Copernical Team
Tokyo company aims to be 1st business to put lander on moon

A Japanese company is about to attempt what no other private business has done: land on the moon.
Tokyo's ispace company put its own spacecraft into orbit around the moon a month ago.
Using a computational model to study how to land on a planet safely

When a lander descends toward the moon—or a rocky planet, asteroid, or comet—the exhaust plume of the rocket interacts with the surface, causing erosion and kicking up regolith particles. The resulting blanket of dusty debris can create a dangerous brownout effect, limiting visibility and potentially damaging the spacecraft or nearby equipment.
In the journal Physics of Fluids,, researchers from Chungnam National University, the University of Edinburgh, Gyeongsang National University, and the Korea Institute of Science and Technology Information developed a model to describe the interaction between a rocket plume and the surface of a planetary body in near-vacuum conditions.
The future of gravity is MAGIC
The latest European State of the Climate report states that, last year, Europe suffered its hottest summer on record. The heat and a persistent lack of rain caused drought which, at its peak, affected much of the continent. This not only illustrates the reality of climate change, but also how precarious our supply of freshwater can be, even in western Europe where the climate is relatively moderate.
By delivering frequent and accurate gravity measurements, a new space mission called MAGIC, a cooperation between ESA and NASA, will help make the important task of managing our
SOHO chases asteroid's tail
The ESA/NASA SOHO observatory has overturned 14 years of thinking about the strange Sun-skirting ‘rock comet’ known as Phaethon that could reopen the mystery of how the Geminid meteor shower was born.
Viper and T-Rex on double rocket launch
Not one, but two rocket launches with ESA-led experiments are flying to the edge of space just a week apart, providing unique data to researchers eager to learn more about fundamental physics, semiconductor production, the formation of planets and how our immune cells react to spaceflight.
Aerojet Rocketdyne to provide propulsion for three additional Orion spacecraft
Aerojet Rocketdyne recently received a $67 million contract award from Lockheed Martin to provide propulsion systems for the Orion spacecraft that are planned to launch on Artemis missions VI-V3. This new work is an extension of the 2019 Orion Production and Operations Contract (OPOC). The Orion spacecraft recently completed a successful test flight during NASA's Artemis I mission, proving it is Viasat confirms ViaSat-3 Americas set to launch
Viasat Inc. (NASDAQ: VSAT), a global communications company, has confirmed the scheduled launch date for the ViaSat-3 Americas satellite is April 18, 2023 during an approximately one-hour long launch window opening at 7:29pm EDT. The ViaSat-3 satellite will launch aboard a SpaceX Falcon Heavy from Launch Complex 39A (LC-39A) at NASA's Kennedy Space Center in Florida.
The satellite will be Transforming nature conservation with the power of satellite imagery
Satellite imagery is changing conservation as we know it. By being able to take an inventory of the Earth's surface and observe changes, we can begin to understand ecosystem dynamics in an unprecedented level of detail. Satellite imagery is already supplementing traditional conservation research methods, and in some cases is even replacing them. High-quality satellite images can be used to rapid Tracking changes to water, ecosystems, land surface
Merging data from multiple satellites, OPERA can help government agencies, disaster responders, and the public access data about natural and human impacts to the land.
Where are flood waters flowing after major storms? Where are the changes in tree and plant cover after droughts, wildfires, deforestation, or mining? How much did the land move during an earthquake or volcanic eruption? Scie Teasing strange matter from the ordinary
In a unique analysis of experimental data, nuclear physicists have made the first-ever observations of how lambda particles, so-called "strange matter," are produced by a specific process called semi-inclusive deep inelastic scattering (SIDIS). What's more, these data hint that the building blocks of protons, quarks and gluons, are capable of marching through the atomic nucleus in pairs called d 