The Battle for Sullivan’s Island

The Battle for Sullivan’s Island

A satellite image shows Sullivan’s Island, South Carolina, with a sandy shoreline along the Atlantic Ocean to the south, development across the interior, and green marsh and tidal inlets along its north side.
Signs of the marshy, sandy terrain that helped colonists repel invading British forces in a pivotal battle in June 1776 remain visible on Sullivan’s Island in this image acquired on June 3, 2026, by the OLI (Operational Land Imager) on Landsat 8.
NASA Earth Observatory/Michala Garrison

As Thomas Jefferson and the Committee of Five presented their first draft of the Declaration of Independence in Philadelphia on June 28, 1776, several British warships and thousands of troops were massing around Sullivan’s Island in South Carolina.

The pitched battle for the sandy barrier island at the mouth of Charleston Harbor that played out over the course of that June day was one of the most significant in the early stages of the Revolutionary War. By nightfall, largely untested colonial troops had decisively defeated the British, an outcome that helped save Charleston from occupation and buoyed American spirits at a critical stage of the war.

The Landsat 8 satellite captured this image of the island on June 3, 2026. Two hundred fifty years earlier, the sandy beaches, salt marshes, and general shape of the island would have looked similar, though with less evidence of roads or other signs of human development.

There certainly would have been some signs of human activity on the island, however. Quite noticeable would have been Fort Sullivan, a large square structure built from palmetto logs on the southern tip of the island, near the entrance to the harbor. Though one side of the fort, assembled largely by enslaved people, was still unfinished at the time of the battle, the other sides had 16-foot-wide walls packed with sand and containing planked gun platforms that mounted 31 cannons.

Historical maps show at least one road extending from the southern to northern tip of Sullivan’s Island, where hundreds of colonial soldiers were also encamped to protect Breach Inlet from a force of roughly 3,000 British troops massing on nearby Long Island (now Isle of Palms). When the battle began, historians estimate that there were roughly 800 colonial troops, including dozens of Catawba warriors, defending the northeastern part of Sullivan’s Island, embedded within earthen defenses and manning two artillery pieces.

A wider version of the satellite image shows Sullivan’s Island, centered, in relation to Charleston, which lies to the northwest.
June 3, 2026

When the British attack came on the morning of June 28, 1776, both military tactics and geography played critical roles in determining the outcome. Having been told the water at the inlet was less than 18 inches (46 centimeters) deep at low tide, the British commander had planned to have his forces walk across Breach Inlet on foot. But he was forced to pivot to a more dangerous amphibious assault using flatboats when he realized the shallowest part of the break was at least 7 feet (2 meters) deep at low tide. Traveling by flatboat limited the number of British troops who could cross the channel at once, making it easier for colonial defenders to repel them during fierce skirmishing throughout the day.

On the other side of the island, British warships had dropped anchor near Fort Sullivan and begun launching thousands of cannonballs and exploding shells at the fort. However, the natural durability and pliability of the palmetto wood absorbed incoming fire “like sponges,” Colonel William Moultrie, the fort’s commanding officer, later noted in his memoirs.

Most incoming shells that fell within the fort’s walls were neutralized. There was a marshy “morass” in the center of the fort, Moultrie wrote, that “swallowed” up incoming fire “instantly.” Shells that made it over the walls and “fell in the sand, in and about the fort, were immediately buried, so that few of them burst amongst us,” he wrote.

With their limited powder, the colonists focused their fire on the ship carrying the British commander, Sir Peter Parker, severely damaging it and ultimately killing 40 people on board. By the evening, exhausted from the 10-hour battle and making little progress, the British forces retreated.

“We never had such a drubbing in our lives,” one Royal Navy sailor wrote. After the battle, the fort became known as Fort Moultrie, and the palmetto tree began appearing on the state seal in what would prove to be an enduring symbol of colonial pride and resistance. Six days after the battle, the Declaration of Independence was adopted in Philadelphia.

NASA Earth Observatory images by Michala Garrison, using Landsat data from the U.S. Geological Survey. Story by Adam Voiland.

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Crew Works Eye Exams, DNA Sequencing, and Spacesuit Preps

Crew Works Eye Exams, DNA Sequencing, and Spacesuit Preps

NASA astronaut and Expedition 74 flight engineer Jack Hathaway loads bacterial samples into a portable DNA sequencer to read their genetic code inside the International Space Station’s Harmony module. The GEARS biotechnology investigation may help scientists understand how bacteria become resistant to antibiotics in the space environment, which could affect an astronaut’s ability to fight infections.
NASA astronaut Jack Hathaway loads bacterial samples into a portable DNA sequencer to read their genetic code inside the International Space Station’s Harmony module. The GEARS biotechnology investigation may help scientists understand how bacteria become resistant to antibiotics in the space environment, which could affect an astronaut’s ability to fight infections.
NASA/Jessica Meir

Life science topped the research schedule on Thursday as the Expedition 74 crew studied how space affects vision and sequenced DNA collected from microbes. More spacesuit preparations, a virtual reality investigation, and exercise gear maintenance rounded out the day aboard the International Space Station.

Eye exams were once again underway as NASA flight engineers Jessica Meir and Chris Williams joined each other in the Columbus laboratory module for the vision portion of the CIPHER suite of 14 human research investigations. Meir took charge first attaching electrodes around Williams’ eyes then sending flashing light signals to measure his retina’s electrical response. Next, she operated medical imaging hardware that Williams peered into providing doctors on the ground a real time view of his retina, cornea, and lens. The biomedical data will help researchers detect potential space-caused changes to eye structure and function.

Meir and Williams also partnered together preparing the components they will install on their spacesuits on June 30 when they go on a spacewalk to repair the Canadarm2 robotic arm’s malfunctioning wrist joint. Meir wore virtual reality goggles and trained to maneuver the Simplified Aid for EVA Rescue (SAFER) that would return a spacewalker to safe haven in the unlikely event they became untethered from the orbital outpost. Williams checked out the SAFER he will wear on his spacesuit next week ensuring its latches, sensors, and controls are in operating condition.

NASA flight engineer Jack Hathaway focused on sequencing microbial DNA using a handheld reader in the Harmony module’s maintenance work area. Scientists are exploring how bacteria become resistant to antibiotics in microgravity and seek to characterize the microbes’ genomic identity possibly revealing their adaptive mechanisms to weightlessness. Insights from the biotechnology investigation may reduce the risk of crew infections during a spaceflight and improve patient health care on Earth.

A new spaceflight workout system has recently been installed and is being tested inside the Columbus lab module. Flight engineer Sophie Adenot ESA (European Space Agency) powered on and configured the advanced gear—known as the European Enhanced Exploration Exercise Device (E4D) from ESA—returning it to normal workout mode. The E4D is being evaluated for its ability to maintain astronaut bone, muscle, and cardiovascular health on future missions to the Moon, Mars, and beyond.

Station commander Sergey Kud-Sverchkov strapped on a virtual reality headset and responded to computerized stimuli as electrodes tracked his brain signals and eye movement documenting his sense of direction and motion in space. Next, Kud-Sverchkov installed automated photography gear in the Zvezda service module to capture imagery of Asian and Pacific Ocean landmarks during the crew’s sleep shift.

Roscosmos flight engineer Sergei Mikaev disconnected computerized docking hardware then reorganized cargo stowed inside the Nauka science module making more room for crew activities. Roscosmos flight engineer Andrey Fedyaev tested the communications and network systems of the European robotic arm.

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

Expedition 73 Crew Reflects on Science, Teamwork, and Life in Orbit 

Expedition 73 Crew Reflects on Science, Teamwork, and Life in Orbit 

The Expedition 73 crew attends a debrief and awards ceremony at Space Center Houston’s IMAX theater on June 16, 2026.
NASA/Luna Posadas Nava

On June 16, astronauts and cosmonauts gathered at Space Center Houston to share stories from their missions aboard the International Space Station and recognize the teamwork and people on the ground that made their missions possible. 

The Expedition 73 Welcome Home Ceremony brought together members of NASA’s SpaceX Crew-10, Soyuz MS-27, and NASA’s SpaceX Crew-11 missions. During the event, the crews reflected on the science, partnerships, and international collaboration that defined their time in orbit. 

Remarks were delivered by NASA’s Johnson Space Center Director Vanessa Wyche, Low Earth Orbit Program’s Deputy Manager for the International Space Station Dina Contella, Richard Jones with NASA’s commercial crew office, Flight Operations Director Norm Knight, Johnson Employee Relations Lead David Kelley, and Space Center Houston Chief Operating and Strategy Officer Keesha Bullock. Together, they recognized the accomplishments of the crews and the team members who helped make the expedition a success. 

NASA’s Johnson Space Center Director Vanessa Wyche gives opening remarks at the crew debrief and awards ceremony.
NASA/Luna Posadas Nava

Wyche welcomed the crews home and reflected on the accomplishments of Expedition 73. 

“Together, these crews exemplified professionalism, resilience, and the spirit of international cooperation,” Wyche said. “Their work ensured the continued success of the International Space Station Program and demonstrated the strength of our multi-vehicle crew transportation strategy.” 

During the expedition, all available docking ports were occupied simultaneously for the first time, with eight spacecraft attached to the station. The crew also supported visiting missions, including Axiom Mission 4, and multiple cargo deliveries while maintaining a full schedule of scientific investigations. 

Crew members completed three spacewalks, installing hardware that supports future solar array upgrades and maintenance activities critical to station operations.  

NASA astronaut Anne McClain is photographed near one of the International Space Station’s main solar arrays during a spacewalk to upgrade the orbital outpost’s power generation system and relocate a communications antenna on May 1, 2026.
NASA

The ceremony also recognized the workforce whose dedication supported every aspect of Expedition 73, from mission planning and operations to research, training, and crew safety. 

“You learned each other’s languages, and often, when we didn’t know the right answers, you partnered with us, and you would come up with the answers and help,” said International Space Station Program Deputy Manager Dina Contella. “You really helped make us successful.” 

She noted that collaboration extended well beyond the crew in orbit, with teams across the program matching that dedication throughout the expedition.  

Contella shared that Expedition 73 included six cargo missions, the inaugural flight of JAXA’s (Japan Aerospace Exploration Agency) HTV-X1 cargo spacecraft, and more than 37,000 pounds of supplies, equipment, and scientific investigations delivered to the space station.  

She also thanked the Commercial Crew Program and Flight Operations teams for helping safely transport crews to and from the station and support mission operations. 

More than 1,000 employees representing 40 teams received NASA Group Achievement Awards, while 23 individuals were honored with Superior Achievement Awards for their contributions to the mission. 

NASA astronaut Zena Cardman and JAXA (Japan Aerospace Exploration Agency) astronaut Kimiya Yui receive the NASA Exceptional Bravery Honors at the crew debrief. From left: NASA astronaut Zena Cardman, Johnson Director Vanessa Wyche, Commercial Crew Program Deputy Manager Richard Jones, International Space Station Program Deputy Manager Dina Contella, and JAXA astronaut Kimiya Yui.
NASA/Luna Posadas Nava

NASA astronaut Zena Cardman and JAXA astronaut Kimiya Yui received NASA Exceptional Bravery Honors for demonstrating exceptional courage, leadership, and composure during a medical event. NASA astronaut Chris Williams also received the honor but was unable to attend because he remains aboard the space station. 

Flight Operations Director Norm Knight thanked the teams that supported Expedition 73 from the ground while recognizing the crews’ contributions throughout their missions. “You represent an astronaut corps that is the best of the best, epitomizing courage and teamwork,” Knight told the crew. “Every opportunity or challenge that came your way, you met with confidence and creativity.” 

NASA astronaut Jonny Kim conducts an investigation to assess the effects of microgravity on bone marrow stem cells, including their ability to secrete proteins that form and dissolve bone.
NASA

Crew members reflected on the station’s legacy as a platform for discovery, innovation, and international partnership after more than 25 years of continuous human presence in orbit

Research conducted during Expedition 73 included investigations in human physiology, biology, materials science, pharmaceutical development, and technologies designed to benefit life on Earth and future exploration missions. 

The crews also discussed research aboard the station that will help prepare NASA for future missions to the Moon and Mars, including advanced life-support systems and water recovery technologies. 

NASA astronaut Nichole Ayers holds space botany hardware that supports the low Earth orbit Integrated Flori-culture Experiment (LIFE) investigation as she floats inside the space station’s cupola. The study examines how radiation and microgravity affect plant growth to support future exploration and improve crop production on Earth.
NASA

Beyond science and operations, the crew built strong bonds during their months in orbit. They marked birthdays, holidays, and mission milestones together, often creating elaborate cakes from the limited ingredients available aboard the station. 

NASA astronaut Anne McClain celebrates her birthday with a cake, gifts, and cards aboard the space station’s Unity module.
NASA

Many crew members said their strongest memories centered on the people around them, and that trust and teamwork remained essential to mission success. 

Viewing Earth from orbit provided the crew with a powerful reminder of humanity’s shared connection. 

“When you look back at Earth, what we have in common is so much more important than what makes us different,” said McClain. “We’re all on this one planet. We’re all on the same crew.” 

Awardees pose for a group photo from the Expedition 73 crew debrief and awards ceremony.
NASA/Luna Posadas Nava

The evening concluded with the crew expressing gratitude to all those who supported their missions from launch through landing. 

“It was overwhelming in the most wonderful way to step off that aircraft and see so many team members who had supported us and see family and friends for the first time,” said Cardman. “We are so grateful.” 

View the list of award recipients here

Watch the full Expedition 73 crew debrief and awards ceremony below.  

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Sumer Loggins

NASA, US Small Business Administration to Announce Partnership

NASA, US Small Business Administration to Announce Partnership

Credit: NASA

NASA and the U.S. Small Business Administration will sign a memorandum of agreement during a ceremony at 1 p.m. EDT, Monday, June 29, at NASA Headquarters in Washington.

The agreement will create a new interagency initiative that directly responds to President Donald J. Trump’s National Space Policy and supports the growth of the American space economy.

Participants include:

  • NASA Administrator Jared Isaacman
  • SBA Administrator Kelly Loeffler

This event is in person only. Media interested in attending must RSVP no later than 10 a.m. on June 29 to: hq-media@mail.nasa.gov. NASA’s media accreditation policy is available online. 

For more information about NASA’s missions, visit:

https://www.nasa.gov

-end-

Camille Gallo / Cheryl Warner
Headquarters, Washington
202-358-1600
camille.m.gallo@nasa.gov / cheryl.m.warner@nasa.gov

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Jun 25, 2026

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Jessica Taveau

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Jessica Taveau

NASA Welcomes Botswana as 68th Artemis Accords Signatory  

NASA Welcomes Botswana as 68th Artemis Accords Signatory  

From left to right, Senior Advisor on Space for the Bureau of Oceans and International Environmental and Scientific Affairs Greg Autry, NASA Deputy Administrator Matt Anderson, Minister of Communications and Innovation David Tshere, and Acting Ambassador of the Republic of Botswana to the United States Mabedi Ngwenya pose for a photo following an Artemis Accords signing ceremony with the Republic of Botswana Thursday, June 25, 2026, at the Mary W. Jackson NASA Headquarters building in Washington.
NASA/Keegan Barber

The Republic of Botswana signed the Artemis Accords Thursday during a ceremony hosted by NASA at the agency’s headquarters in Washington, becoming the sixth African nation to join a growing community of nations committed to the peaceful, transparent, and responsible exploration of space.

“It is my privilege to welcome Botswana as the newest signatory of the Artemis Accords,” said NASA Deputy Administrator Matt Anderson. “Today marks an important milestone in our international partnership and in the continued growth of the Artemis community. Botswana joins at an important moment. Earlier this month, we announced the crew of Artemis III and, as we speak, their spacecraft is being assembled as they prepare to play their part in mankind’s greatest adventure.”

Botswana’s Minister of Communications and Innovation David Tshere signed on behalf of the country. U.S. Department of State Senior Advisor for Space Gregory Autry, and Mabedi Ngwenya, acting ambassador of the Republic of Botswana to the United States, also participated in the ceremony.

“Botswana like many countries, we have interest in space exploration, found it important to become a signatory to the Artemis Accords to promote the safe, transparent, and sustainable civil space exploration, and to advance international cooperation, and a shared framework for responsible activities in the space,” said Tshere.

This new chapter builds on Botswana’s long history of collaboration with the United States in space-based Earth observation. In the early 1970s, Botswana participated in the satellite program later known as Landsat, joining dozens of other nations in pioneering satellite-based environmental observation. Botswana marked another milestone with the launch of its first Earth observation satellite, Botswana Satellite 1, in March 2025, aboard a SpaceX Falcon 9. 

In 2020, during the first Trump Administration, the United States, led by NASA and the State Department, joined with seven other founding nations to establish the Artemis Accords, responding to the growing interest in lunar activities by both governments and private companies. The Artemis Accords introduced the first set of practical principles aimed at enhancing the safety and coordination between like-minded nations as they explore the Moon, Mars, and beyond.  

Signing the Artemis Accords means committing to explore peaceably and transparently, to render aid to those in need, to enable access to scientific data that all of humanity can learn from, to ensure activities do not interfere with those of others, and to preserve historically significant sites and artifacts by developing best practices for space exploration for the benefit of all. 

More countries are expected to sign the Artemis Accords in the months and years ahead, as NASA continues its work to establish a safe, peaceful, and prosperous future in space. 

Learn more about the Artemis Accords at: 

https://www.nasa.gov/artemis-accords

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Jennifer M. Dooren