New UAV Can Launch from Underwater for Aerial MissionsJohns Hopkins Applied Physics Laboratory2026-09-21 | New UAV Can Launch from Underwater for Aerial MissionsSurf’s up on Titan with NASAs #DragonflyMission 🚁✨ | #JHUAPL #spaceshortsJohns Hopkins Applied Physics Laboratory2024-05-08 | NASA's Dragonfly mission is an APL-built rotorcraft lander designed to soar over Titan! The mission will uncover the secrets of this ocean world's complex organic chemistry & search for signs of life. https://dragonfly.jhuapl.edu/Behold the Beauty of the Northern Lights with #NASAs #EZIEMission 🛰️🌌 | #JHUAPL #SpaceShortsJohns Hopkins Applied Physics Laboratory2024-05-07 | NASA's EZIE mission is set to explore the mysteries of the Earth's upper atmosphere and its vivid auroras. APL-built satellites will provide groundbreaking insight into the physics of Earth's magnetosphere. https://ezie.jhuapl.edu/Fun in the Sun ☀️ 🛰️ | #parkersolarprobe #JHUAPL #NASASunJohns Hopkins Applied Physics Laboratory2024-05-06 | NASA's Parker Solar Probe is a scientific mission to unlock the mysteries of the Sun. The APL-built spacecraft to "Touch the Sun" can endure heat and radiation like no other mission before it. https://parkersolarprobe.jhuapl.edu/This #EarthDay, APL reaffirms our commitment to the planet. 🌿🌎 | #JHUAPL #Shorts #earthday2024Johns Hopkins Applied Physics Laboratory2024-04-22 | Learn about our path toward a sustainable future using AI, satellite imaging, and systems modeling technology: https://jhuapl.link/climate-securityNASA Confirms #DragonflyMission for 2028 Launch to Saturn’s Moon Titan 🚁 🪐 | #JHUAPL #spaceJohns Hopkins Applied Physics Laboratory2024-04-17 | CONFIRMED: NASA has confirmed the revolutionary Dragonfly rotorcraft mission to Saturn’s organic-rich moon Titan. https://jhuapl.link/ejc
The game-changing mission to another ocean world, equipped with a mobile eight-rotored lander that will fly autonomously and advance our understanding of the chemical origins of life while exploring dozens of locations on Titan. 🚁 🪐Exploring the Suns Corona During a Solar Eclipse | #ParkerSolarProbe #JHUAPLJohns Hopkins Applied Physics Laboratory2024-03-31 | During a total solar eclipse, scientists have a rare opportunity to study the Sun's corona as it becomes visible around the Moon's silhouette. By observing the corona during an eclipse, scientists can study its structure and dynamics, providing valuable insights into the phenomena that influences space weather and affects Earth's environment. https://jhuapl.link/pspStudying the Solar Wind by Swinging Real Close to the Sun | #ParkerSolarProbe #JHUAPLJohns Hopkins Applied Physics Laboratory2024-03-30 | During a total solar eclipse, scientists have a rare opportunity to study the Sun's corona as it becomes visible around the Moon's silhouette. By observing the corona during an eclipse, scientists can study its structure and dynamics, providing valuable insights into the phenomena that influences space weather and affects Earth's environment. https://jhuapl.link/pspRevolutionizing our understanding of the Sun with NASAs #ParkerSolarProbe ☀️ 🛰️ | #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2024-03-29 | The Parker Solar Probe mission is revolutionizing our understanding of the Sun. The mission “touches the Sun,” flying directly through the solar corona, facing brutal heat and radiation conditions while providing unprecedented, close-up observations of the star we live with. https://jhuapl.link/psp3.1415...Pi! Happy #PiDay from Johns Hopkins APL! 🥧 | #SHORTS #JHUAPLJohns Hopkins Applied Physics Laboratory2024-03-14 | Whether we're using pi to compute the length of time it takes to orbit a planet or utilizing the mathematical constant in computer algorithms, π brings many #JHUAPL missions full circle.Defining Innovations for 82 Years 🛰️🌎⚓ | #HBD #Shorts #JHUAPLJohns Hopkins Applied Physics Laboratory2024-03-10 | 82 years of relentlessly pursuing the mission that Johns Hopkins APL has followed since its very first day: to make critical contributions to critical challenges for our nation. 🛰️🌎⚓
Since its founding on March 10, 1942, APL has been committed to solving complex research, engineering, and analytical problems that present critical challenges to our nation. Among APL’s thousands of critical contributions to national security and space exploration are a number of defining innovations: game-changing breakthroughs in technology that have created inflection points in history.
Learn more about APL's Defining Innovations: https://jhuapl.link/DefiningInnovationAPLs Clean, Cost-Effective Method to Eliminate PFAS in Water | #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2024-03-10 | The team at Johns Hopkins APL has demonstrated an enhanced filtration technique to capture PFAS and an ecofriendly way to destroy them. Together with a previously published electrochemical destruction technique, APL is building a portfolio of technologies aiming to enable full PFAS remediation. https://jhuapl.link/PFASEliminating PFAS Forever Chemicals | #JHUAPL #ShortsJohns Hopkins Applied Physics Laboratory2024-03-09 | The Environmental Protection Agency has declared PFAS an urgent public health and environmental issue facing communities across the United States. Scientists from the Johns Hopkins APL are developing several technologies to capture and destroy these "forever chemicals." https://jhuapl.link/PFASThe Harmful Effects of PFAS Forever Chemicals | #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2024-03-08 | Multiple studies have linked PFAS exposure to harmful health effects in humans and animals, and without a natural way to break them down, the chemicals persist in soil and contaminate the environment — including water. Scientists at Johns Hopkins APL are developing several technologies to capture and destroy these "forever chemicals." https://jhuapl.link/PFASDesigning Cost-effective Cyberdefense Technologies at APL | #JHUAPL #criticalinfrastructureJohns Hopkins Applied Physics Laboratory2024-02-15 | Johns Hopkins APL is designing cost-effective cyberdefense technologies that are strong enough to repel serious cyberattacks but affordable enough to be purchased and easily implemented by the nation’s diverse water treatment plant operators. Many plants across the country are municipal operations plants with constrained budgets and — sometimes — an IT department of one.
The water treatment testbed in the CYber Physical REsilient Systems Solutions (CYPRESS) laboratory at APL was used for a Department of Homeland Security-funded pilot of APL-designed and -developed research technologies to demonstrate a Resilient Industrial Control System (ICS). https://jhuapl.link/rtwAPL Develops Cyber-physical Security Situational Awareness Capability for Industrial Control SystemsJohns Hopkins Applied Physics Laboratory2024-02-14 | Johns Hopkins APL has developed a cost-effective cyber-physical security situational awareness capability for industrial control systems and applied it at the Cranberry Water Treatment plant in Westminster, Maryland.
The technology is designed to detect and alert operators to malicious activity, such as unauthorized access, malicious code and data exfiltration. It also provides a comprehensive view of the system’s health and performance, allowing operators to quickly identify and address any issues. https://jhuapl.link/qgsProtecting Critical Infrastructure from Cyber Threats | #JHUAPL #Cybersecurity #ResiliencyJohns Hopkins Applied Physics Laboratory2024-02-13 | There are approximately 153,000 public drinking water systems and more than 16,000 publicly owned wastewater treatment systems in the United States, according to the Cybersecurity and Infrastructure Security Agency. A cyberattack on any one of these systems could lead to service outages, damage to critical infrastructure, and even potentially illness and loss of life.
Johns Hopkins APL has developed a cost-effective cyber-physical security situational awareness capability for industrial control systems. https://jhuapl.link/qgsA team at Johns Hopkins APL has discovered a novel superconductor using #AI | #SHORTSJohns Hopkins Applied Physics Laboratory2024-01-18 | A multidisciplinary team at Johns Hopkins APL has discovered a novel superconductor using artificial intelligence. The key to this breakthrough came through combining materials science expertise and real data into a predictive AI model, which vastly accelerates the timeline of targeted materials discovery. https://jhuapl.link/pkwAI Helps Discover Novel SuperconductorJohns Hopkins Applied Physics Laboratory2024-01-18 | A multidisciplinary team at Johns Hopkins APL has discovered a novel superconductor using artificial intelligence. The key to this breakthrough came through combining materials science expertise and real data into a predictive AI model, which vastly accelerates the timeline of targeted materials discovery. https://jhuapl.link/pkwBeyond the Ice: APL Researchers Expand eDNA Research into Polar Regions | #JHUAPL #SHORTS 🧊Johns Hopkins Applied Physics Laboratory2024-01-13 | Johns Hopkins APL researchers ventured into unchartered territory in Antarctica aboard Lindblad Expeditions’ newest state-of-the-art PC5 Category A ice class vessel National Geographic Resolution. The trip delivered stunning vistas, penguin and marine mammal sightings and — most importantly — incomparable access to some of the most pristine habitats in the world. 🧊 https://jhuapl.link/9u4
(Credit: Lindblad Expeditions-National Geographic)Beyond the Ice: APL Researchers Expand eDNA Research into Polar RegionsJohns Hopkins Applied Physics Laboratory2024-01-12 | Johns Hopkins APL researchers ventured into unchartered territory in Antarctica aboard Lindblad Expeditions’ newest state-of-the-art PC5 Category A ice class vessel National Geographic Resolution. The trip delivered stunning vistas, penguin and marine mammal sightings and — most importantly — incomparable access to some of the most pristine habitats in the world. 🧊 https://jhuapl.link/9u4
(Credit: Lindblad Expeditions-National Geographic)Happy Holidays from Johns Hopkins APL ❄️ 🎉 | #JHUAPL #SHORTS #HappyHolidaysJohns Hopkins Applied Physics Laboratory2023-12-24 | ...When the Suns reach touches Earth - A Look Back in History | #SpaceWeather | #Shorts #JHUAPLJohns Hopkins Applied Physics Laboratory2023-12-07 | When the Sun's reach touches Earth ☀️ 💨 🌎
APL's Ian Cohen takes a look back when space weather made a big impact on history.
With our reliance on space technology growing exponentially, and the effects of space weather more prevalent, it's more important than ever to understand and research space weather. https://jhuapl.link/space-wxUnderstanding and predicting the Suns flares and mass ejections | #SpaceWeather #Shorts #JHUAPLJohns Hopkins Applied Physics Laboratory2023-12-06 | APL's Ian Cohen explains the importance of understanding and predicting the Sun's flares and mass ejections, which can halt Earth's technosphere. https://jhuapl.link/space-wx
As a recognized space weather center of excellence, Johns Hopkins APL has fostered collaborations and built state-of-the-art physics-based and machine-learning models to set the groundwork for predicting such severe space weather events. APL has built and operated dozens of instruments and NASA spacecraft missions to better understand space weather in general.What is #SpaceWeather and how does it impact daily life on Earth? ☀️💨 | #Shorts #JHUAPLJohns Hopkins Applied Physics Laboratory2023-12-05 | Today's bustling world hinges on power and satellite communication systems to deliver information at breakneck speed, yet a single powerful geomagnetic storm unleashed from extreme solar activity can suddenly bring these systems to a halt.
APL's Ian Cohen explains what space weather is, and how experts research and understand space weather effects. https://jhuapl.link/space-wxFrom our table to yours, #HappyThanksgiving from Johns Hopkins APL. 🦃 🍁 | #Shorts #thanksgivingJohns Hopkins Applied Physics Laboratory2023-11-23 | (🎥 #JHUAPL/Mike Yakovlev)On #VeteransDay, we honor the service and sacrifice of our veterans. 🇺🇸 | #OperationGreenLightJohns Hopkins Applied Physics Laboratory2023-11-11 | ...Happy 248th Birthday to the U.S. Marine Corps 🇺🇸 | #USMC #JHUAPL #MarineCorpsBirthday #SemperFiJohns Hopkins Applied Physics Laboratory2023-11-10 | Happy Birthday to the U.S. Marine Corps 🇺🇸
Celebrating 248 years of honor, courage, and commitment. Thank you for your dedication and sacrifice.🎖️
#JHUAPL #MarineCorpsBirthday #SemperFiStudying and Searching for Habitability in Space 🌱| #DragonflyMission #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2023-11-05 | ...Why Titans Earthlike hydrological cycle is important to explore | #DragonflyMission #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2023-11-04 | ...Why Saturns Moon Titan is perfect for #NASAs #DragonflyMission 🪐🌑 | #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2023-11-03 | ...Carving out critical contributions to critical challenges since 1942. | 🍁🦇 #HalloweenShorts #JHUAPLJohns Hopkins Applied Physics Laboratory2023-10-31 | ...Tunnel Vision: #DragonflyMission Tests Designs in #NASA Facilities 🚀🪐 | #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2023-10-24 | Well before NASA’s Dragonfly rotorcraft lander soars through Titan’s skies, researchers at Johns Hopkins APL, are making sure their designs and models for the nuclear-powered, car-sized drone will work in a truly unique environment. Three times in the past three years, the mission team has tested its flight systems in one-of-a-kind wind tunnel facilities at NASA’s Langley Research Center in Hampton, Virginia. jhuapl.link/2hgMedics and Machines: Developing Robotic Technologies to Provide Assured Care in the FieldJohns Hopkins Applied Physics Laboratory2023-10-21 | Researchers at Johns Hopkins APL are exploring how emerging capabilities in artificial intelligence, augmented reality and robotics might support collaborative intervention by teams of medics, AI-based virtual assistants and autonomous robots. 🤖 jhuapl.link/dhj
“What if we could teach robots the way we teach people — through written instructions, verbal instructions, gestures and by example?” said David Handelman, a senior roboticist in APL’s Research and Exploratory Development Department (REDD).
The medic-robot teaming effort leverages ongoing research at APL sponsored by the Army Research Laboratory and the Army’s Artificial Intelligence Innovation Institute on adaptive human-robot teaming. This research combines symbolic AI and neuro-inspired machine learning to emulate human skill acquisition to achieve adjustable autonomy (dynamically adjusting whether humans or robots act, and when) and adaptive teaming (handling new situations).
The researchers want to develop a system where humans provide the outline of a task — behavioral scaffolding based on known good strategies — and allow robots to learn how to perform subtasks to minimize human workload and expand the range of potential solutions.Tunnel Visions: Dragonfly Team Tests Rotorcraft Designs in Unique NASA FacilitiesJohns Hopkins Applied Physics Laboratory2023-10-20 | Well before NASA’s Dragonfly rotorcraft lander soars through Titan’s skies, researchers at the Johns Hopkins Applied Physics Laboratory in Laurel, Maryland, are making sure their designs and models for the nuclear-powered, car-sized drone will work in a truly unique environment. Three times in the past three years, the mission team has tested its flight systems in one-of-a-kind wind tunnel facilities at NASA’s Langley Research Center in Hampton, Virginia.Robo-Retriever 🤖 Developing Robotics to Provide Field Care | #JHUAPL #Robots #Military #SHORTSJohns Hopkins Applied Physics Laboratory2023-10-18 | “What if we could teach robots the way we teach people — through written instructions, verbal instructions, gestures and by example?” said David Handelman, a senior roboticist in APL’s Research and Exploratory Development Department.
Researchers at Johns Hopkins APL are exploring how emerging capabilities in artificial intelligence, augmented reality and robotics might support collaborative intervention by teams of medics, AI-based virtual assistants and autonomous robots. 🤖 jhuapl.link/dhj
AI, AR and robotics are poised to revolutionize field care, Handelman said.Researchers use #AI to discover novel superconductor 🧠⚡🤖 | #JHUAPL #SHORTSJohns Hopkins Applied Physics Laboratory2023-10-17 | Researchers at Johns Hopkins APL used artificial intelligence to discover a novel superconductor. 🧠⚡🤖 https://jhuapl.link/pkw
“One reason we chose superconductors is that a new one could potentially change the world,” explained Christopher Stiles, a senior computational materials researcher in APL’s Research and Exploratory Development Department.
The key to this breakthrough came through combining materials science expertise and real data into a predictive AI model, which vastly accelerates the timeline of targeted materials discovery.Happy Birthday to the U.S. Navy from Johns Hopkins APL 🇺🇸⚓ | #JHUAPL #USNavyBirthday #ShortsJohns Hopkins Applied Physics Laboratory2023-10-13 | ...Scientist at Sea: Sherry ChenJohns Hopkins Applied Physics Laboratory2023-10-04 | Sherry Chen, an early-career software engineer at the Johns Hopkins Applied Physics Laboratory, had the opportunity to participate in the Office of Naval Research's Scientists to Sea program, an opportunity for researchers to experience life on U.S. Navy ships and submarines firsthand, and to observe how sailors use the technology and capabilities the researchers develop.
Credit: Johns Hopkins APL/Justin Gladden (with footage taken by Sherry Chen)How your brain clears mental waste when you sleep | #JHUAPL #SHORTS #sleep 💤 🧠Johns Hopkins Applied Physics Laboratory2023-09-30 | Johns Hopkins APL scientists are working to advance our understanding of the glymphatic system — an under-studied waste clearance system for the brain — and the role it plays in sleep, memory consolidation, degenerative illnesses and more. 🧠⚡💤 https://jhuapl.link/pe8The science of sleep 🧠⚡💤 | #JHUAPL #SHORTS #neuroscience #sleepJohns Hopkins Applied Physics Laboratory2023-09-29 | When we think of brains, we tend to think of neurons. It’s right there in our word for the study of the brain: neuroscience. But when it comes to certain mysteries of the brain — for example, the role of sleep in memory consolidation, or the genesis of traumatic brain injuries and degenerative neurological disorders such as Parkinson’s disease and Alzheimer’s disease — the answers we seek may lie elsewhere: the glymphatic system.
Scientists at Johns Hopkins APL are working to advance our understanding of the glymphatic system and the role it plays in sleep, memory consolidation, degenerative illnesses and more. https://jhuapl.link/pe8From Impact to Innovation: A Year of Science & Triumph for Historic #DARTMission 🌑💥🛰️ #JHUAPL #NASAJohns Hopkins Applied Physics Laboratory2023-09-26 | Last fall, the world watched as the DART spacecraft guided itself toward the asteroid Dimorphos for a direct collision, a major technical achievement and the first successful planetary defense test in history. Revisit DART’s triumphant collision with Dimorphos and the resulting year of science analysis and discoveries that followed. https://jhuapl.link/DART-1yrFrom Impact to Innovation: A Year of Science and Triumph for Historic DART MissionJohns Hopkins Applied Physics Laboratory2023-09-26 | Last fall, the world watched as the DART spacecraft — the Double Asteroid Redirection Test — guided itself toward the asteroid Dimorphos for a direct collision, a major technical achievement and the first successful planetary defense test in history. DART targeted the asteroid moonlet Dimorphos, a small body just 490 feet (150 meters) in diameter, which orbits a larger, 2,500-foot (760-meter) asteroid called Didymos. Neither asteroid posed a threat to Earth, but the system proved to be the perfect target for the experimental mission. https://jhuapl.link/DART-1yr
As a part of NASA’s overall planetary defense strategy, DART’s impact with the asteroid Dimorphos demonstrated a viable mitigation technique for protecting the planet from an Earth-bound asteroid, if one were discovered. Revisit DART’s triumphant collision with Dimorphos and the resulting year of science analysis and discoveries that followed.To Bennu and Back (5/5): Navigating on an Asteroid | #JHUAPL #NASA #OSIRISREx #ToBennuAndBackJohns Hopkins Applied Physics Laboratory2023-09-24 | This Sunday, Sept. 24th, the OSIRIS-REx mission will release a capsule containing a 4.5-billion-year-old sample of an asteroid to Earth for curation and study. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth. The asteroid is rich in organic material and the sample could tell us about the origins of life on Earth. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth.
Obtaining that sample, however, was no small feat. That's where APL's Small Body Mapping Tool came in handy. https://jhuapl.link/yqiTo Bennu and Back (4/5): Directing the Spacecraft | #JHUAPL #NASA #OSIRISREx #ToBennuAndBackJohns Hopkins Applied Physics Laboratory2023-09-24 | This Sunday, Sept. 24th, the OSIRIS-REx mission will release a capsule containing a 4.5-billion-year-old sample of an asteroid to Earth for curation and study. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth. The asteroid is rich in organic material and the sample could tell us about the origins of life on Earth. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth.
Obtaining that sample, however, was no small feat. That's where APL's Small Body Mapping Tool came in handy. https://jhuapl.link/yqiTo Bennu and Back (3/5): 3D Mapping an Asteroid | #JHUAPL #NASA #OSIRISREx #ToBennuAndBackJohns Hopkins Applied Physics Laboratory2023-09-23 | This Sunday, Sept. 24th, the OSIRIS-REx mission will release a capsule containing a 4.5-billion-year-old sample of an asteroid to Earth for curation and study. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth. The asteroid is rich in organic material and the sample could tell us about the origins of life on Earth. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth.
Obtaining that sample, however, was no small feat. That's where APL's Small Body Mapping Tool came in handy. https://jhuapl.link/yqiTo Bennu and Back (2/5): Finding a Safe Place to Sample | #JHUAPL #NASA #OSIRISREx #ToBennuAndBackJohns Hopkins Applied Physics Laboratory2023-09-23 | This Sunday, Sept. 24th, the OSIRIS-REx mission will release a capsule containing a 4.5-billion-year-old sample of an asteroid to Earth for curation and study. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth. The asteroid is rich in organic material and the sample could tell us about the origins of life on Earth. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth.
Obtaining that sample, however, was no small feat. That's where APL's Small Body Mapping Tool came in handy. https://jhuapl.link/yqiTo Bennu and Back (1/5): Sampling an Asteroid | #JHUAPL #NASA #OSIRISREx #ToBennuAndBackJohns Hopkins Applied Physics Laboratory2023-09-22 | This Sunday, Sept. 24th, the OSIRIS-REx mission will release a capsule containing a 4.5-billion-year-old sample of an asteroid to Earth for curation and study. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth. The asteroid is rich in organic material and the sample could tell us about the origins of life on Earth.
This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth. Obtaining that sample, however, was no small feat. That's where APL's Small Body Mapping Tool came in handy. https://jhuapl.link/yqiTo Bennu and Back: Sampling an AsteroidJohns Hopkins Applied Physics Laboratory2023-09-22 | Seven years ago, NASA’s OSIRIS-REx spacecraft — short for Origins, Spectral interpretation, Resource Identification, Security, Regolith Explorer — set out for the small, top-shaped asteroid called Bennu to collect a sample from its surface. But that simple concept in words belies the physical challenges of these small asteroids that scientists and engineers had to overcome.
Researchers at the Johns Hopkins Applied Physics Laboratory (APL) in Laurel, Maryland, along with colleagues in Canada and across the United States, played a critical part in developing a solution.
On Sunday, Sept. 24th, the OSIRIS-REx mission will release a capsule containing a 4.5-billion-year-old sample of an asteroid to Earth for curation and study. This is the first time that NASA has returned an asteroid sample and is the largest asteroid sample ever delivered to Earth. The asteroid is rich in organic material and the sample could tell us about the origins of life on Earth.
Find out how they used APL’s Small Body Mapping Tool and autonomous technology that together helped make the sampling mission possible. https://jhuapl.link/yqi
Learn more about Johns Hopkins APL: https://www.jhuapl.edu/ OSIRIS-REx NASA page: nasa.gov/osiris-rexStARS: System to Augment Restorative SleepJohns Hopkins Applied Physics Laboratory2023-09-22 | We spend about one-third of our lives sleeping, but how much to we really understand it? Catch up on Johns Hopkins APL’s research and development efforts to actively elevate restorative sleep for health care and wellness.Happy birthday to the U.S. Air Force ✈️ 🇺🇸 | #JHUAPL #USAF #AirForce #FlyingHighJohns Hopkins Applied Physics Laboratory2023-09-18 | ...