Friday, November 14, 2008

Indian Probe landed on Moon on 14th Nov, 2008

An Indian probe landed on the moon on Friday, the Indian Space Research Organisation announced, in a milestone for the country's 45-year-old space programme.

The probe touched down on the moon at 8:34pm (1504 GMT), 25 minutes after it was ejected from an unmanned spacecraft orbiting the moon.

During its descent from Chandrayaan-1 an onboard video camera transmitted lunar pictures to the ISRO command centre.

Scientists monitoring the probe cheered as ISRO chairman Madhavan Nair announced the success of the country's first lunar mission, which began on October 22 when a rocket transported Chandrayaan-1 into space.

The probe, carrying three instruments and with the Indian flag painted on its outer panes, settled in a crater in the moon's south pole.

Nair said the landing was perfect.

"We have now successfully put our national flag on the lunar surface," he told a news conference.

"The moon has been very favourable to us and this is a very productive and fruitful mission," he said, and added: "We have also emerged as a low-cost travel agency to space," referring to the mission's 80-million dollar tag.

Chandrayaan-1 is on a two-year orbital mission to provide a detailed map of the mineral, chemical and topographical characteristics of the moon's surface.

Buoyed by its success, ISRO plans to send a second unmanned spacecraft to the moon in 2012 and separately launch satellites to study Mars and Venus.

India started its space programme in 1963, developing its own satellites and launch vehicles to reduce dependence on overseas agencies.

world's largest astronomical observatory set up to solve Cosmic Mysteries

Scientists in western Argentina were set to inaugurate on Friday, the 14th Nov, 2008 the world's largest astronomical observatory, hoping to unlock the mysteries of high energy cosmic rays that bombard the Earth.

To observe the cosmic ray showers -- high-energy particles present in universe that bombard the Earth -- they use a collection of 1,600 particle detectors placed 1.5 kilometers (one mile) apart, in a grid spread across 3,000 square kilometers (1,200 square miles).

On top of this detection system, scientists will turn the observatory into the most powerful galaxial observation instrument ever built with an additional 24 telescopes, to record emissions of light from the particle shower.

Cosmic particles amount to microscopic protons and atomic nuclei, which whiz across the vast expanse of the universe, approaching the speed of light.

When the particles slam into Earth's upper atmosphere the impact splits them into secondary particles that scientists call an "air shower," which can spread across more than 40 square kilometers (15 square miles) across the planet's surface.

Sunday, October 26, 2008

Chandrayaan-1, India's First Moon mission launched on 22nd Oct, 08

On 22nd October, 2008, India's first Moon mission took place. The Rocket PSLV-C11 has lifted off exactly at 6.22 AM from the Second Launch Pad at Sriharikota - The space port of India.

It was truly a historic moment for the entire country. The PSLV-C11, which carries India's first unmanned moon spacecraft Chandrayaan-1, was successfully put into initial orbit from the Satish Dhawan Space Centre on Wednesday morning at around 6.40 am.

At the end of the 49-hour countdown, the 44.4 meter tall four-stage PSLV-C11 blasted off from the second launch pad with the ignition of the core first stage at 6.22 am.

The launch vehicle uses larger strap-on motors to achieve higher payload capability.

The Chandrayaan-1 is carrying 11 payloads, five entirely designed and developed in India, three from European Space Agency, one from Bulgaria and two from US, which would explore the moon.


The 1380-kg Chandrayaan-1 spacecraft will first reach a highly elliptical Initial orbit and thereafter the satellite's Liquid Apogee Motor (LAM) will be fired at appropriate moments that will finally take it to an orbit at a height of 100 km around the moon around November eight.

Chandrayaan-1 carries 11 payloads (scientific instruments) -- five from India, three from ESA, two from the US and one from Bulgaria. It aims to undertake remote-sensing of the moon in the visible, near infrared, microwave and X-ray regions of the electromagnetic spectrum. With this, preparation of a three-dimensional atlas of the lunar surface is envisaged.

Friday, May 23, 2008

Astronomers record supernova explosion

ThursDay : May, 22nd, 2008

In a stroke of cosmic luck, astronomers for the first time witnessed the start of one of the universe's most fiery events: the end of a star's life as it exploded into a supernova.

On January 9, astronomers used a NASA X-ray satellite to spy on a star already well into its death throes, when another star in the same galaxy started to explode.

The outburst was 100 billion times brighter than Earth's sun. The scientists were able to get several ground-based telescopes to join in the early viewing and the first results were published in Thursday's issue of the journal Nature.

"It's like winning the astronomy lottery," said lead author Alicia Soderberg, an astrophysics researcher at Princeton University. "We caught the whole thing from start-to-finish on tape."

Another scientist, University of California at Berkeley astronomy professor Alex Filippenko, called it a "very special moment because this is the birth, in a sense, of the death of a star."


And what a death blast it is.

"As much energy is released in one second by the death of a star as by all of the other stars you can see in the visible universe," Filippenko said.

Less than one per cent of the stars in the universe will die this way, in a supernova, said Filippenko, who has written a separate paper awaiting publication.

Most stars, including our sun, will get stronger and then slowly fade into white dwarfs, what Filippenko likes to call "retired stars," which produce little energy.

The first explosion of this supernova can only be seen in the X-ray wave length.

It was spotted by NASA's Swift satellite, which looks at X-rays, and happened to be focused on the right region, Soderberg said.

The blast was so bright it flooded the satellite's instrument, giving it a picture akin to "pointing your digital camera at the sun," she said.

The chances of two simultaneous supernovae explosions so close to each other is maybe one in 10,000, Soderberg said.

The odds of looking at them at the right time with the right telescope are, well, astronomical.


Phoenix mission to Mars will search for climate clues

On May 25, 2008, approaching 5 p.m. PDT, NASA scientists will be wondering: Just how green is their valley?

That's because at that time the Phoenix Mars Mission space vehicle will be touching down on its three legs to make a soft landing onto the northern Mars terrain called Green Valley.

Of course, no valley is actually green on the Red Planet. The place got its name after analysis of images from Mars Reconnaissance Orbiter's HiRISE instrument. HiRISE can image rocks on Mars as small as roughly a yard and a half across. Green is the color that that landing site selection team used to represent the fewest number of rocks in an area, corresponding to a desirable place to land. Thus, "green valley," a relatively rock-less region, is a "sweet spot" where the Phoenix spacecraft will land.

Also playing a key role in the Phoenix Mars mission is Raymond E. Arvidson, Ph.D., the James S. McDonnell Distinguished University Professor and chair of the earth and planetary sciences department in Arts & Sciences at Washington University in St. Louis.

Arvidson has extensive experience in planetary landing operations. He participated in the two Viking Lander missions in 1976 and has spent the past four years, first helping select the landing site for the 2004 Mars Exploration Rover (MER) mission, then guiding the activities of the rovers Spirit and Opportunity as the mission's deputy principal investigator.

Accordingly, Arvidson is NASA's Phoenix landing site working group chair. He also is the co-investigator for the Phoenix robotic arm, a crucial instrument that will collect soil and ice samples; the lead for archiving mission data, and a key science lead for the first week of surface operations.

Phoenix will touch down in Green Valley with the aid of a parachute, retro rockets and three strong legs with shock absorbing footpads to slow it down.

That's sol (a Martian day) zero.

"We'll know within two hours of landing if Phoenix landed nominally," said Arvidson. "It will land, deploy its solar panels, take a picture and then go to bed."

The next day, Sol 1, begins a crucial period of operations for the mission. Arvidson said, "We'll be checking out the instruments and begin robotic arm operations within about a week, if everything goes well, and collect soil and ice samples over the summer for analyses with the on-board instruments."

Phoenix will dig to an ice-rich layer expected to lie within arm's reach of the surface. It will analyze the water and soil for evidence about climate cycles and investigate whether the environment there has been favorable for microbial life. It also carries a weather station to monitor changes in the atmosphere. The primary mission is brief, just 90 days.

Martian weather channel

That first tense, exciting, crucial day, four Washington University students will work with Arvidson at the University of Arizona. Two of them, sophomore Kirsten Siebach, and junior Rebecca Greenberger, are Fossett Fellows, a scholarship program established at WUSTL by the late adventurer J. Steven Fossett. A third, Tabatha Heet, will have just graduated with a bachelor's degree nine days earlier, and WUSTL doctoral candidate Selby Cull will be present as well. Thomas C. Stein, a WUSTL computer systems manager, will work with the Phoenix geology theme group and also archive data for NASA's Planetary Data System.

The four students are Phoenix Mission documentarians, responsible for recording all that is done on the mission and for informally naming geological sites in the area.

Heet played a key role in counting rocks in HiRISE images to enable a safe landing for Phoenix. She began the rock measurement and counting project in October of 2006.

Both Heet and Arvidson are excited to have the mission so close at hand after years of planning.

"It's still very exciting," the veteran Arvidson said. "This is a new place on an intriguing planet, and we can't wait to see what we'll find."

Monday, April 28, 2008

PSLV-C9 blasts off from Sriharikota on 28th April, 2008

SRIHARIKOTA: India's PSLV-C9 blasted off into space, carrying ten satellites including the country's latest remote sensing satellite CARTOSAT-2A, from ISRO's Satish Dhawan Space Centre here on Monday. ( Watch )

Scientists cheered as the Polar Satellite Launch Vehicle, in its thirteenth flight, soared into the clear sky in a perfect lift off at 9.23 am from the second launch pad.

Besides the 690 kg CARTOSAT-2A, the PSLV is also carrying ISRO's Indian Mini Satellite-1 (IMS-1), weighing 83kg, and eight nano satellites built by universities and research institutes in Canada and Germany.

While the CARTOSAT-2A, carrying state-of-the-art panchromatic camera (PAN), will be used for mapping purposes and management of natural resources, the IMS-1 will be used as a platform for trying out advanced technology in future launches.

Sunday, March 30, 2008

Giant, Unknown Animals Found off Antarctica

March 28, 2008—Giant sea stars or starfish that measure 24 inches (60 centimeters) across are held by Sadie Mills, and Niki Davey of New Zealand's National Institute of Water and Atmospheric Research on February 15, 2008.

They and other researchers collected 30,000 sea creatures—many new to science—during a 35-day census in Antarctic waters in February and March, according to a March 26 announcement.

The large-scale survey was part of the International Polar Year and Census of Antarctic Marine Life programs, which study the diversity of Antarctic marine life.

for more information click here.