Monday, July 10, 2017

Eva Ekeblad-First woman in the Royal Swedish Academy of Sciences-physicsknow

Evadelagardie.gif
Eva Ekeblad

Eva Ekeblad

Eva Ekeblad
BornJuly 10, 1724
Stockholm, Sweden
DiedMay 15, 1786 (1786-05-16) (aged 61)
Skaraborg County, Sweden
ResidenceStockholm and Västergötland
CitizenshipSwedish
FieldsAgronomy
Known forMaking alcohol of potatoes (1746)
InfluencedReduced hunger by making potatoes a basic food.
Notable awardsMembership 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.

Saturday, July 8, 2017

India planted 66 million trees in 12 hours to make India green again- physicsknow

India promised to increase forest cover to 95 million hectares by 2030

 


Thursday, July 6, 2017

Astronomy Highlights in Summer 2017- physicsknow

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Saturday, July 1, 2017

The Unsung Heroes of Science - physicsknow

The Unsung Heroes of Science-physicsknow

Some scientists never got the praise they deserved. Here's to the ones history passed over.

1. Alhazen: Method Man

Alhazen: Method Man

 Observe. Hypothesize. Experiment. Revise. Repeat. The scientific method is the foundation upon which researchers build. The man who laid the groundwork for it, however, is all but forgotten in the West.
Born in the mid-10th century in what is now Iraq, Ibn al-Haytham, known to English speakers as Alhazen, was a man of endless curiosity. At a time when the Arabic-speaking world was the epicenter of scientific inquiry, Alhazen was one of its brightest stars.
He wrote more than 100 books on physics, mathematics and astronomy, among other fields, and is believed to be the first to explain how our brains create the illusion of the moon appearing larger near the horizon. His pioneering work on optics inspired the likes of Roger Bacon and Johannes Kepler centuries later. But Alhazen’s creation of the scientific method is his most far-reaching achievement.
Known for developing theories based on experimentation and data collection rather than abstract thought, Alhazen stressed the need to test results — especially those considered canon, as he wrote in his Doubts Against Ptolemy:
“A person who studies scientific books with a view of knowing the real facts ought to turn himself into an opponent of everything that he studies; he should thoroughly assess its main as well as its margin parts, and oppose it from every point of view and in all its aspects.. . . If he takes this course, the real facts will be revealed to him.”
Alhazen’s advice can be seen in action today around the world, from middle school science fairs to the Large Hadron Collider.

Saturday, May 20, 2017

ISRO to launch 3 satellites in 18 months for high-speed internet-physicsknow

ISRO to launch 3 satellites in 18 months for high-speed internet: GSAT-19 launch in June

The GSAT-19 satellite is scheduled to take off in early June onboard GSLV-Mk III, ISRO's heaviest rocket, from SDSC SHAR, Sriharikota. 

 Space Research Organisation (ISRO)  -physicsknowNew Delhi: The Indian Space Research Organisation (ISRO) will send a series of three communication satellites - GSAT-19, GSAT-11 and GSAT-20 – into the orbit in the next 18 months to increase internet speed across the nation, as per a report in Indian Express.


The GSAT satellites are India's indigenously developed technologies of communications satellites, with an objective to make the country self-reliant in broadcasting services.
The GSAT-19 satellite is scheduled to take off in early June onboard GSLV-Mk III, ISRO's heaviest rocket, from SDSC SHAR, Sriharikota.
This would be the maiden flight for GSLV-Mk III, the next generation launch vehicle of ISRO capable of launching 4 ton class of satellites to Geosynchronous Transfer orbit (GTO).
“The next big launch will be GSAT-19 in June. With this launch, we will begin a new age of communication satellites. It is also the beginning of high-throughput satellites (in India),” Tapan Misra, director of Ahmedabad-based Space Applications Centre (SAC), an arm of ISRO that develops satellite payloads, was quoted as saying by the Indian Express.
“While the world is already witnessing a change in the communication technology where voice and video communications are taking place through Internet, with future launches, television will be viewed through Internet using wireless Technology,” Misra added.
These launches will not only revolutionise the way we use televisions and smart-phones, but will also drive the future communication needs of smart cities, the report added.
ISRO said the satellite will carry Ka-band and Ku-band payload along with a Geostationary Radiation Spectrometer (GRASP) payload to monitor and study the nature of the charged particles and influence of space radiation on spacecraft and electronic components.
GSAT-19 satellite will employ advanced spacecraft technologies including bus subsystem, indigenous Li ion battery, indigenous Bus bars for power distribution, etc, the Indian space agency added.
Earlier this month on the 5th May, ISRO successfully launched the Geostationary communication satellite-9 (GSAT-9) – India's gift to South Asia - into a Geostationary orbit.
The GSAT-9 is meant for providing communication and disaster support and connectivity among the countries of South Asia region, with the mission life of about 12 years.

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Friday, May 19, 2017

NASA probes detect man-made bubble around Earth-physicsknow


The impact of such communications extend out beyond our atmosphere, creating a bubble surrounding Earth, NASA`s Van Allen Probes, which study electrons and ions in the near-Earth environment, have revealed. 

Washington: Humans have long been shaping Earth`s landscape, but now scientists know that we also can shape our near-space environment with radio communications.
The impact of such communications extend out beyond our atmosphere, creating a bubble surrounding Earth, NASA`s Van Allen Probes, which study electrons and ions in the near-Earth environment, have revealed. 
A certain type of communications -- very low frequency, or VLF, radio communications -- were found to interact with particles in space, affecting how and where they move. 
At times, these interactions can create a barrier around Earth against natural high energy particle radiation in space, showed the results of a study published in the journal Space Science Reviews.
"A number of experiments and observations have figured out that, under the right conditions, radio communications signals in the VLF frequency range can in fact affect the properties of the high-energy radiation environment around the Earth," said Phil Erickson, Assistant Director at the Massachusetts Institute of Technology (MIT) Haystack Observatory, Westford, Massachusetts.
VLF signals are transmitted from ground stations at huge powers to communicate with submarines deep in the ocean. 
While these waves are intended for communications below the surface, they also extend out beyond our atmosphere, shrouding Earth in a VLF bubble. 
This bubble is even seen by spacecraft high above Earth`s surface, such as NASA`s Van Allen Probes.
The probes noticed an interesting coincidence ? the outward extent of the VLF bubble corresponds almost exactly to the inner edge of the Van Allen radiation belts, a layer of charged particles held in place by Earth`s magnetic fields. 
With further study, VLF transmissions may serve as a way to remove excess radiation from the near-Earth environment. 
Plans are already underway to test VLF transmissions in the upper atmosphere to see if they could remove excess charged particles ? which can appear during periods of intense space weather, such as when the sun erupts with giant clouds of particles and energy, NASA said.