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Today's Headlines - 18 August 2023
Chandrayaan-3
lander separates from propulsion module
GS Paper - 3 (Space Technology)

The Chandrayaan-3 lander, which carries within it the 26kh rover, separated from the propulsion module on 17 August 2023 for its onward journey to the surface of the moon on 23 August 2023. The lander module will descend further down from the current near-circular orbit of 153 x 163 km after a de-boosting manoeuvre.

What is Propulsion module

The propulsion module, meanwhile, will continue orbiting the moon and studying the spectral signatures of Earth using a payload that was tacked on to the mission in addition to the science experiments carried on board its predecessor.
By studying Earth from the moon, the Spectro-polarimetry of Habitable Planet Earth (SHAPE) will help scientists understand the markers of life on exoplanets.
Although the planned mission life for the propulsion module – which was added to the mission in place of the orbiter to help carry the lander rover to the moon – was three to six months, it is likely to keep functioning beyond that. Meanwhile, the Propulsion Module continues its journey in the current orbit for months/years.
Since the orbiter of Chandrayaan-2 had functioned normally and the instruments on board carried out all the observations and experiments as intended, there was no need to include an orbiter component to Chandrayaan-3.
More about lander module

However, the lander module still needed to be transported to lunar orbit, and the propulsion module had this limited task to perform.
The Chandrayaan-3 mission has been designed to achieve what Chandrayaan-2 could not – soft landing and roving on the surface of the moon.
After the separation, the instruments on board the lander, including the three scientific payloads, will be activated and tested to check whether everything is functioning normally.
The lander will carry out two orbit-reduction manoeuvres on its own, first getting into the circular 100 x 100 km orbit, and then further closer to the moon in the 100 x 30 km orbit.
This powered descent was described as “fifteen minutes of terror” by the previous Isro chief K Sivan.
Flashback

Chandrayaan-2
had crash-landed just kilometres from its intended landing spot due to flaws in the algorithm of the onboard navigation software.
The software did not provide for an immediate error-correction step when the engines produced a higher-than-intended thrust.
The algorithm was designed to make the corrections after performing a few other urgent tasks. But this allowed the errors to accumulate and become unmanageable.

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Today's Headlines - 24 August 2023
Vikram
lander creates history
GS Paper - 3 (Space Technology)

India became the first country to touch down on the lunar South Pole on 23 August 2023 as billions watched from around the globe. The Chandrayaan-3 lander - designed to deploy a smaller, 26-kg lunar rover - landed on the surface of the moon, marking a giant leap in India’s spacefaring journey.The Moon has captivated human curiosity for centuries, and with each new mission.

What is the Moon's geological history and evolution?

The Moon is estimated to be about 4.5 billion years old, roughly the same age as the Earth.
The leading theory about the Moon's formation suggests that a Mars-sized celestial body collided with the young Earth, and the debris from this collision eventually coalesced to form the lunar body.
However, current geological evidence from the Moon suggests that it may be younger by just 60 million years compared to Earth.
How much do things weigh on the Moon?

The Moon's gravitational pull is much weaker than Earth's, approximately one-sixth of Earth's gravity.
As a result, objects on the Moon weigh significantly less than they do on Earth. This is due to the Moon's smaller size and mass.
For example, a person weighing 68 kilograms on the Earth would weigh only over 11 kg on the Moon.
Why do Indian scientists want to land on the Moon's South Pole?

The lunar South Pole has become a focal point for exploration due to its unique features and potential scientific value.
It is believed to host a vast reservoir of water ice in permanently shadowed regions. The presence of water is of immense significance for future space exploration, as it can be converted into resources such as drinking water, oxygen and hydrogen for rocket fuel.
Also, the permanently sunlit area in the region has a temperature of around minus 50 to 10 degrees Celsius, which provides better chemical conditions for the electronics onboard the rover and lander to work properly.
What is in the lunar South Pole?

The terrain and geology at the Moon's South Pole are distinct from other regions. Permanently shadowed craters provide extremely cold conditions that allow water ice to accumulate and persist.
The unique geography of the South Pole also creates regions of perpetual sunlight, which can be harnessed for solar power.
The terrain varies from rugged landscapes to relatively flat plains, offering a diverse range of scientific opportunities.
Why is a region of the lunar South Pole permanently shadowed?

This depends on the Moon's geology. The Moon's axis is only slightly tilted relative to its orbit around the Earth.
This results in certain areas near the poles being in permanent shadow. These shadows create extremely cold environments where temperatures can plummet to very low levels.
These frigid conditions are conducive to preserving water ice for billions of years.

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Today's Headlines - 08 September 2023
JAXA successful launch
lander SLIM on Moon
GS Paper - 3 (Space Technology)

Indian Space Research Organisation (ISRO) congratulated Japan Aerospace Exploration Agency (JAXA) on 7 September 2023 for the successful launch of the Smart Lander for Investigating Moon (SLIM).

More about SLIM

Japan launched its H-IIA rocket on 7 September 2023 carrying the JAXA Moon lander which is scheduled to land on the Moon early next year.
The rocket carried an X-ray telescope called the X-Ray Imaging and Spectroscopy Mission (XRISM), which will study the origins of the universe. XRISM will measure the composition and speed of intergalactic space.
This space mission aims to help scientists to understand celestial object formation and the universe's creation.
This mission was conducted in collaboration with NASA, and it will involve studying light at various wavelengths, temperature assessments, and analysing the shapes and brightness of celestial objects.
Onboard the rocket is JAXA's Smart Lander for Investigating Moon (SLIM) spacecraft also known as the "Moon Sniper" for its precision landing technology.
This launch follows India's recent achievement of becoming the fourth nation to successfully land a spacecraft on the Moon with its Chandrayaan-3 mission. The launch comes two weeks after India successfully landed Vikram lander on the lunar South Pole.
Japan had previously experienced two unsuccessful attempts to land on the Moon. The first resulted in a loss of contact with a lander carried by a NASA rocket, and the second, an attempt by a Japanese start-up, ended in a crash during the lunar descent in April.

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