Monday, August 28, 2017
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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Sunday, August 20, 2017
Solar eclipse of August 21, 2017-PhysicsKnow
Solar eclipse of August 21, 2017-PhysicsKnow
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Solar eclipse of August 21, 2017-PhysicsKnow |
On Monday, August 21, 2017, a total solar eclipse will be visible within a band across the entire contiguous United States. This eclipse will only be visible in other countries as a partial eclipse.
A solar eclipse occurs when the Moon passes between Earth and the Sun, thereby totally or partly obscuring the image of the sun for a viewer on Earth. A total solar eclipse occurs when the moon's apparent diameter is larger than the sun's, blocking all direct sunlight, turning day into darkness. Totality occurs in a narrow path across Earth's surface, with the partial solar eclipse visible over a surrounding region thousands of kilometers wide.
The last time a total solar eclipse was visible across the entire contiguous United States was during the June 8, 1918 eclipse, and not since the February 1979 eclipse has a total eclipse been visible from anywhere in the mainland United States. The path of totality will touch 14 states (although a partial eclipse will be visible in all fifty states), and 16% of the area of the United States. The event will begin on the Oregon coast as a partial eclipse at 9:06 a.m. PDT on August 21, and will end later that day as a partial eclipse along the South Carolina coast at about 4:06 p.m. EDT.
There are expected to be logistical problems with the influx of visitors, especially for smaller communities.There have also been problems with counterfeit eclipse glasses being sold.
Future total solar eclipses will cross the United States in April 2024 (12 states) and August 2045 (10 states), and annular solar eclipses—meaning the apparent size of the Moon is smaller than that of the Sun—will occur in October 2023
(9 states) and June 2048 (9 states).Saturday, August 19, 2017
International Space Station astronauts to view the solar eclipse 3 times-PhysicsKnow
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| solar eclipse-PhysicsKnow |
While millions of
Americans gather across the country to catch a glimpse of Monday's total solar
eclipse, the astronauts aboard the International Space Station will view the
event from a much different vantage point.
The ISS crew members
are predicted to view both a partial eclipse and the moon's shadow cast on the
North American continent as they make three tracks around the planet 400 km
above Earth's surface, according to NASA.
"Observing a
total solar eclipse from manned spacecraft is difficult though not
impossible," NASA reported.
NASA said the
different rates of speed and intersecting paths are the main challenge to
viewing an eclipse from space.
At minimum, ISS
spends less than 15 seconds traversing the 100-km-wide lunar shadow even when
the paths align in space and time, according to NASA. However, Earth’s horizon
extends nearly 2,300 km from the ISS, allowing astronauts to see the lunar
shadow if they are close enough during the event.
The total eclipse
will begin on the Oregon coast at 17:15 UT (10:15 a.m. PDT) and will end along
the South Carolina coast at 18:49 UT (2:49 p.m. EDT).
As the space station
makes its first pass during the eclipse, the crew members will be able to view
a partial solar eclipse with approximately 37 percent of the sun covered up,
NASA reports.
However, at this
point in time, the ISS will not be able to see the umbra, or the darkest part
of the moon's shadow on the Earth's surface. The space station will pass over
the western United States and southeastern Canada in the first pass. The total
portion of the eclipse will not have started yet for the Earth.
As the station makes
its second pass through the moon's shadow, the partial eclipse will be visible
to the astronauts with 44 percent of the sun covered.
"ISS will
witness the moon’s umbra moving from southwestern Kentucky to northern
Tennessee during a portion of this pass," NASA reports.
"The moon’s
umbra is visible on the Earth from ISS’s viewpoint while ISS traverses from
southern Canada just north of the Montana-Canada border to the Gulf of Saint
Lawrence."
At its closest
approach, the space station will be making its way south of the Hudson Bay, far
removed from the moon's umbra, which will be passing over southwestern Kentucky
nearly 1,700 km away.
However, despite the
distance, crew members aboard the ISS should still be able to view the shadow
near the horizon.
The third pass for
the ISS will bring another view of a partial solar eclipse with 85 percent
coverage just minutes before orbital sunset. At this point, the darkest part of
the lunar shadow will no longer be visible to crew as the umbra will have
lifted from the Earth's surface as it makes its transit.
"Because of
atmospheric friction and other ISS activities, the orbits undergo small changes
from week to week," NASA reports.
The most precise
timing will be available on NASA's ISS observations website.
Saturday, August 5, 2017
Biography of Neil Armstrong-physicsknow
Biography of Neil Armstrong
Neil A. Armstrong, the first man to walk on the moon, was born in Wapakoneta, Ohio,

August 5, 1930. He began his NASA career in Ohio.
After serving as a naval aviator from 1949 to 1952, Armstrong joined the National Advisory Committee for Aeronautics (NACA) in 1955. His first assignment was with the NACA Lewis Research Center (now NASA Glenn) in Cleveland. Over the next 17 years, he was an engineer, test pilot, astronaut and administrator for NACA and its successor agency, the National Aeronautics and Space Administration (NASA).
As a research pilot at NASA's Flight Research Center, Edwards, Calif., he was a project pilot on many pioneering high speed aircraft, including the well known, 4000-mph X-15. He has flown over 200 different models of aircraft, including jets, rockets, helicopters and gliders.
Armstrong transferred to astronaut status in 1962. He was assigned as command pilot for the Gemini 8 mission. Gemini 8 was launched on March 16, 1966, and Armstrong performed the first successful docking of two vehicles in space.
As spacecraft commander for Apollo 11, the first manned lunar landing mission, Armstrong gained the distinction of being the first man to land a craft on the moon and first to step on its surface.
Armstrong subsequently held the position of Deputy Associate Administrator for Aeronautics, NASA Headquarters, Washington, D.C. In this position, he was responsible for the coordination and management of overall NASA research and technology work related to aeronautics.
He was Professor of Aerospace Engineering at the University of Cincinnati between 1971-1979. During the years 1982-1992, Armstrong was chairman of Computing Technologies for Aviation, Inc., Charlottesville, Va.
He received a Bachelor of Science Degree in Aeronautical Engineering from Purdue University and a Master of Science in Aerospace Engineering from the University of Southern California. He holds honorary doctorates from a number of universities.
Armstrong was a Fellow of the Society of Experimental Test Pilots and the Royal Aeronautical Society; Honorary Fellow of the American Institute of Aeronautics and Astronautics, and the International Astronautics Federation.
He was a member of the National Academy of Engineering and the Academy of the Kingdom of Morocco. He served as a member of the National Commission on Space (1985-1986), as Vice-Chairman of the Presidential Commission on the Space Shuttle Challenger Accident (1986), and as Chairman of the Presidential Advisory Committee for the Peace Corps (1971-1973).
Armstrong was decorated by 17 countries. He was the recipient of many special honors, including the Presidential Medal of Freedom; the Congressional Gold Medal; the Congressional Space Medal of Honor; the Explorers Club Medal; the Robert H. Goddard Memorial Trophy; the NASA Distinguished Service Medal; the Harmon International Aviation Trophy; the Royal Geographic Society's Gold Medal; the Federation Aeronautique Internationale's Gold Space Medal; the American Astronautical Society Flight Achievement Award; the Robert J. Collier Trophy; the AIAA Astronautics Award; the Octave Chanute Award; and the John J. Montgomery Award.
Armstrong passed away on Aug. 25, 2012 following complications resulting from cardiovascular procedures. He was 82.
Sunday, July 16, 2017
physicsknow- Vacuum and Effects on humans and animals
physicsknow- Vacuum and Effects on humans and animals
Vacuum is space void of matter. The word stems from the Latin
adjective vacuus for "vacant" or "void". An
approximation to such vacuum is a region with a gaseous pressure much less than atmospheric pressure.Physicists often discuss ideal test
results that would occur in a perfect vacuum, which they sometimes simply
call "vacuum" or free space, and use the term partial vacuum to
refer to an actual imperfect vacuum as one might have in a laboratory or in space. In engineering and applied physics on the
other hand, vacuum refers to any space in which the pressure is lower than
atmospheric pressure.The Latin term in
vacuo is used to describe
an object that is surrounded by a vacuum.
An_Experiment_on_a_Bird_in_an_Air_Pump_by_Joseph_Wright_of_Derby,_1768
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| An_Experiment_on_a_Bird_in_an_Air_Pump_by_Joseph_Wright_of_Derby,_1768 |
Animal experiments show that
rapid and complete recovery is normal for exposures shorter than 90 seconds,
while longer full-body exposures are fatal and resuscitation has never been
successful. A study by NASA on eight
chimpanzees found all of them survived two and a half minute exposures to
vacuum. There is only a limited
amount of data available from human accidents, but it is consistent with animal
data. Limbs may be exposed for much longer if breathing is not impaired.Robert Boyle was the first to show in 1660 that vacuum is
lethal to small animals.
An experiment indicates that plants are able to
survive in a low pressure environment (1.5 kPa) for about 30 minutes.
Monday, July 10, 2017
Eva Ekeblad-First woman in the Royal Swedish Academy of Sciences-physicsknow
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| Eva Ekeblad |
Eva Ekeblad
| Eva Ekeblad | |
|---|---|
| Born | July 10, 1724 Stockholm, Sweden |
| Died | May 15, 1786 (1786-05-16) (aged 61) Skaraborg County, Sweden |
| Residence | Stockholm and Västergötland |
| Citizenship | Swedish |
| Fields | Agronomy |
| Known for | Making alcohol of potatoes (1746) |
| Influenced | Reduced hunger by making potatoes a basic food. |
| Notable awards | Membership in the Royal Swedish Academy of Sciences (1748) |
| Notes | |
First woman in the Royal Swedish Academy of Sciences: full member 1748–51, honorary member 1751-86.
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