Showing posts with label ISRO. Show all posts
Showing posts with label ISRO. Show all posts

Saturday, 3 January 2015

ASTEROID GOT A CHANCE



Scientists believe that ABOUT 30 yrs from now an asteroid will hit the earth. They have discovered that it pass us every 3 yrs. The asteroids have an Orbit given below:




            Near Earth Asteroids
Potentially Hazardous Asteroids (PHA) are space rocks larger than approximately 100m that can come closer to Earth than 0.05 AU. None of the known PHAs is on a collision course with our planet, although astronomers are finding NEW ONES all the time.
On January 3, 2015 there were potentially hazardous asteroids.
Recent & Upcoming Earth-asteroid encounters:
Asteroid
Date(UT)
Miss Distance
Size
2014 YC42
Dec 30
4.2 LD
46 m
2014 YE15
Dec 30
2.9 LD
10 m
2014 YD15
Dec 31
1.6 LD
19 m
2014 YE42
Jan 3
4.3 LD
94 m
2014 YP34
Jan 4
8.8 LD
27 m
2007 EJ
Jan 12
68.9 LD
1.1 km
1991 VE
Jan 17
40.6 LD
1.0 km
2004 BL86
Jan 26
3.1 LD
650 m
2008 CQ
Jan 31
4.8 LD
36 m
2000 EE14
Feb 27
72.5 LD
1.6 km

Thursday, 9 October 2014

Mangalyaan: India's race for space success

Mangalyaan: India's race for space success

India rocketThe orbiter lifted off from the Satish Dhawan Space Centre in Sriharikota in November 2013
India's maiden mission to Mars, the Mangalyaan, has arrived in orbit after a 300-day marathon covering over 670 million kilometres (420 million miles). Science writer Pallava Bagla traced its journey as it neared the Red Planet.
On the morning of 24 September, the Indian Space Research Organisation (Isro) slowed down the spacecraft sufficiently so it could be caught in the orbit of Mars.
"India will become the first Asian country to have achieved this and if it happens in the maiden attempt itself, India could become the first country in the world to have reached distant Mars on its own steam in the first attempt," said Isro chairman K Radhakrishnan as it approached.
Both Russia and the US failed in their maiden attempts. The first Chinese mission to Mars, called Yinghuo-1, failed in 2011 alongside the Russian Phobos-Grunt mission with which it was launched. Earlier in 1998, the Japanese mission to Mars ran out of fuel and was lost.
Undoubtedly, India - a late starter - is way ahead of its Asian rivals in trying to get to the Red Planet.
"We are really not racing with anyone, but with ourselves to reach the next level of excellence," said Mr Radhakrishnan.
'Pink of health'
India's Mars Orbiter Mission (MOM) - an indigenously made unmanned robotic mission weighing 1,350kg (2,976lb) - was launched from the rocket port at Sriharikota on the coast of the Bay of Bengal on a balmy afternoon on 5 November last year.
Since then, the mission "has been in the pink of health", says Isro, and has been cruising at breakneck speed to reach close to Mars, half-way around the Sun.
Isro's Mars Mission Control Complex in BangaloreThe health of Mangalyaan is monitored from Isro's Mars mission control complex in Bangalore
The 4.5bn rupee ($74m; £45m) mission is, as Mr Radhakrishnan says, "the cheapest inter-planetary mission ever to be undertaken by the world".
On his visit to India's rocket port on 30 June, Prime Minister Narendra Modi said: "The [making of the] Hollywood movie Gravity cost more than our Mars mission - this is a great achievement."
India's low-cost and quick turnaround satellite mission has been attracting a lot of global attention from the scientific community that seeks to better understand the mysterious Mars.
On the morning of 24 September Indian time, Isro re-oriented Mangalyaan and fired its on-board rocket motor for about 24 minutes to slow the spacecraft.
It was a very tricky operation - if it did not slow down sufficiently, it would have missed being caught by the gravity of Mars and the mission could have be lost in outer space; but if the rocket engine had fired more than required it could have slowed the Mangalyaan so much that it risked crashing down on to the red soil of Mars.
Since 1960, there have been 51 global missions to Mars and the overall success rate stands at 42% so the odds were loaded against the Indian Martian entry.
M Annadurai, head of the Indian Mars mission, said he was "confident that the laws of physics will favour India and the country could have its first robotic Martian baby soon".
'Delusional dream?'
Isro dubs the mission a "technology demonstrator", essentially showcasing to the world that India is no longer a country of snake charmers but a high-tech hub that has developed its technology against the odds and stringent sanctions.
The mission also makes a big global geo-political statement ahead of Mr Modi's imminent visit to the US.
graphic, BBC
In its six-month life, the mission will study the atmosphere of Mars and search for methane gas while asking that eternal question that has dogged humanity: "Are we alone in the universe?"
Within hours of its arrival in the orbit, the spacecraft is expected to relay the first images taken by an Indian eye of the Red Planet and help decipher why and how Mars lost its liquid water.
These are important questions essential for the long-term survival of human beings on Earth.
In the sprint for the Martian marathon, India has shown its technological capability and resilience to undertake arduous inter-planetary journeys.
Many, however, say this bid to reach Mars is a "delusional dream" of India seeking super-power status since 400 million Indians still live without electricity and 600 million people still do not have access to toilets.
However, in real terms, the Mangalyaan has cost India just about four rupees (seven cents; four pence) per person. 
                                                                                              - An Article From BBC

Friday, 3 October 2014

ROCKET LAUNCH FAILURES FROM 1940 TO 2010 VIDEOS

                                               
                                                        A YouTube Video


HELLO! science lovers I am your new updater.

HERE IS AN EXCITING ROCKET LAUNCH FAILURES FROM 1940 TO 2010 VIDEOS

                                                                                      An Article by Shubham Garg

Tuesday, 5 November 2013

Mangalyaan - Launch Successful !!!



Mangalyaan Mission, India's first interplanetary mission launched on November 5, 2013 From Sriharikota is launched successfully. 

Mangalyaan will be mapping and studying the surfaces of the red planet Mars.  It is expected to reach into Mars' orbit in the month of September or October 2014. India will have to speed up its process as Mars' moon will be nearest to Earth in 2014 September. For this, India will have to launch in end of 2013 to reach its destination, conserving time and fuel. India is the third Asian Country to attempt Mars Mission, and if it will reach its destination, would become the fourth country to reach Mars.  

                                                                                              - Article By - M. Santosh

Thursday, 31 October 2013

Last Preparations for Mangalyaan !!!!!



Mangalyaan Mission, India's first interplanetary mission will be launched on November 5, 2013 From Sriharikota. USA's mission, MAVEN ( Mars Atmosphere and Volatile EvolutioN ) will be launched also in November.

Mangalyaan will be mapping and studying the surfaces of the red planet Mars.  It is expected to reach into Mars' orbit in the month of September or October 2014. India will have to speed up its process as Mars' moon will be nearest to Earth in 2014 September. For this, India will have to launch in end of 2013 to reach its destination, conserving time and fuel. India is the third Asian Country to attempt Mars Mission, and if it will reach its destination, would become the fourth country to reach Mars.  

                                                                                              - Article By - M. Santosh

Sunday, 11 August 2013

TMT - Thirty Meter Telescope


                  

TMT is the largest telescope project to be built at Mauna Kea, Hawaii. Countries to be contributing for this project are the USA ( NASA ),  India ( ISRO ), Japan ( NAOJ ), China ( NAOC ), and Universities of Canada. The project's estimated cost would be around 1.3 billion and all the countries will contribute for this and will have benefits for future space missions.

Features



As information collected from www.tmt.org, the instruments used in this observatory are:

HROS (High-Resolution Optical Spectrometer)



A single-object, seeing-limited, high-resolution (R = 50000 for 1 arc sec slit) optical-UV Echelle spectrograph in the heritage of HIRES at Keck and UVES at the VLT.

IRMOS (Infrared Multi object Spectrometer)



designed to use multi-object adaptive optics (MOAO) techniques over a 5 arcmin field of regard to feed up to 20 deployable IFUs.

MIRES (Mid-Infrared Echelle Spectrometer)



Is a diffraction-limited, high-resolution (5000 < R < 100000) spectrometer and imager operating at 8 – 18 µm. It will employ a separate AO system optimized for the mid-infrared.

NIRES (Near-Infrared Echelle Spectrometer)

Fed by NFIRAOS, NIRES is a diffraction-limited highresolution (20 000 < R < 100 000) spectrometer covering 1 – 2.4 µm simultaneously. It is a scientific descendant of NIRSPEC at Keck and CRIRES at the VLT.

PFI (Planet Formation Instrument)



an extreme AO high contrast exoplanet imager with spectroscopic (R ≤ 100) capability. The first generation system will obtain 106 (goal: 107) contrasts while the second generation requirement is 108(goal: 109) in H-band for R < 8 mag. PFI is intended to be deployed after GPI at Gemini and SPHERE at the VLT so that lessons learned from those pathfinder high-contrast imagers can be fed back into PFI. Indeed, there is a large overlap between the GPI and PFI development teams.

WIRC (Wide Field InfraRed Camera)

a moderate field near infrared imager configuration fed by NFIRAOS to provide near diffraction-limited images through a variety of filters with high photometric and astrometric accuracy. WIRC is expected to deliver Nyquist sampled images (λ/2D = 0.004 arcsec) over a 30 arcsec diameter field-of-view with wavelength coverage 0.8 – 2.5 µm (goal: 0.6 – 5 µm).

This observatory can be used for tests for the standard model of particle physics. The tests and researches for the Higgs Boson can be conducted here, at Hawaii. From this observatory, formations of galaxies and universe can be studied and their characteristics can be observed. Using the speed of light, from this observatory, we can see distances of 13 billion light years so we can see how galaxies evolved. We can also find other terrestrial planets, where life can exist.
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See the following video from You tube what this project looks like:



                                                                                                                        Article By - M. Santosh
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Friday, 9 August 2013

Mangalyaan - India's Mission to Mars


                                                

Mangalyaan is a Mars Mission by ISRO ( Indian Space Research Organization ) scheduled to be launched in the month of November 2013. India will launch by PSLV Rocket ( Polar Satellite Launch Vehicle ). It is expected to reach into Mars' orbit in the month of September or October 2014. India will have to speed up its process as Mars' moon will be nearest to Earth in 2014 September. For this, India will have to launch in end of 2013 to reach its destination, conserving time and fuel. India is the third Asian Country to attempt Mars Mission, and if it will reach its destination, would become the fourth country to reach Mars. 

Mission Tactics

Launch is scheduled in the month of November 2013 to reach Mars in September 2014. It will be launched using PSLV Rocket in the coast of Bay of Bengal, Sriharikota.

News from ISRO Website





    The main objective of this first Indian mission to Mars is to develop the technologies required for design, planning, management and operations of an interplanetary mission, comprising the following major tasks:
  • Orbit maneuvers to transfer the probe from Earth-centered orbit to heliocentric trajectory and finally capture into Martian orbit.
  • Development of force models and algorithms for orbit and attitude computations and analyses.
  • Navigation in all phases.
  • Maintain the probe in all phases of the mission meeting power, communications, thermal and payload operation requirements.
  • Incorporate autonomous features to handle contingency situations.


  • The 15 kg (33 lb) scientific payload consists of five instruments:
    • Mars Exospheric Neutral Composition Analyzer (MENCA)
    • Methane Sensor For Mars (MSM)
    • Mars Color Camera (MCC)
    • Probe For Infrared Spectroscopy for Mars (PRISM)
    • Lyman-alpha photometer - would measure atomic hydrogen in the Martian atmosphere.

    NASA's Help





    NASA will help mission Mangalyaan in tracking. It's Deep Space Network is currently operating the Curiosity Rover on Mars.   

                                                                                                                            Article by M. Santosh
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