Curiosity Blog: Sols 4913-4919: Planetary explorers, freewheeling to the Yardang unit!

Curiosity Blog: Sols 4913-4919: Planetary explorers, freewheeling to the Yardang unit!

3 min read

Curiosity Blog: Sols 4913-4919: Planetary explorers, freewheeling to the Yardang unit!

Black-and-white Mars rover image showing a rocky, flat terrain in the foreground with jagged hills and layered buttes in the distance under a hazy sky.
Navcam image from sol 4916 showing the rough drive direction. The yardang unit can be seen as a series of pale coloured hills in the centre of the image, at the very back.
NASA/JPL-Caltech

Written by Catherine O’Connell-Cooper, APXS Strategic Planner and Payload Uplink/Downlink Lead, University of New Brunswick, Canada

Earth planning day: Friday, June 5th, 2026

In a very broad sense, Curiosity has two modes of doing science – one centred around a defined science campaign (such as the recent boxwork campaign) and the other as we move between campaigns. During a science campaign, with a very defined start and end location, every image and every workspace is carefully choregraphed to make sure we hit all of our science goals for the campaign. This is a lot of pressure!

But in between campaigns, the emphasis moves to driving towards the next major campaign. Our next major stop is the yardang unit, a series of intriguing wind sculpted, pale coloured hills which you can just see in the distance in the cover image for this blog. The rover planners (RPs) sometimes make our drives as long as they can and we drive as far as we can go, other times we stop a little short to look at interesting looking workspaces as we go. As part of the APXS team, I loved being part of the boxwork campaign and getting all the information we needed there …  but as a geologist, there is something very special about this kind of exploring, the sense of being a planetary explorer, ambling along to see what the rocks will show us.

So we continue southwards, trundling over laminated bedrock which varies from predominantly pale coloured laminated bedrock to bands with abundant thin flaky, darker coloured, layers and patches. Some of the rocks stick out at strange angles, which make planning drives more challenging. This past week there has been abundant dark layers interbedded with the more dominant pale coloured rock, both in place and in fragments around the workspace. APXS and MAHLI characterized some of this darker material, for example at “Rio Bio Bio” and “Placilla de Caracoles” and some of the paler material at the brushed targets “La Primavera” and “Los Quemados.” ChemCam also analyzed both types of rocks along the way.

We are busily acquiring Mastcam and ChemCam LD-RMI (“Long Distance Remote Micro Imager”) images of everything even remotely interesting – and there are lots and lots of cool features around here. The wide open landscape here allows us to image features from several different angles and distances, such as “Mira Flores,” a small erosional outlier seen from a distance in this image and closer up here. Another great example is the “Kimsa Chata” trough which shows some amazing sedimentary structures, which may help us to determine if this was a desert or a lake or maybe something in between, such as a desert with some water moving through.

The Environmental Theme Group continues to populate each plan with environmental monitoring activities. Activities varied from dust devil monitoring in Gale crater to looking at levels of dust in the skies overhead. The weekend drive is planned to take us further into that drive distance shown in the cover image, to an area where the contrast between dark and light bedrock is more pronounced, and just beyond that, to an area which looks very smooth, with no jutting out blocks. From where we sit today, its impossible to say what it is but that is the fun of exploring – who knows what we will find? Stay tuned to find out over the coming weeks. 

A rover sits on the hilly, orange Martian surface beneath a flat grey sky, surrounded by chunks of rock.
NASA’s Curiosity rover at the base of Mount Sharp
NASA/JPL-Caltech/MSSS

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Expedition 74 Works Scientific Installs, Suit Prep Ahead of Canadarm2 Repair Spacewalk

Expedition 74 Works Scientific Installs, Suit Prep Ahead of Canadarm2 Repair Spacewalk

The aurora australis crowns Earth’s atmosphere in this photograph taken at approximately 3:13 a.m. local time from the International Space Station as it orbited 269 miles above the Indian Ocean east of the French Southern and Antarctic Lands. In the foreground, the Canadarm2 robotic arm extends from a power and data grapple fixture attached to the Harmony module.
The aurora australis crowns Earth’s atmosphere above the Indian Ocean as the Canadarm2 robotic arm extends from a power and data grapple fixture attached to the Harmony module.
NASA/Chris Williams

Scientific hardware installations and biomedical monitoring topped the research schedule aboard the International Space Station on Wednesday. The Expedition 74 crew members also adjusted a spacesuit to prepare for a spacewalk and explored space physics to round out their day.

A series of shoebox-sized CubeSats will soon be deployed outside the Kibo laboratory module into Earth orbit for public and private research. One of the satellites, Hokushin-1 CubeSat, will test space technologies such as radio frequency, propulsion, and solar arrays. NASA flight engineer Jack Hathaway finished installing a small satellite orbital deployer, packed with the CubeSats, into Kibo’s airlock where it will soon be placed in the vacuum of space and grappled by the Japanese robotic arm. The deployer will be maneuvered with the robotic arm and positioned away from the orbital outpost to safely release the tiny satellites into Earth orbit.

Onboard the orbital outpost are a variety of research freezers—large, small, portable, and permanent—that house and preserve station research samples for analysis both on Earth and in space. One of them, a smaller glovebox freezer, is being installed inside Kibo’s Life Science Glovebox (LSG) by NASA flight engineer Jessica Meir for upcoming experiment operations. The freezer’s location inside the LSG allows the samples to be stowed and frozen immediately after processing to prevent degradation and preserve integrity during sensitive biology research.

Meir also assisted flight engineer Sophie Adenot of ESA (European Space Agency) as she set up wearable devices for a pair of biomedical tests on Wednesday. Adenot first measured her blood pressure to calibrate the PhysioTool technology demonstration gear. Next, she wore head and body sensors that measured her brain oxygen and blood flow levels as she performed cognitive and mental tasks on a computer. Researchers are testing the portable device onboard the station to potentially monitor crew health on missions to the Moon, Mars, and beyond.

Meir also had time to help NASA flight engineer Chris Williams pack cargo inside a SpaceX Dragon cargo spacecraft that will undock from the Harmony module’s forward port and soon return to Earth. Williams then maneuvered into the Quest airlock and adjusted a spacesuit’s legs, arms, and helmet, then ensured the suit’s switches and valves were correctly configured ahead of an upcoming spacewalk.

On May 27, during routine operations of the International Space Station’s Canadarm2, the system demonstrated an elevated motor current in a wrist joint and arm motion did not occur as expected. NASA worked alongside CSA (Canadian Space Agency) to understand the issue and determined a spacewalk will be required to replace the joint using a spare already aboard the orbital complex. The Canadarm2, which is designed to be repaired in orbit, is in a safe configuration and standard operations using the arm have been paused. In the coming weeks, NASA will host a news conference to discuss the repair and preview the planned Tuesday, June 30 spacewalk. NASA will share more on the spacewalkers closer to the activity.

Roscosmos cosmonauts Sergey Kud-Sverchkov and Sergei Mikaev joined each other and explored space physics in the Zvezda service module. The duo observed how two different sized spheres drift freely in microgravity with no pushing movement from the crew. Results may lead to the design of newer space tools, improved robotics, and a deeper understanding of crew motion. Roscosmos flight engineer Andreu Fedyaev focused primarily on maintenance testing computer operations, cleaning ventilation systems, and transferring water between station tanks.

Finally, the space station is orbiting higher today after the Progress 95 cargo spacecraft fired its thrusters for over eight minutes early Wednesday raising its altitude by 1.9 miles. This adjusts the orbital outpost’s altitude ahead of the launch and docking of the Soyuz MS-29 crew spacecraft planned for mid-July.

Learn more about station activities by following the space station blog, @space_stationon X, as well as the ISS Facebook and ISS Instagram accounts.

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Mark A. Garcia

NASA Awards Contract for Construction Services in California

NASA Awards Contract for Construction Services in California

NASA insignia.
Credit: NASA

NASA has selected multiple small businesses for the Western Regional Multiple Award Construction Contract, which supports a broad range of facility enhancement, modernization, and sustainment work at NASA’s Armstrong Flight Research Center in Edwards, California, NASA’s Ames Research Center in California’s Silicon Valley, and other federal agencies in the region.

The contract provides general construction, modification, maintenance and repair, and demolition services, as well as new construction of buildings and facilities that incorporate Leadership in Energy and Environmental Design practices and building information modeling to support efficient and sustainable project execution.

The indefinite-delivery/indefinite-quantity, firm-fixed-price contract is a follow-on to the agency’s previous regional construction contract and has a potential value of $450 million over a five‑year period.

Contract awardees are:

  • Abide International Inc.
  • Able Heating and Air Conditioning
  • Anderson Burton Construction Inc.
  • Anna Lisa Luna Construction
  • Barkley Andross Corporation
  • Bibro Construction Company Inc.
  • CM Construction Services
  • CMS Construction Inc.
  • FASONE
  • G‑1 Lead Builders JV LLC
  • Gideon USA
  • Good‑men Roofing & Construction Inc.
  • Groundlevel Construction Inc.
  • IPI Construction Inc.
  • Innovative Project Solutions Inc.
  • Ironwood Commercial Builders Inc.
  • J.I. Garcia Construction Inc.
  • JG Contracting
  • Lead Builders Inc.
  • Martinez Construction Services
  • MX Construction Inc.
  • OCS Construction Services Inc.
  • Patricia I. Romero Inc., doing business as Pacific West Builders
  • Gustav Keoni, doing business as Precision Construction
  • Prime MIK JV LLC
  • Spectrum Builders and Renovations Inc.
  • Sea Pac Engineering Inc.
  • Sergent Construction
  • Souza Construction Inc.
  • TLI Construction Inc.

For more information about NASA and agency programs, visit:

https://www.nasa.gov

-end-

Jennifer Dooren / Jessica Taveau
Headquarters, Washington
202-358-1600
jennifer.m.dooren@nasa.gov / jessica.c.taveau@nasa.gov

Dede Dinius
Armstrong Flight Research Center, Edwards, Calif.
661-276-5701
darin.l.dinius@nasa.gov

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Jessica Taveau

NASA, NOAA to Hold Joint Session at 23rd Symposium on Operational Environmental Satellite Systems

NASA, NOAA to Hold Joint Session at 23rd Symposium on Operational Environmental Satellite Systems

Credit: AMS

Submit your abstract for “Advancing Weather and Environmental Science Through NASA and NOAA Commercial Satellite Data Programs,” a joint session hosted by NASA’s Commercial Satellite Data Acquisition (CSDA) program, in partnership with the NOAA National Environmental Satellite, Data, and Information Service (NESDIS) Commercial Data Program (CDP).

The session is part of the 23rd Symposium on Operational Environmental Satellite Systems, which will take place at the 2027 American Meteorological Society (AMS) Annual Meeting January 10-14 in Denver, Colorado. It will examine the growing capabilities of commercial Earth observation providers that are creating new opportunities to advance weather research, operational forecasting, and environmental science applications.

NASA’s CSDA program and NESDIS’s CDP collaborate to expand federal access to commercial satellite data and accelerate its use in both research and operational applications.

The CSDA program supports the scientific community by evaluating and acquiring diverse commercial datasets, including optical, Synthetic Aperture Radar, Global Navigation Satellite System Radio Occultation and Reflectometry, methane, precipitation, and Digital Elevation/Terrain Models for modeling, hazard monitoring, climate studies, and applied research.

Similarly, the CDP operationalizes commercial space-based environmental data, with demonstrated impacts from assimilated observations in weather forecasting and space weather applications. It also conducts pilot projects and transitions the piloted data to operations.

Together, the CSDA and CDP strengthen the nation’s weather enterprise by enabling innovative research, closing observational gaps, and integrating commercial data into real-world forecasting and decision support applications.

To submit an abstract or for additional information about the abstract submission process, visit the symposium’s website.

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NASA Equips Astronauts, Industry with Robotic Intelligence 

NASA Equips Astronauts, Industry with Robotic Intelligence 

2 min read

Preparations for Next Moonwalk Simulations Underway (and Underwater)

In the Integrated Mobile Evaluation Testbed for Robotics Operations facility at Johnson Space Center, PickNik robotic control software proved its prowess in tasks like passing cargo transfer bags through a hatch and placing them in storage bins, in anticipation of work NASA would like robots to carry out during the later Artemis missions.
Credit: NASA

As NASA plans long-term missions on the Moon, the agency could use robots to perform routine tasks, allowing crew members to dedicate more time to science and exploration. However, robotic motion control requires complex technology and advances in features like robotic decision-making and object recognition.

These are the challenges a Boulder, Colorado-based robotics company is teaming up with NASA to overcome. 

PickNik Inc. recently worked with Shaun Azimi, who leads the Dexterous Robotics team at NASA’s Johnson Space Center in Houston, and other agency roboticists. The team tested software that enabled a robotic arm to recognize a spacecraft hatch, then turn the latch, grasp the handle, and open the door. The arm then was able to transfer cargo bags between the hatch and a bin. 

The work was carried out in NASA Johnson’s new Integrated Mobile Evaluation Testbed for Robotics Operations with funding from NASA’s Small Business Innovation Research program. 

PickNik designed and refined the robotic software, called MoveIt Pro, with support from early government investments. Commercially released in 2023, MoveIt Pro has found a significant customer base. 

Automotive company BMW is using the software on its robotic assembly lines. A company called Lightspeed is using MoveIt Pro to program huge robotic arms that build modular “panels” for constructing affordable housing. Another company, known as Hivebotics, used MoveIt Pro to automate its flagship product, a cleaning robot.

Ezra Brooks, principal software engineer at PickNik, said the 35-person company might not have a product without NASA’s early support. Robotic software requires years of research and development to refine algorithms and create a commercial product. NASA enabled much of that foundational work. 

NASA’s technological advancements unlock key capabilities for missions at the Moon and beyond while benefiting commercial industries on Earth. For 50 years, NASA has documented the everyday benefits of space technology through the agency’s Spinoff publication. To learn more about the project, visit: https://go.nasa.gov/49CNSi7

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Andrew Wagner