recently began colliding particles at
energies unseen since a fraction of a second after the big bang. We'll
explore this amazing apparatus that could soon reveal clues about
nature’s fundamental laws and even the origin of the universe itself.
John Hockenberry moderates a discussion among physicists including
Marcela Carena, Monica Dunford, Jennifer Klay, and Nobel laureate Frank
Wilczek.

Original Program Date: June 5, 2010
This program is part of The Big Idea Series, made possible with support from the John Templeton Foundation.

Want more World Science Festival?
http://www.worldsciencefestival.com/n...
ANAΡΤΗΣΗ ΑΠΟ ΤΟ YOUTUBE 4/5/2015

Σάββατο 2 Μαΐου 2015

Most countries not protecting antibiotics, says WHO

Most countries not protecting antibiotics, says WHO

    Bacteria
  • 29 April 2015

Three-quarters of countries do not have plans in place to preserve antimicrobial medicines, the World Health Organization says.
The body has repeatedly warned that the globe is heading into a "post-antibiotic era" in which much of modern medicine becomes impossible.
Its report showed "a lot more needs to be done" to prevent the rise of resistance in a range of infections.
Experts said it was an "appalling state of affairs".
It is in the very nature of microbes to develop resistance to the drugs we use against them.
If the drugs stop working, then common infections, such as tuberculosis, will kill again. Surgery and cancer treatment are also reliant on the drugs to keep patients alive.

Παρασκευή 1 Μαΐου 2015

Gravity, Branes And Hidden Dimensions

      

Gravity, Branes And Hidden Dimensions





Ανέβηκε στις 1 Αυγ 2009
http://www.facebook.com/ScienceReason ... Physics (Chapter 3): Gravity, Branes And Hidden Dimensions (The Fourth Dimension / 4D Tesseract)

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Why
is gravity so weak? Why can a small magnet pull or push something away
from the entire earth? There is an idea that may explain it, but before
we go there, lets explore some preliminary ideas. The most popular
quantum gravity theory of today describes all fundamental particles as
vibrating strings of energy. And the theory is constructed in a whopping
nine or ten spatial dimensions instead of the three that we experience
in our everyday lives.

But what is a dimension? A line is a
familiar geometric figure. It can be completely described by giving its
length. It is a one-dimensional object. It can be imagined that the
dimensionality of an object can be created by taking an object of one
less dimensions and moving it at a right angle to that dimension. You
can create a line in your imagination by thinking of taking a point and
moving it.

Next consider a surface: A surface is also quite
familiar. A surface has both length and width and requires two
measurements to define it and therefore is a two-dimensional object.
Similar to the generation of a line from a point, we can generate a
two-dimensional surface by taking a line and moving it in a direction
other than the direction of its length.

And a solid figure is the
stuff of everyday life. It has length and width and depth and requires
three measurements to describe it, and is a threedimensional object. And
like the generation of a surface from a line above, we can generate a
three-dimensional object like a cube by taking a square and moving it in
a direction other than the directions of its length and width.
Cylinders, cubes, and spheres are three-dimensional objects.

And
now the hard part the higher dimensions are created by moving a
threedimensional solid in a direction other than its length, width or
height. And while that is easy to do mathematically, it is impossible
for us to picture it.

Now back to strings If this membrane
represents the three dimensions that we live in, then particles like
quarks and electrons are strings that have their endpoints forever
attached to those three dimensions. But the particle that is the force
carrier for gravity, the graviton, is a closed loop.

It has no
ends that are constrained to our three dimensions. So if there are other
dimensions, gravity will propagate freely there as well as in our
familiar three. And that might explain why gravity seems so weak to us.
We experience only a tiny fraction of gravitys true strength because so
much of it is leaking out into the other dimensions!

But where are these dimensions hiding? One possibility (but not the only one) is that they are all around us but are
incredibly tiny.

If
you look at a wire or a string from far enough away, it looks like a
line a onedimensional figure. But if you get closer or if you were a
lot smaller than the thickness of the wire, then you would easily see
that it has other dimensions. On the tiniest of scales, space has extra
dimensions at every point. It might look something like this if we were
small enough to see it.

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LHC (Large Hadron Collider):
Accelerators like the LHC at CERN smash protons against anti-protons at
enormous energies perhaps enormous enough to produce gravitons. And if
they do, then perhaps we might just be able to see them form in our
limited threedimensional world and slip quickly and quietly away into
those hidden dimensions!

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The tesseract: In geometry,
the tesseract, also called an 8-cell or regular octachoron, is the
four-dimensional analog of the cube. The tesseract is to the cube as the
cube is to the square. Just as the surface of the cube consists of 6
square faces, the hypersurface of the tesseract consists of 8 cubical
cells. The tesseract is one of the six convex regular 4-polytopes.

A
generalization of the cube to dimensions greater than three is called a
hypercube, n-cube or measure polytope. The tesseract is the
four-dimensional hypercube, or 4-cube.

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The Cassiopeia Project - making science simple!

The
Cassiopeia Project is an effort to make high quality science videos
available to everyone. If you can visualize it, then understanding is
not far behind.

http://www.cassiopeiaproject.com
.

Particle Physics Gravity and the Standard Model

   

Particle Physics Gravity and the Standard Model



Δημοσιεύτηκε στις 30 Αυγ 2011
Lawrence
Berkeley Lab Scientist Andre Walker-Loud presents to high-school
students and teachers, explaining the nature of the four fundamental
forces, and how the standard model of particle physics relates to
cosmology. He also talks about Quantum Chromodynamics (QCD) and why his
profession is both important and rewarding. [Science] [Show ID: 22751]
ANAΡΤΗΣΗ ΑΠΟ ΤΟ YOUTUBE 1/5/2015

Data Science Insights - The Improbability Principle

    



Data Science Insights - The Improbability Principle



Δημοσιεύτηκε στις 30 Απρ 2015

In
this second Data Science Insights event Professor David Hand, Emeritus
Professor of Mathematics at Imperial College London, spoke on the
subject of his book, The Improbability Principle, about why incredibly
unlikely things keep happening.
Axel Threlfall, Lead Anchor for
Reuters Television, chaired. This event was held at the Clore Lecture
Theatre at Imperial's South Kensington Campus on March 11 2015.
To find out more about Data Science Insights, visit www.imperial.ac.uk/data-science/events/d­ata-science-insights