Showing posts with label moon. Show all posts
Showing posts with label moon. Show all posts

Wednesday, 14 August 2019

How will Chandrayaan 2 study the moon? - Pragnya IAS Academy - News Analysis.

How will Chandrayaan 2 study the moon?.

Why is India’s first attempt at a powered lunar landing important?.

The story so far: When Chandrayaan 1, India’s first moon mission was launched on October 22, 2008, from Sriharikota, using the Polar Satellite Launch Vehicle (PSLV), India became the fourth country to plant its flag on the lunar surface. On the moon, the mission conclusively detected traces of water along with magnesium, aluminium and silicon. Now, close to a decade later, India will launch its second lunar mission, Chandrayaan 2, on July 15, 2019, again from Sriharikota, using the Geosynchronous Satellite Launch Vehicle (GSLV) Mark III rocket. The launch falls a day short of the 50th anniversary of the launch of the American mission Apollo 11 which took humans to the moon and back. The first moon landing occurred on July 20, 1969, on the Apollo 11 mission which was launched on July 16.
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How will the launch work?
The GSLV Mark III rocket will first launch the spacecraft into an Earth Parking Orbit (170 km X 40,400 km). Then the height of the orbit will be enhanced until the spacecraft can reach out to the Lunar Transfer Trajectory. On entering the moon’s sphere of influence, on-board thrusters will slow down the spacecraft, allowing it to be captured by the moon. Then it will be eased into a circular orbit (100 km X 100 km). From this orbit, the lander and rover will separate as a unit from the orbiter, and, through a series of braking mechanisms, the duo will “soft-land” on the moon, on September 6, 2019.
What is special about Chandrayaan 2?
Chandrayaan 2 will be the first mission to reach and study the south pole of the moon. It is made up of an orbiter, a lander named ‘Vikram’, after Vikram A. Sarabhai, the founding father of space science research in India, and a rover named ‘Pragyan’, which means ‘wisdom’. At about 3,877 kg, the spacecraft weighs nearly four times its predecessor, Chandrayaan 1. It will be launched by the GSLV Mark III, the Indian Space Research Organisation’s (ISRO’s) most powerful and massive launcher. While Chandrayaan 1 sent its lander crashing into the moon, Chandrayaan 2 will use rocket technology to soft land ‘Vikram’, carrying its ‘Pragyan’ rover in a suitable high plain on the lunar surface, between two craters, Manzinus-C and Simpelius N, at a latitude of about 70º South. This landing is scheduled for September 6 this year. The total cost of the project is about ₹978 crore. The lander-rover combo has an expected lifetime of 14 days, while the orbiter will continue for a year.
How does the ‘Pragyan’ rover operate and what determines its lifetime?
The time taken for the moon to complete one rotation on its axis is approximately equal to 29.5 earth days. This is also equal to the time it takes to complete one orbit around the earth. That is why the same side always faces the earth. But because it takes 29.5 earth days to complete one rotation, every point on its surface experiences daylight for about half the time, or a little more than 14 days at a stretch. Moon days are nearly 14 earth days long. Note that the landing is scheduled for September 6, when we will see the first quarter of the moon. This is a date when the lander will land at a point that is facing the earth and which has started receiving sunlight.
This point will receive light for nearly another fortnight which will match the expected lifetime of the lander-rover combo. Since the ‘Vikram’ lander and ‘Pragyan’ rover are powered by solar energy, they will be energised during this period by sunlight on the moon. Once night falls, this energy will not be available as they are plunged into a dark and cold -180º Celsius environment. If the lander-rover duo should kickstart after another half-rotation when day breaks once again, it will be a bonus for the ISRO.
The mission is not designed to survive this extreme cold, unlike some U.S. and Chinese missions which survived on the “dark” side of the moon using special sources of warmth.
How will the mission study the moon?
Using the Terrain Mapping Camera 2 which is on board the orbiter, the mission will produce images of the moon remotely from a 100 km lunar polar orbit. While the moon rotates about its axis, along its east-west direction, say, the lunar polar orbit will be in the perpendicular direction, along the lunar north-south direction. Thus, as the moon rotates, the orbiter gets a view of its entire surface from overhead. This data collected by the orbiter will be used to produce a 3D image of the moon’s terrain. This is just one of the eight instruments, or payloads, on board the orbiter. The lander carries three such payloads, some of which will measure the electron density and temperature near the lunar surface; the vertical temperature gradient, and seismicity around the landing site.
The rover will carry two instruments or payloads which will collect and test samples from the moon’s surface to identify what elements they contain. The rover moves on six wheels and once let down on the moon, can travel about 500 m from the lander.
What is the success rate of “soft-landing” on the moon?
There have been 38 attempts so far at “soft-landing” on the moon, with a success rate of 52% according to the ISRO website.
Why should we have this mission? Why should we study the moon?
The moon offers a pristine environment to study. It is also closer than other celestial bodies. Understanding how it formed and evolved can help us better understand the solar system and even earth itself. With space travel taking shape and exoplanets being discovered everyday, learning more about earth’s celestial neighbour can help in advanced missions. Finally, it is a piece of the larger puzzle as to how the solar system and its planets have evolved.


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How will Chandrayaan 2 study the moon?.

Thursday, 25 October 2018

How Chandrayaan-2 will perform its jobs once it lands on the moon - Pragnya IAS Academy - News Analysis.

How Chandrayaan-2 will perform its jobs once it lands on the moon.

India launched its first lunar probe in October 2008, and it is setting up the stage for its second coming with Chandrayaan-2 liftoff. The mission will be ISRO's attempt to get a more delicate and close up look at the lunar surface, the launch of which is eagerly awaited.

Unlike the first mission which carried only Chandrayaan orbiter and the Moon Impact probe, this mission will have a lander and a rover apart from the orbiter, which has been developed by Ahmedabad-based Physical Research Laboratory (PRL).
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Equipment attached to orbiter: Solar X-ray monitor ::
"There are three payloads developed by the PRL for Chandrayaan-2. The orbiter will have a solar X-ray monitor developed by PRL. It will monitor x-rays coming from the Sun and X-rays being generated on the surface of the moon," said PRL Director Dr Anil Bhardwaj, speaking to reporters on the sidelines of the 15th International Symposium on Equatorial Aeronomy, organised at the main PRL campus.
PRL, a unit of Department of Space, was founded in 1947.
Equipment attached to lander: ChaSTE ::
"On the lander, there will be Chandra's Surface Thermophysical Experiment (ChaSTE). This is a probe which will measure the temperature beneath the surface by getting inside the surface of the moon. It will do so after the lander lands on the moon," the director said, adding that this equipment will also be developed by PRL.
(ChaSTE) is one of the science experiments proposed to conduct in lunar surface in the Chandrayaan-2 mission.
Equipment attached to rover: Alpha Particle X-Ray Spectrometer ::
For the rover, which will come out from the lander and meant to roam on the lunar surface, PRL has developed an instrument called 'Alpha Particle X-Ray Spectrometer', said Bhardwaj.
"This instrument is designed to identify various elements and chemical compounds on the surface of the moon," he added.
Things you must know about Chandrayaan-2 ::
According to reports, Chandrayaan-2 is likely to be launched in January-March window in 2019. However, exact dates are not yet released.
- It will take one or two months for the orbiter to reach its designated place around the moon.
- After the orbiter reaches its designated place in the lunar orbit, the lander will depart from it along with the rover.
- Following a controlled fall, the lander will soft land on the lunar surface at the prescribed site and place the rover on the surface.
- The rover will spend 14 days on the lunar surface covering a distance of 150-200 km on the moon.
- The instruments on the rover will observe the lunar surface when it will walk on the moon.
- These instruments will also perform an on-site chemical investigation.
- The data will be sent back to earth through the Chandrayaan-2 orbiter (rover will send the data to the orbiter and the orbiter will send it back to earth) to analyse the lunar soil
Aiming for the sun with ISRO's Aditya-L1 mission ::
PRL is also developing instruments for 'Aditya-L1 mission', which is aimed at studying the Sun through a satellite placed in the halo orbit around the Lagrangian point 1 (L1) of the Sun-Earth system, said Bharadwaj.
An instrument for the measurement of charged particles has also been developed, he said, adding, "With this instrument, we will be able to study solar winds, charged particles and its energy range."
As per ISRO (Indian Space Research Organisation) website, the satellite will be inserted in a halo orbit around the L1, which is 1.5 million km from the earth.
The project is approved and the satellite will be launched during 2019 2020 time frame by PSLV-XL from Sriharikota. (Source:defencenews.in)


The above Article can also be read using the link below:

How Chandrayaan-2 will perform its jobs once it lands on the moon.

Wednesday, 22 August 2018

CHANDRAYAAN-I DATA CONFIRMS PRESENCE OF ICE ON MOON: NASA - Pragnya IAS Academy - News Analysis.

CHANDRAYAAN-I DATA CONFIRMS PRESENCE OF ICE ON MOON: NASA.

Scientists have confirmed the presence of frozen water deposits in the darkest and coldest parts of the Moon's polar regions using data from the Chandrayaan-I spacecraft, that was launched by India 10 years ago, NASA said today.

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With enough ice sitting at the surface -- within the top few millimetres -- water would possibly be accessible as a resource for future expeditions to explore and even stay on the Moon, and potentially easier to access than the water detected beneath the Moon's surface.
The ice deposits are patchily distributed and could possibly be ancient, according to the study published in the journal PNAS.
At the southern pole, most of the ice is concentrated at lunar craters, while the northern pole's ice is more widely, but sparsely spread.
Scientists used data from NASA's Moon Mineralogy Mapper (M3) instrument to identify three specific signatures that definitively prove there is water ice at the surface of the Moon.
M3, aboard the Chandrayaan-1 spacecraft, launched in 2008 by the Indian Space Research Organisation (ISRO), was uniquely equipped to confirm the presence of solid ice on the Moon.
It collected data that not only picked up the reflective properties we would expect from ice, but was able to directly measure the distinctive way its molecules absorb infrared light, so it can differentiate between liquid water or vapour and solid ice.
Most of the newfound water ice lies in the shadows of craters near the poles, where the warmest temperatures never reach above minus 156 degrees Celsius.
Due to the very small tilt of the Moon's rotation axis, sunlight never reaches these regions.
Previous observations indirectly found possible signs of surface ice at the lunar south pole, but these could have been explained by other phenomena, such as unusually reflective lunar soil.
Learning more about this ice, how it got there, and how it interacts with the larger lunar environment will be a key mission focus for NASA and commercial partners, as humans endeavour to return to and explore the Moon.
NASA's Jet Propulsion Laboratory designed and built the moon mineralogy mapper instrument and was home to its project manager.
The Chandrayaan-I spacecraft, India's first lunar probe, started suffering from several technical issues and stopped sending radio signals on August 28, 2009. Shortly after this, ISRO officially declared the mission over.
The probe, which was intended to operate for two years, achieved 95 per cent of its planned objectives in under a year of its space journey.
In 2016, NASA used ground-based radar systems to relocate Chandrayaan-1 in its lunar orbit. Repeated observations over the next three months allowed a precise determination of its current orbit. (Source: indiadefensenews.in)

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CHANDRAYAAN-I DATA CONFIRMS PRESENCE OF ICE ON MOON: NASA.

Monday, 5 February 2018

Isro plans landing near moon’s south pole with Chandrayaan-2 Pragnya IAS Acdemy - News Analysis

Isro plans landing near moon’s south pole with Chandrayaan-2

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HIGHLIGHTS
• This will be the first-ever mission to soft land near the moon’s south pole, which poses a number of challenges.
• The launch could take place either in the first quarter of 2018 or second half.
With the much-awaited Chandrayaan-2 mission, India's second flight to the moon, Isro is attempting to pull off a daredevil manoeuvre. It will be the first-ever mission to soft land near the moon's south pole, which poses a number of challenges.
"We have identified two locations and will be choosing one. No other moon mission has landed in this area," said former Isro chief AS Kiran Kumar on Saturday, who retired as Isro chairman last month.
In preparation for this touchdown, landing simulations are currently on at Isro's Liquid Propulsion System Centre at Mahendra Giri in Tamil Nadu. The exercise involves a prototype of the lander simulating a soft landing from a height of 70-80 metres.
He said Chandrayaan-2's flight hardware was getting ready and the launch could take place either in the first quarter of 2018 or second half. He said Chandrayaan-2's flight hardware was getting ready and the launch could take place either in the first quarter of 2018 or second half. The rocket which will fly Chandrayaan-2 will be the Geosynchronous Satellite Launch Vehicle Mark II.(Source: The Times of India)


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Isro plans landing near moon’s south pole with Chandrayaan-2