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Space Connect

Space Centre Australia launches new airborne science program at NASA Wallops Splash down! Artemis II returns safely as NASA edges closer to next lunar mission Last chance to enter the Australian Space Awards 2026 Exclusive: AROSE director says Artemis will turbocharge industry Podcast: Inside Virgin’s plan to launch rockets from 747s Comment: Banning anti-sat tests an opportunity for Australia Pictures: Queensland floods from above One computer, many radars: Automated tech for space Launch application fees slashed, new strategy for ‘cohesive’ space industry James Webb reaches resting place of Lagrange Point 2 About us
First James Webb images to drop Wednesday morning
Adam Thorn · 2022-07-10 · via Space Connect

Carina Nebula by Harel Boren. (WikiCommons)

The agency also announced the pictures will show:

  • SMACS 0723;
  • WASP-96b;
  • Southern Ring Nebula;
  • Stephan’s Quintet; and
  • Carina Nebula.

The telescope – known as the spiritual successor to Hubble – launched on Christmas Day in 2021 and has completed six months of preparatory work including calibrating its instruments and aligning its mirrors.  

NASA previously said its list of targets had been pre-selected and prioritised by an international committee.

Australians will be able to follow the photos unveiling via this link, with the reveal taking place at 10:30am (EDT) on Tuesday, 12 July from the Goddard Space Flight Center in Greenbelt, Maryland. 

That equates to 12:30am on Wednesday morning in Sydney, Melbourne, Hobart and Brisbane; half an hour earlier in Adelaide and Darwin; and at 10:30pm on Tuesday night in Perth.

The targets will include Carina Nebula, one of the brightest nebulae in space; WASP-96b, a giant planet composed of gas outside our solar system; and Stephan’s Quintet, the first compact galaxy group discovered in 1877.

Webb program scientist Eric Smith, who has been on the project since the mid-1990s, said he was excited for the big reveal.

“Webb joins existing great observatories, like NASA’s Hubble Space Telescope and Chandra X-ray Observatory, giving scientists ‘eyes’ from Webb’s infrared vision through the visible, ultraviolet part of the spectrum to X-rays. A fantastic new era is upon us as these powerful facilities complement one another to investigate the cosmos,” he said.

“All the facilities we currently have, and those in the planning stage, arose from questions ignited by astronomers seeking to answer age-old questions about our universe using previous observatories.

“What questions might Webb observations raise now that will turn our curiosity to things unimagined? We will soon begin to know how Webb will transform our understanding of the universe.”

In May, Space Connect reported how NASA released an early preparatory image that showed the observatory’s enhanced ability to capture the universe.

NASA compared Webbs’ glimpse of the large Magellanic Clouds (below) – using the Mid-Infrared Instrument (MIRI) – besides a picture of the same satellite galaxy in the Milky Way, taken by the agency’s Spitzer Space Telescope’s Infrared Array Camera.

Launched in 2003 and concluding operations in 2020, Spitzer was one of NASA’s “Great Observatories”, and was the first telescope to provide high-resolution images of the near and mid-infrared universe.

But with a significantly larger primary mirror, 6.5 metres approximately, and improved detectors, Webb’s cameras can capture the infrared sky with “improved clarity”, NASA said.

MIRI will see light in the mid-infrared region of the electromagnetic spectrum in space, with wavelengths longer than our own eyes can see, and provide new details of distant galaxies and newly forming stars.

“This is a really nice science example of what Webb will do for us in the coming years,” Chris Evans, the telescope’s project scientist at the European Space Agency said during a livestream.

“We’ve done a lot of studies of star and planet formation in our own galaxy, but here we’re looking at it in the Magellanic Clouds, so small external galaxies, where they’re chemically less evolved than our own Milky Way.

“So, this gives us a chance to look at the processes of star and planet formation ... in a very different environment to our own galaxy.”

James Webb is a collaboration between NASA, the European Space Agency, the Canadian Space Agency and French launch provider Arianespace.

Its mission – dubbed VA256 – has been in the making for 14 years and it’s hoped Webb will be able to reveal what the universe looked like almost 14 billion years ago.

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Adam Thorn

Adam Thorn

Adam is a journalist who has worked for more than 40 prestigious media brands in the UK and Australia. Since 2005, his varied career has included stints as a reporter, copy editor, feature writer and editor for publications as diverse as Fleet Street newspaper The Sunday Times, fashion bible Jones, media and marketing website Mumbrella as well as lifestyle magazines such as GQ, Woman’s Weekly, Men’s Health and Loaded. He joined Momentum Media in early 2020 and currently writes for Australian Aviation and World of Aviation.