Progress 93 Cargo Craft Lifts Off to Resupply Station Crew

Progress 93 Cargo Craft Lifts Off to Resupply Station Crew

The Progress 93 cargo craft launches on time from the Baikonur Cosmodrome in Kazakhstan with three tons of food, fuel, and supplies to resupply the Exp 73 crew aboard the orbital outpost.
The Progress 93 cargo craft launches on time from the Baikonur Cosmodrome in Kazakhstan with three tons of food, fuel, and supplies to resupply the Expedition 73 crew aboard the orbital outpost.
NASA+

The unpiloted Roscosmos Progress 93 spacecraft is safely in orbit, headed for the International Space Station following its launch at 11:54 a.m. EDT (8:54 p.m. Baikonur time) on a Soyuz rocket from the Baikonur Cosmodrome in Kazakhstan.

After a two-day, in-orbit journey to the station, the spacecraft will dock autonomously to the aft port of the station’s Zvezda module at approximately 1:27 p.m. on Saturday, Sept. 13. NASA’s rendezvous and docking coverage will begin at 12:30 p.m. on NASA+, Amazon Prime, and more. Learn how to watch NASA content through a variety of platforms, including social media.

The spacecraft is delivering about three tons of food, fuel, and supplies to the space station.

  Learn more about station activities by following @NASASpaceOps and @space_station on X, as well as the International Space Station’s Facebook and Instagram accounts.  

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Mark A. Garcia

Progress 93 Cargo Craft Lifts Off to Resupply Station Crew

Progress 93 Cargo Craft Lifts Off to Resupply Station Crew

The Progress 93 cargo craft launches on time from the Baikonur Cosmodrome in Kazakhstan with three tons of food, fuel, and supplies to resupply the Exp 73 crew aboard the orbital outpost.
The Progress 93 cargo craft launches on time from the Baikonur Cosmodrome in Kazakhstan with three tons of food, fuel, and supplies to resupply the Expedition 73 crew aboard the orbital outpost.
NASA+

The unpiloted Roscosmos Progress 93 spacecraft is safely in orbit, headed for the International Space Station following its launch at 11:54 a.m. EDT (8:54 p.m. Baikonur time) on a Soyuz rocket from the Baikonur Cosmodrome in Kazakhstan.

After a two-day, in-orbit journey to the station, the spacecraft will dock autonomously to the aft port of the station’s Zvezda module at approximately 1:27 p.m. on Saturday, Sept. 13. NASA’s rendezvous and docking coverage will begin at 12:30 p.m. on NASA+, Amazon Prime, and more. Learn how to watch NASA content through a variety of platforms, including social media.

The spacecraft is delivering about three tons of food, fuel, and supplies to the space station.

  Learn more about station activities by following @NASASpaceOps and @space_station on X, as well as the International Space Station’s Facebook and Instagram accounts.  

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Mark A. Garcia

Progress 93 Cargo Craft Launching to Station Live on NASA+

Progress 93 Cargo Craft Launching to Station Live on NASA+

The Progress 91 cargo craft lifts off on time from the Baikonur Cosmodrome in Kazakhstan.
The Progress 91 cargo craft lifts off on Feb. 27, 2025, from the Baikonur Cosmodrome in Kazakhstan to the International Space Station.
NASA+

NASA’s live coverage is underway on NASA+, Amazon Prime, and more. Learn how to watch NASA content through a variety of platforms, including social media.  

The unpiloted Progress 93 spacecraft is scheduled to launch at 11:54 a.m. EDT (8:54 p.m. Baikonur time) on a Soyuz rocket from the Baikonur Cosmodrome in Kazakhstan. The Roscosmos spacecraft will carry about three tons of food, fuel, and supplies for the Expedition 73 crew aboard the International Space Station. 

After a two-day, in-orbit journey to the station, the spacecraft will dock autonomously to the aft port of the station’s Zvezda module at approximately 1:27 p.m. on Saturday, Sept. 13. NASA’s rendezvous and docking coverage will begin at 12:30 p.m. on NASA+, Amazon Prime, and more.

Learn more about station activities by following @NASASpaceOps and @space_station on X, as well as the International Space Station’s Facebook and Instagram accounts.    

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Mark A. Garcia

Biology, Botany Research Advancing Health as Two Resupply Missions Near Launch

Biology, Botany Research Advancing Health as Two Resupply Missions Near Launch

NASA astronaut and Expedition 73 Flight Engineer Mike Fincke inserts a cryogenic storage unit, called a dewar, containing blood samples collected from a crew member into a science freezer for preservation and later analysis. The Minus Eighty-Degree Laboratory Freezer for International Space Station, or MELFI, is a research freezer that maintains experiment samples at ultra-cold temperatures in microgravity.
NASA astronaut Mike Fincke inserts a cryogenic storage unit containing research samples into a science freezer for preservation and later analysis. The Minus Eighty-Degree Laboratory Freezer for International Space Station, or MELFI, is a research freezer that maintains experiment samples at ultra-cold temperatures in microgravity.
NASA

Scientific operations filled the day for the Expedition 73 crew with a wide variety of research advancing human health on and off the Earth. Meanwhile, two rockets on opposite sides of the world stand at their launch pads and are counting down to their lift off to resupply the International Space Station.

Doctors on the ground continuously study what happens to a crew member’s body after months of living and working in microgravity. The voluminous data is measured and collected almost constantly revealing the physical and mental changes an astronaut goes through during the course of a long-term spaceflight. The insights help doctors develop numerous countermeasures to protect crews as NASA and its international partners plan longer missions farther away from Earth to the Moon, Mars, and beyond.

Cardiovascular health in space is a key research topic for scientists studying how the lack of gravity affects an astronaut’s blood flow. NASA Flight Engineer Zena Cardman on Wednesday wore chest electrodes and scanned her leg arteries with an ultrasound device as medical experts from Canada, France, and the U.S. remotely guided the operations. The doctors were looking for signs of space-caused arterial stiffness and changes in cardiac function for the CIPHER human research investigation using the Vascular Echo hardware.

Cardman later partnered with NASA Flight Engineer Jonny Kim and studied how bone stem cells, recently delivered aboard a SpaceX Dragon cargo craft, adapt to microgravity. The duo took turns processing the cell samples in the Destiny laboratory module’s Microgravity Science Glovebox before stowing them inside a science freezer for future analysis. Doctors will use the data gleaned from the experiment to learn how to protect an astronaut’s skeletal system in space and treat aging conditions and bone diseases on Earth.

NASA Flight Engineer Mike Fincke explored ways to produce vitamins and nutrients on spacecraft helping supply adequate nutrition for crews on space missions without reliance on cargo missions launched from Earth. He treated yeast, yogurt, and fermented milk samples then installed them in a research incubator for the BioNutrients-3 investigation seeking to create a biomanufacturing facility to help sustain future space crews.

Another way to sustain and nourish crews too far away from Earth to be resupplied is to grow crops in spaceships or space habitats. Flight Engineer Kimiya Yui of JAXA (Japan Aerospace Exploration Agency) explored space botany studying how plant cells divide in microgravity. He first processed algae cell samples retrieved from a research incubator then stowed them inside a science freezer for future treatment. The cell samples will be imaged inside JAXA’s COSMIC fluorescent microscope to visualize microgravity’s effect on plant cell division and microstructures. Understanding how weightlessness affects plant growth may lead to food crop production techniques on missions to the Moon and Mars.

Station Commander Sergey Ryzhikov and Flight Engineer Alexey Zubritsky, both Roscosmos cosmonauts, joined each other in the Nauka science module configuring physics research gear to study advanced space propulsion systems and plasma-based technologies. Flight Engineer Oleg Platonov started his shift in the Zarya module replacing electronic power components before an afternoon Earth photography session imaging glaciers in South America and mountains in Africa.

Roscosmos’ Progress 93 spacecraft, packed with 2.8 tons of food, fuel, and supplies, sits atop a Soyuz rocket at its launchpad at the Baikonur Cosmodrome in Kazakhstan counting down to a liftoff at 11:54 a.m. EDT on Thursday. It will orbit Earth for two days before docking to the Zvezda service module at 1:27 p.m. on Saturday where it will stay for six months.

Just one day after the Progress 93’s arrival, Northrop Grumman’s Cygnus XL resupply ship will launch atop a SpaceX Falcon 9 rocket at 6:11 p.m. on Sunday, Sept. 14,  from Florida’s Cape Canaveral Space Force Station. Cygnus will deliver over 11,000 pounds of new science experiments and station hardware to the orbital outpost. Kim, assisted by Cardman, will be at the cupola’s robotics workstation commanding the Canadarm2 robotic arm to capture the spacecraft at 6:35 a.m. on Wednesday, Sept. 17. Ground controllers will then take over and remotely command Canadarm2 to install Cygnus to the Unity module’s Earth-facing port about an hour-and-a-half later for a six-month stay.

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Mark A. Garcia

Cargo Craft Departs Before Two Resupply Spacecraft Launch

Cargo Craft Departs Before Two Resupply Spacecraft Launch

JAXA (Japan Aerospace Exploration Agency) astronaut Kimiya Yui smiles for a portrait after trimming NASA astronaut Mike Fincke's hair aboard the International Space Station.
JAXA (Japan Aerospace Exploration Agency) astronaut Kimiya Yui smiles for a portrait after trimming NASA astronaut Mike Fincke’s hair aboard the International Space Station.
NASA

The Zvezda service module’s rear port opened up today after the undocking and departure of the trash-filled Progress 91 cargo craft completing a six-and-a-half-month stay at the International Space Station. The vacant port now awaits the arrival of the Progress 93 cargo craft set to launch from Kazakhstan at 11:54 a.m. EDT on Thursday. The new Progress, from Roscosmos and packed with 2.8 tons of cargo, is set to dock to Zvezda at 1:27 p.m. on Saturday following its automated approach and rendezvous maneuvers resupplying the Expedition 73 crew. NASA+ will begin its live launch broadcast at 11:30 a.m. on Thursday followed by docking coverage beginning at 12:30 p.m. on Saturday.

Just over a day later, Northrop Grumman’s expanded Cygnus XL cargo craft will launch atop a SpaceX Falcon 9 rocket from Florida at 6:11 p.m. on Sunday, Sept. 14. Cygnus XL will orbit Earth for two-and-a-half-days before catching up to the orbital outpost. NASA Flight Engineers Jonny Kim and Zena Cardman will be at the controls of the Canadarm2 robotic arm ready to capture the Cygnus when it reaches a point about 10 meters away from the space station. Engineers on the ground will then take over and remotely command Canadarm2 to maneuver Cygnus in its grips toward the Unity module’s Earth-facing port where the cargo craft will be installed.

Kim and Cardman spent Tuesday training for the arrival Cygnus XL, first reviewing its mission profile and the tools and procedures they will use during the spacecraft’s approach and rendezvous. Second, they practiced on a computer the robotic maneuvers and commanding techniques necessary to grapple Cygnus when it reaches its capture point near the orbital outpost. Kim and Cardman will be on duty when Cygnus arrives for its capture at 6:35 a.m. on Wednesday, Sept. 17, loaded with over 11,000 pounds of new science and supplies.

Station flight engineers Mike Fincke of NASA and Kimiya Yui of JAXA (Japan Aerospace Exploration Agency) focused on lab hardware on Tuesday checking electronics equipment and readying scientific gear for deployment. Fincke spent his shift inside the Columbus laboratory module testing power outlets, activating a laptop computer, and connecting cable. Yui worked in the Kibo laboratory module installing CubeSats inside a small satellite deployer that will soon be placed outside the space station. The shoebox-sized satellites will be deployed into Earth orbit for educational, public, and private research.

Researchers from around the world continue studying how crew members adapt their sense of balance and orientation in microgravity to train new crews for future space missions. Station Commander Sergey Ryzhikov and Flight Engineer Alexey Zubritsky took turns wearing electrodes and virtual reality glasses while responding to computer-controlled visual stimuli. The data collected will help researchers track and measure space-caused changes to a crew member’s vestibular system, or sensory system.

Roscosmos Flight Engineer Oleg Platonov began his shift on orbital plumbing maintenance before servicing electronics hardware in the Zarya module. He wrapped up his day inside the Zvezda service module refilling the Elektron oxygen generator.

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

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Mark A. Garcia