The Apogee
The Apogee
  • Home
  • From Courts
  • Global
  • Technology
  • Business
  • Law
  • Judgements
    • High Court
    • Supreme Court
  • Achievers
  • Video
  • More
    • Interviews
    • Opinion/Features
    • Research
    • Science
    • Environs
    • Health
  • test-series
  1. Home
  2. Technology
  3. Scientists find evidence of solar-driven change on Moon
 Scientists find evidence of solar-driven change on Moon
As NASA aims to land the first woman and next man on the Moon by 2024, the agency is looking to the US universities for lunar-focused research to bring about advancements in onsite resource utilisation and sustainable power solutions.
Technology

Scientists find evidence of solar-driven change on Moon

by Newsdesk August 23, 2021

AA

New York, Aug 23: Solar radiation could be a more important source of tiny lunar iron nanoparticles than previously thought, scientists have found.

Asteroid impacts and solar radiation affect the moon in unique ways because it lacks the protective magnetic field and atmosphere that protect us here on Earth. Both asteroids and solar radiation break down lunar rocks and soil, forming iron nanoparticles (some smaller, some larger) that are detectable from instruments on satellites orbiting the moon.

A team led by Northern Arizona University (NAU) scientists used data from National Aeronautics and Space Administration (NASA) and Japan Aerospace Exploration Agency (JAXA) spacecraft to understand how quickly iron nanoparticles form on the moon over time. Their findings have recently been published in the journal Geophysical Research Letters.

“We have thought for a long time that the solar wind has a small effect on lunar surface evolution, when in fact it may be the most important process producing iron nanoparticles,” said doctoral candidate Christian J Tai Udovicic, at NAU’s Department of Astronomy and Planetary Science.

“Since iron absorbs a lot of light, very small amounts of these particles can be detected from very far away — making them a great indicator of change on the Moon,” Udovicic added.

Surprisingly, the smaller iron nanoparticles seemed to form at a similar rate as radiation damage in samples returned from the Apollo missions to the moon, a hint that the sun has a strong influence in their formation.

“This study shows that the solar radiation could have a much larger influence in active change on the moon than previously thought, not only darkening its surface, but it might also create small quantities of water usable in future missions,” Udovicic said.

As NASA prepares to land the first woman and the next man on the surface of the moon by 2024 as part of the Artemis mission, understanding the solar radiation environment and possible resources on the moon are critical.

 

IANS

Previous post
Next post

Latest Post

From Courts

Nagpur Bench of Bombay High Court quashes false rape and dowry case against would be husband

May 13, 2024
From Courts

SC asks Patanjali to place on record IMA chief’s interview terming apex court observations as ‘unfortunate’

April 30, 2024
From Courts

Delhi HC restrains Ashneer Grover from creating third party rights in BharatPe shares

April 30, 2024
Global

AstraZeneca admits Covishield jab raises TTS risk. Should you be worried?

April 30, 2024
Copyright © 2026 Qoxag. All Right Reserved.
Go to mobile version