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The Artemis II rollout is scheduled to begin no earlier than 7 AM ET NASA tomorrow (Saturday, January 17). The four-mile journey from the VAB to Launch Pad 39B should take between 8-12 hours at about one mile per hour, so you’ll have a long window to get a glimpse of the proceedings as they happen.

Best Places To Watch

Playalinda Beach will be ideal since it’s the closest public land to both the VAB and Pad 39B (as close as 3.6 miles to 39B from the parking lots). Lot 1 (the southermost) gives you the best angle toward the crawlerway route.

While the National Park Service has not announced any specific closures related to the rollout, it would be a good idea to call ahead to confirm that Playalinda is open and has not reached capacity. That’s when all the parking lots are full, and if it reaches that level of attendance, new entrants are denied. Also, keep in mind that an entrance fee is required. The best way to pay for that is to visit the NPS website here.

In Titusville

The Titusville waterfront on the Indian River is another great place to see Artemis II emerging and then heading towards LC-39B. The parks are free, there’s plenty of parking, with food and other options nearby.

Space View Park – Free, always open, and directly across the water with views of both the VAB and 39B

Max Brewer Bridge itself offers an elevated perspective if you can access it on foot (often closed to traffic for launches, but rollouts may be different).

Rotary Riverfront Park – a favorite for launch viewers, this easy-in, easy-out location off of US-1 will be a great spot to see Artemis II.

William J. Manzo Memorial Park one of Titusville’s lesser known parks, this location has a great view across the river to the VAB and LC-39B.

KSC Visitor Complex – They don’t appear to be offering special rollout viewing packages, and the VAB obstructs direct sightlines from many spots there anyway, so later in the day may be the best time to try to view Artemis II.

The Saturn V Center is the closest public facility within the complex grounds, but it is unclear if tour buses will be affected by the rocket move. Assuming everything works out and the public can get to the SVC, it will be a nice day after a cool start, so that may be the best option. Enquire at KSCVC for more information — things change fast around Kennedy Space Center and we do not want to mislead anyone by posting old or incorrect info.

Relax, You’ve Got All Day To See This

Since the rollout is a slow, multi-hour event rather than a blink-and-miss-it launch, you’ve got flexibility. About an hour after rollout begins, the rocket is expected to emerge from the VAB, offering the public its first full look at the United State’s first crewed moon rocket in over fifty years. Arriving around 8 a.m. should let you see it emerge and begin the trek to the launch pad. If you arrive at 10am, that’s fine, the rocket will have traveled only part of the way.

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NASA’s moon rocket is finally hitting the road.

The agency announced that the fully stacked Space Launch System rocket and Orion spacecraft will begin their four-mile trek from the Vehicle Assembly Building to Launch Complex 39B no earlier than Saturday, January 17, with first motion expected around 7 a.m. ET. The journey aboard Crawler-Transporter 2 will take up to 12 hours.

Artemis II Rollout Details
Artemis II Rollout: VAB to LC-39B
Distance Approximately 4 miles (6.4 km)
Speed 0.82–1 mph (1.3–1.6 km/h) loaded
Total Time 10–12 hours, depending on conditions and stops
Method Crawler-Transporter 2 (CT-2), a 6.6-million-pound vehicle
Purpose Transport the fully assembled rocket from the VAB to Launch Pad 39B for wet dress rehearsal and final launch preparations

Teams have been working around the clock to close out remaining tasks ahead of rollout, though the date could shift if additional time is needed for technical preparations or weather.

The rollout marks the beginning of final integration and testing for what will be the first crewed mission beyond Earth orbit in more than 50 years. Once at the pad, NASA astronauts Reid Wiseman, Victor Glover, and Christina Koch, along with Canadian Space Agency astronaut Jeremy Hansen, will conduct a final walkdown before launch preparations continue.

A wet dress rehearsal is planned for late January, during which teams will load more than 700,000 gallons of cryogenic propellants and run through countdown procedures. The earliest launch window opens February 6, with additional opportunities on February 7, 8, 10, and 11.

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playalinda beach
Playalinda. Photo: Charles Boyer

Canaveral National Seashore will implement temporary schedule changes at Playalinda Beach to support NASA’s upcoming Artemis II mission, the National Park Service announced on January 9th.

Beginning Sunday, January 12th, the Playalinda District will operate on reduced hours of 8:00 a.m. to 5:00 p.m., two hours shorter than the normal 6:00 a.m. to 6:00 p.m. schedule. The modified hours will remain in effect through January 31st.

Playalinda Beach Closures – Artemis II

Playalinda Beach Schedule Changes

Canaveral National Seashore – Artemis II Launch Support

Dates Hours Status
January 12 – January 30, 2026 8:00 a.m. – 5:00 p.m. Reduced Hours
January 31 – February 6, 2026* Closed
Day after successful launch 6:00 a.m. – 6:00 p.m. Normal Hours Resume
*Closure continues until day of successful Artemis II launch

For more information:
www.nps.gov/cana/planyourvisit/hours.htm
Phone: (321) 267-1110

Starting January 31st, the entire Playalinda Beach District will close completely and remain closed through February 6th—or until the day of a successful Artemis II launch. The closure encompasses the period when NASA’s first launch window opens for the historic crewed lunar mission.

Normal operating hours will resume the day following a successful launch.

Visitors planning trips to the seashore during this period should check the National Park Service website or contact the park directly for the latest access information.

Day OR Night Launch, Most Of MINWR Won’t Be Open For Spectators For Liftoff

The redundantly named Playalinda Beach (playa – beach, linda – beautiful in Spanish) offers some of the closest public viewing locations for launches from Kennedy Space Center and the north end of Cape Canaveral Space Force Station, but that will definitely not the case for Artemis II’s launch.

Not only will Playalinda be closed, but if Artemis I in 2022 serves as any guide, much of Merritt Island National Wildlife Refuge will be in the official security zone and the public will have no access, with KSC Police turning away unauthorized cars at the entrance to the Refuge (near the end of the Max Brewer Bridge on Beach Road.) On the north side, on FL-3, the Haulover Bridge was as far south as people were allowed.

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Crew 11 prepares to board Crew Dragon and launch to Station on August 1, 2025. Photo: Charles Boyer

NASA Administrator Jared Isaacman announced in a press conference today that NASA’s Crew 11 would return early from the International Space Station due to an unnamed medical issue with an unnamed member of the crew. The date and time of that return has not yet been determined, and will be announced once it is determined.

NASA astronauts Zena Cardman and Michael Fincke, JAXA astronaut Kimiya Yui, and Roscosmos cosmonaut Oleg Platonov comprise Crew 11.

“Yesterday, January 7th, a single crew member on board the station experienced a medical situation and is now stable. After discussions with Chief Health and Medical Officer Dr. J.D. Polk and leadership across the agency, I’ve come to the decision that it’s in the best interest of our astronauts to return Crew 11 ahead of their planned departure within the coming days.”

— NASA Administrator Jared Isaacman

Regarding the specifics of when Crew 11 will return, Isaacman added that, “We expect to provide a further update within the next 48 hours as to the expected anticipated undock and reentry timeline.” That’s Saturday afternoon. Stay tuned.

Crew 11 launched on August 1, 2025 and has spent 160 days in space since then. Originally planned to return next month after the arrival and handoff to Crew 12, which had planned to launch in mid-February.

Later, Isaacman said plainly, “This is not an emergency deorbit. We retain the capability to bring astronauts home in a matter of hours if necessary. So this is recognizing, first of all, we’re always going to do the right thing for our astronauts, but it’s recognizing it’s the end of the Crew 11 mission right now.”

Jared Isaacman, January 8, 2026. Via NASA Stream

So, one of the four astronauts has a serious enough issue to require testing or treatment on Earth, but it is not an immediate life-or-death emergency requiring Crew 11 to return to Earth with all possible haste. Instead, NASA is moving the timeline up for Crew 11’s return as a matter of prudence for one of its astronauts (or cosmonauts).

Once Crew 11 and Crew Dragon departs, ISS would be down to a skeleton crew: Sergey Kud-Sverchkov and Sergei Mikaev from Roscosmos and NASA’s Chris Williams. They would have only the Soyuz MS-28 spacecraft that docked on Nov. 27, 2025 as a return vehicle.

NASA is looking at accelerating the Crew 12 launch, but no new target date has been announced. “Alongside our international and commercial partners, NASA is evaluating their timeline to include earlier launch opportunities. We will provide more information when it’s available,” Isaacman announced.

What About Artemis II? Could This Issue Create A Delay?

Crew 12 is slated to fly in mid-February from The Cape, and launching earlier might have NASA preparing to launch two different crews on two entirely different missions in a very short timespan: Artemis II is currently scheduled to fly in early February. Launching Crew 12 earlier puts the two closer together on the calendar.

Asked if that would create a conflict within the agency, Isaacman replied to CBS News’s Bill Harwood that “These are totally separate campaigns at this point. We’re still evaluating what earlier dates would be achievable, if any, for Crew 12. So right now we’re going to look at all operations, all of our all of our standard process[es] to prepare for Crew 12 and look for opportunities if we can bring it in while simultaneously conducting our Artemis II campaign.”

Isaacman added that “There’s no reason to believe at this point in time that there would be any overlap that we’d have to de-conflict for.”

Crew 11’s motto is “Together We Rise.”

There is much more to come with this story.

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Blue Origin New Glenn NG-2 launches on November 13. 2025

2025 was an incredibly busy year in spaceflight, both here at the Cape and also globally. By Christmas, providers broke previous orbital launch records, with over 300 successful flights globally, largely driven by SpaceX’s Falcon 9 for Starlink satellite deployments.

The Cape’s numbers for 2025:

For a complete list of 2025 launches from Florida, you can click here.

Commercial Spaceflight

SpaceX: Launch Cadence at an Unmatched Scale

SpaceX further extended its dominance in 2025 with over 130 orbital launches across the year, the vast majority using its Falcon 9 rocket. The company continued flying at a pace unmatched by any other launch provider, supporting satellite deployments, ISS crew and cargo missions, and national security payloads in addition to continuing building out its wildly popular Starlink offering.

SpaceX IMAP Launch on September 24, 2025. Photo: Charles Boyer
SpaceX launching IMAP on September 24, 2025. At this point in the flight, the rocket was passing through the speed of sound. Photo: Charles Boyer

Starlink

On October 25, 2025, SpaceX launched its 10,000th Starlink satellite. Space.com quoted noted satellite tracker Dr. Jonathan McDowell of the Harvard–Smithsonian Center for Astrophysics, saying that there are currently 9,357 Starlink satellites in orbit, with 9,347 in operational positions. The constellation serves over 9 million customers across 100 countries and territories. It is estimated that the company adds around 20,000 new customers daily.

Reusable boosters remain central to that success. Several Falcon 9 first stages flew 20 or more times, reinforcing the idea that rapid reuse is no longer experimental but routine. One of its boosters, B1067, has now flown 32 times and is currently at SpaceX’s facilities at the Kennedy Space Center, being refurbished for another flight. The company has publicly stated that it seeks to certify Falcon 9 boosters for up to 40 flights, and in 2025, several of the company’s boosters have fewer than ten missions remaining to meet that goal.

Starship test flights also continued launching from Texas, focusing on vehicle upgrades, heat-shield performance, and recovery techniques aimed at future missions beyond Earth orbit. The company is also continuing to build out its Boca Chica infrastructure, with a new launch pad nearing completion at the end of this year. Flights from the new facility should take place in the first part of 2026.

SpaceX also received approval to begin converting Space Launch Complex 37 (SLC-37) at Cape Canaveral for Starship operations. The site, previously used by United Launch Alliance’s Delta IV, gives SpaceX a second major East Coast launch location and points to long-term plans for higher-energy missions beyond Falcon 9.

Meanwhile, NASA, the FAA and other relevant authorities are finishing an Environmental Impact Statement for another Florida-based Starship launch pad at LC-39A at Kennedy Space Center. The tower there has long been under construction, with work continuing apace at that facility in addition to the new pad a few miles south at SLC-37.

SpaceX has stated that its goal is to launch from the Cape in 2026.

SpaceX has also begun construction of a new “Gigabay” facility for Starship at its Roberts Road site at Kennedy Space Center. That facility is large — not quite the size of the venerable VAB, but large nonetheless — and should be completed in 2026.

Blue Origin: New Glenn Finally Flies

After years of development, Blue Origin reached orbit for the first time with the debut launch of its New Glenn rocket in 2025. Flying from LC-36 at Cape Canaveral Space Force Station, the successful flight validated the vehicle’s core systems and marked the company’s entry into the heavy-lift orbital launch market.

Blue Origin NG-1
Blue Origin NG-1 launch. Photo: Charles Boyer / Talk of Titusville

NG-1, Blue’s mission designation for the debut flight, also had a tertiary goal of landing the New Glenn first stage, but that effort was unsuccessful. The payload reached its target orbit, however, making the flight a rousing success for a company long discounted by many in the space community.

Momentum continued on New Glenn’s second launch, when Blue Origin successfully landed its reusable first-stage booster on its recovery ship ‘Jacklyn’. The recovery showed that the company’s emphasis on reusability was now operational and not theoretical, and it positioned New Glenn as a serious competitor in the heavy-lift category.

Notably, Blue’s second New Glenn flight was much smoother than the debut. This was an expected improvement, but it clearly showed that Blue had taken the lessons learned from NG-1 to heart, made operational improvements, and applied them to the NG-2 flight.

2025 also saw Blue Origin significantly advancing its Blue Origin Blue Moon lunar lander program, as it continued preparing its Blue Moon Mark 1 (MK1) lunar lander for its first demo mission to deliver payloads to the lunar South Pole, presumably on the New Glenn NG-3 flight in early 2026.

Plans to reuse ‘Never Tell Me the Odds’, the booster used for the NG-2 flight, on NG-3. If successful, Blue Origin will achieve landing and then reusing a booster in relatively quick succession.

Blue is continuing development of its second lunar lander, Blue Moon Mark 2 (MK2). While they have made few public statements on the status and progress of the project, it is believed that they are building a flight-capable cabin for testing and crew training for the larger MK2, one of two of NASA’s selected crewed landers. Additionally, Blue is said to be working on life support, thermal control, and docking systems for MK2. Undoubtedly, the results from the MK1 mission will greatly inform the future designs of MK2.

Finally, Blue Origin created a new internal group focusing on national security missions for the US Government, and to run it they hired ULA’s CEO, Tory Bruno.

Tory Bruno
Tory Bruno

United Launch Alliance: A Year Full Of Change

2026 was a transitional year for United Launch Alliance, and one that has many observers wondering about the company’s long-term prospects, especially now that their former leader, Tory Bruno, has left to work for the competition.

One one hand, the company has an estimated 70 launches backlogged, with the majority being LEO satellites for Amazon’s Leo telecommunications constellation. On the other, Vulcan has been slow to build any cadence, with August 2025 being the last launch and NET March 2026 for its next flight. That’s not going to trim the backlog appreciably.

The reasons go back to last year: October of 2024, Vulcan’s second flight, CERT-2 saw one of its solid rocket boosters (SRB) nozzles detach due to a manufacturing defect in the nozzle’s internal insulator, causing an off-nominal burn. However, the main engines compensated, kept the rocket on course, and the mission still achieved its orbital goals. The company and Northrop Grumman conducted an investigation to identify the issue and prevent any recurrence.

That took several months and most of ULA’s inertia but the company continued to soldier on with other missions while it waited for the results and corrections to Vulcan.

In written testimony to Congress in May 2025, Major General Stephen G. Purdy stated the Vulcan program had performed unsatisfactorily over the past year. He noted that “major issues with the Vulcan have overshadowed its successful certification,” directly resulting in the grounding of four national security missions.

Due to Vulcan’s delays, the original 60/40 mission split favoring ULA under the NSSL Phase 2 contract shifted closer to 54/46 (or nearly 50/50) in 2025, as more missions were awarded or reassigned to SpaceX. Now, Blue Origin is also in the competition future NSSL launches, with Blue expected to complete NSSL Certification next year. SpaceX isn’t going anywhere either, leaving ULA walking a tightwire in the coming year.

On August 13, 2025, ULA successfully launched its first national security mission for the U.S. Space Force using a Vulcan VC4S. The mission deployed NTS-3, an experimental navigation satellite designed to enhance GPS resilience and was a complete success.

With its Delta family retired, ULA successfully conducted four major launches for Amazon’s broadband constellation (Project Kuiper, now Amazon Leo) using Atlas V rockets. All of those missions were textbook perfect, as has been customary for the rocket.

ULA is planning to increase its launch cadence in 2026, and has all but completed a second launch tower and vertical integration facility for Vulcan.

Finally, close to the Christmas holiday, ULA announced that CEO Tory Bruno had resigned “to pursue another opportunity.” For Bruno, that opportunity turned out to be leading Blue Origin’s new National Security Group, where he will ostensibly be competing with his old company for lucrative USSL launches. At Blue Origin, Bruno will have a reusable rocket system in hand, while ULA will compete with its Vulcan rocket and the vast depth of experience the company has on its resume.

John Elbon. Credit: ULA

ULA COO John Elbon was named as the Interim CEO in a press release issued today. John Elbon is the chief operating officer for United Launch Alliance (ULA). Before his new role, Elbon was responsible for the operations of the Atlas, Delta, and Vulcan Centaur launch vehicle programs, including design, engineering, integration, production, quality assurance, and program management.

Previously, Elbon served as vice president and program manager for Boeing’s Commercial Programs. In that position, Elbon managed Boeing’s efforts on NASA’s Commercial Crew Space Act Agreements, including the first two phases of the Commercial Crew Development, which for Boeing was the Starliner CST program.

Rocket Lab

In 2025, Rocket Lab completed 21 Electron launches, maintaining one of the highest success rates in the small-satellite market and continuing to serve commercial, civil, and national security customers. Electron missions flew from both New Zealand and Virginia, reinforcing Rocket Lab’s value as a responsive, geographically flexible company.

At the same time, much of Rocket Lab’s strategic focus shifted toward the future with continued development of Neutron, its upcoming medium-lift, partially reusable rocket. Throughout 2025, the company advanced engine testing, structural manufacturing, and launch infrastructure work at Wallops Island, Virginia.

A Rocket Lab Electron launching from Wallops Island in Virginia.
A Rocket Lab Electron launching from Wallops Island in Virginia.

While Neutron did not fly during the year as the company had expected, visible progress signaled Rocket Lab’s intent to move beyond small payloads and compete for larger commercial constellations and U.S. government missions later in the decade.

Beyond launch vehicles, Rocket Lab also expanded its space systems business, delivering spacecraft components, solar panels, and complete satellites to a growing customer base.

Rocket Lab’s share price rose sharply in 2025, with investors seeing significant gains in their positions.

RKLB$ stock graph
Via Google

Taken together, 2025 was not a year of dramatic firsts for Rocket Lab, but one of consolidation and preparation — proving it could sustain a high launch tempo today while methodically building the capability to play a much bigger role in the launch market of the future.

NASA

The year was marked by layoffs, with uncertainty and dread a prevalent mood for many at the agency as the new presidential budget called for drastic cuts in NASA’s science programs.

The year also saw a great deal of preparation for a return to the Moon under Artemis, a major anniversary for the International Space Station, and visible progress in science, aviation, and artificial intelligence. It was also a year of leadership change, with private-space veteran Jared Isaacman nominated and later confirmed to a senior NASA leadership role, signaling closer alignment between the agency and the commercial space sector.

The year set the tone for a decade defined by sustained activity rather than isolated milestones.

Lunar exploration remained a central focus. NASA continued methodical preparations for Artemis II, the first crewed mission to orbit the Moon since Apollo, completing the stacking of the Space Launch System rocket and Orion spacecraft and running dozens of mission simulations to stress-test procedures and crew timelines. At the same time, the Commercial Lunar Payload Services program delivered tangible results.

Firefly Aerospace’s Blue Ghost Mission One achieved a successful lunar landing in early March, while Intuitive Machines’ second Nova-C lander reached the surface days later, gathering data despite landing on its side. Together, the missions reinforced NASA’s strategy of using commercial partners to deliver science and technology to the Moon more frequently and at lower cost.

Beyond the Moon, NASA continued expanding its deep-space science portfolio. In November, the twin ESCAPADE spacecraft were launched toward Mars to investigate how the planet’s weak magnetic environment interacts with the solar wind, a key factor in understanding how Mars lost much of its atmosphere. Planning for future lunar surface science also advanced when Blue Origin was selected to deliver the VIPER rover to the Moon’s south pole later in the decade, keeping the agency’s search for water ice on track.

Space science and Earth observation saw several high-profile missions reach orbit in 2025. In March, NASA launched the SPHEREx space telescope to conduct an all-sky infrared survey while also deploying the PUNCH mission to study the Sun’s outer atmosphere and the origins of the solar wind.

Over the summer, the NISAR satellite, a joint mission with India’s ISRO, lifted off to provide unprecedented radar mapping of Earth’s ice sheets, forests, and changing landscapes. Astronomers also turned their attention outward as NASA coordinated global observations of 3I/ATLAS, only the third confirmed interstellar object ever detected passing through our solar system.

Closer to home, the Lucy spacecraft added another successful asteroid flyby to its mission, passing 52246 Donaldjohanson and returning detailed images that will help refine models of early solar system formation.

Human spaceflight milestones were just as prominent aboard the International Space Station. In November, the ISS marked 25 consecutive years of continuous human presence in orbit, a milestone that underscored its role as a testbed for long-duration missions beyond Earth.

Earlier in the year, astronaut Suni Williams set a new record for cumulative spacewalk time by a woman, reflecting both the station’s ongoing maintenance demands and the growing experience of its crews. Williams had the opportunity to mark that achievement because she and Butch Wilmore were part of the ill-fated Boeing CFT mission that launched in 2024 and led to an unexpected nine-month stay on station. The Boeing CFT astronauts joined Crew 9, which launched in September 2024 and landed in the Pacific Ocean on March 18, 2025.

Logistics capabilities also expanded with the arrival of Northrop Grumman’s first Cygnus XL cargo spacecraft, which delivered larger payloads and increased flexibility for station resupply. SpaceX provided the lift for Cygnus, as Northrop Grumman has yet to complete development of a new Antares 300-series replacement.

NASA also made visible progress in aviation and emerging technologies. The X-59 quiet supersonic aircraft completed its long-awaited first flight in October, validating a design meant to dramatically reduce sonic booms and potentially reopen the door to commercial supersonic travel over land.

In materials science, the agency’s heat-resistant superalloy GRX-810 earned recognition as NASA’s 2025 Commercial Invention of the Year, highlighting work aimed at improving engines and structures for extreme environments.

Taken together, 2025 was less about a single headline mission and more about steady progress across many fronts. NASA strengthened its lunar pipeline, celebrated a quarter-century of continuous human spaceflight, launched major new science missions, and laid the groundwork for how future exploration will be managed and analyzed. They also got a new administrator after a tumultuous nomination process. Jared Isaacman will bring many new ideas and changes to the agency, changes that will hopefully rejuvenate and reinvigorate the US space program.

Others

Sierra Space

In 2025, Sierra Space moved its Dream Chaser program through a series of important ground milestones while also reworking its near-term flight plans. The spaceplane, named Tenacity, completed extensive pre-flight testing, including electromagnetic compatibility checks and runway tow trials, clearing several technical hurdles ahead of flight. That flight, planned for 2024, will now take place in 2026. Maybe.

The program’s first mission was significantly reshaped. What was initially planned as a cargo run to the International Space Station was revised into a standalone orbital demonstration, now targeted for late 2026. NASA amended its contract with Sierra Space, removing guaranteed ISS delivery missions as the company redirected more attention toward defense and national security work.

As a result, Tenacity’s debut will focus on proving core flight and reentry capabilities rather than docking operations. The change reflects both development challenges and the additional certification steps required for ISS missions. While near-term station flights are no longer assured, Dream Chaser could still play a role in future logistics, including potential cargo deliveries to commercial space stations such as Orbital Reef, once the vehicle completes its initial orbital testing.

Relativity

Eric Schmidt

In 2025, Relativity Space entered a new phase after a major leadership shakeup. In March, Eric Schmidt stepped in as chief executive following a substantial investment in the company. Under his leadership, Relativity moved away from its earlier goal of fully 3D-printed rockets, adopting a more pragmatic hybrid manufacturing strategy while accelerating development of its larger, reusable Terran R launch vehicle.

Schmidt is a former Google

Stoke Space

Stoke Space, the Kent, Washington, company founded by former Blue Origin and SpaceX employees, had a good 2025, making major progress toward the first launch of its Nova rocket.

Rockets need launch pads, and Stoke has rebuilt SLC-14 at Cape Canaveral Space Force Station to modern standards for Nova. This is no small accomplishment, and on top of that, Stoke was respectful of the history of 14: this is where John Glenn launched in Mercury-Atlas 6, becoming the first American to orbit the Earth.

As for Nova itself, work is focused on final hardware qualification as the company simultaneously activates SLC-14. Stoke had previously planned for a 2025 debut of Nova, but mid-year, the company shifted to the right on the launch calendar in order to complete SLC-14 and to iron out any remaining issues with Nova.

The 40.2-meter (132-foot) tall rocket is expected to fly in the early part of next year. Stoke is also planning to slowly introduce reusability, so expect the first launch to be expendable.

Boeing

In 2025 Boeing welcomed a new CEO, Kelly Ortberg, previously the president and CEO of Rockwell Collins. Ortberg promised major changes throughout the company, including its spaceflight division.

In November 2025, NASA reduced Boeing’s Commercial Crew contract from six planned missions to the International Space Station (ISS) down to four. This followed technical issues during the 2024 crewed flight test that necessitated the astronauts’ return on a SpaceX vehicle in early 2025. The next mission for Starliner will be uncrewed and carrying cargo, but no date for that mission has been announced.

The news was not all bad for Boeing: their autonomous X-37B spaceplane continued its eighth mission, conducting long-duration orbital experiments as well as novel orbital maneuvers that can quickly place the spacecraft in a new orbit very quickly. In the quickly militarizing orbital environment, this is a tactical advantage yet to be demonstrated by any other nation.

The X-37B. Credit: Boeing
The X-37B. Credit: Boeing

Boeing also continued working on the SLS core stage. It’s Artemis II hardware is in the VAB awaiting rollout and at the time of this writing, the core stage for Artemis III is in an advanced state of manufacturing. After that, it is difficult to tell if the SLS rocket will be canceled by NASA and the Trump administration or if Boeing and others will continue manufacturing the rocket.

Taken overall, the year was an incredibly exciting one, but also one that sets the stage for the future: in 2026 humans will return to cislunar space and further development for landing on the lunar surface will continue apace. Vast Space is planning to launch Vast-1, the first privately owned and operated space station in LEO. We’ll also see SpaceX passing 10,000 Starlink satellites on orbit at some point in 2026, along with Amazon’s nascent Leo constellation starting to take form. There will be new rockets making their debut, and in between, lot of launches, especially Falcon 9 launches.

Stay tuned.

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Tory Bruno

Former ULA leader Tory Bruno has joined Blue Origin and will head a new division, the National Security Group. He will report to CEO Dave Limp. The move comes three days after United Launch Alliance announced Bruno’s departure as its chief executive.

Bruno gave his most extensive comments to date on leaving ULA and taking on the new role at Blue Origin:

Specific details of Blue Origin’s plans for the new group have not been announced. It’s reasonable to say that, with New Glenn now in operation, they will first focus on completing their NSSL certification, followed by securing contracts for the National Security Space Launch (NSSL) program.

Blue’s Path To National Security Launches

The gating item for Blue Origin is gaining NSSL certification. All signs point to Blue choosing a four-launch qualification cycle, and with two New Glenn launches completed in 2025, Blue Origin is likely to have the needed launches under their belt next year in 2026.

That began in 2022 when the U.S. Space Force approved Blue Origin’s New Entrant Certification plan. Launch providers can choose among four certification tracks, each with different flight requirements—ranging from 2 to 14—and varying levels of government technical oversight. Fewer flights mean more governmental scrutiny.

Certification Flights like NG-2 are just one part of the broader certification framework. They provide critical data to confirm that the launch system is mission-ready, helping ensure U.S. satellites that support both warfighters and intelligence operations are launched reliably and securely.

Sitrep After NG-2

SSC took another key step in certifying Blue Origin’s New Glenn for National Security Space Launches (NSSL) following the successful NG-2 mission on November 13th from Space Launch Complex 36 at Cape Canaveral Space Force Station.

SSC, one of the U.S. Space Force’s three field commands, manages a $15.6 billion annual budget focused on acquiring, developing, and deploying space capabilities that maintain U.S. dominance in orbit and beyond.

The U.S. Space Force’s Assured Access to Space (AATS) Certification Team from System Delta 80 (SYD 80) was on-site to observe the rocket’s second flight, a requirement under Blue Origin’s certification process with the NSSL program. SYD 80 oversees the program in coordination with the National Reconnaissance Office (NRO), jointly responsible for launch services supporting national defense and intelligence missions.

“This launch marks a major milestone,” said Lt. Col. Brian Scheller, SSC’s system program manager and chief engineer for SYD 80. “New Glenn is getting closer to supporting our highest-priority space missions.”

Scheller nor SSC gave any additional insight regarding Blue Origin’s position in the certification process, but it is likely that the company took another major step forward with yesterday’s successful launch.

What Are NSSL Launches For?

NSSL payloads are generally high-value assets not only in terms of cost but also in the time required to construct them. If the payload is lost, then the asset must be replaced, something that takes time — time that the original was not on station, contributing to the nation’s defense.

System Delta 80 plays a key role in the Space Force’s mission of assured access to space. It conducts launch and range operations alongside the 30th and 45th Space Launch Deltas and maintains essential test and launch infrastructure. These efforts support national goals in defense, science, and industry.

With an experienced leader of the caliber of Tory Bruno at the helm of Blue Origin’s national defense efforts, expect them to assume an essential role in highly lucrative NSSL launches over the next few years.

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Today, in 1968 aboard Apollo 8, NASA astronaut Bill Anders captured “Earthrise” — one of the most iconic photographs of the Apollo era. For the first time, humans were able to the Earth from the perspective of the moon.

Later, Anders recalled seeing “…a very fragile looking Earth, a very delicate looking Earth, I was immediately almost overcome by the thought that here we came all this way to the Moon, and yet the most significant thing we’re seeing is our own home planet, the Earth.” Using a highly modified Hasselblad 500 EL camera outfitted with a 250mm telephoto lens, Anders, with a click of the button, had captured a moment of personal epiphany and perhaps one of the great works of art of our time.

In 2018, the International Astronomical Union named a 25-mile-diameter crater “Anders’ Earthrise” in honor of both the man and the photograph. A smaller crater was also renamed “Eight Homeward.” You can see both of the memorialized craters in the iconic Earthrise photograph.

Fast Forward To 2026

Soon, the Artemis II astronauts will travel further away from Earth than Apollo 8, about 250,000 miles (400,000 km) from home. Depending on the launch date, it may even eclipse Apollo 13, humanity’s current record holder, which was farther from Earth than any other mission. If so, on that spaceflight, they will have the opportunity to capture views of our home planet from places humanity has never been.

Artemis II Gear

Artemis II’s astronauts will have two Nikon D5 digital single-lens reflex cameras available inside the cabin. These are professional-grade still and video cameras, selected both for public affairs imagery and for the crew’s own photographic priorities. Equipped with wide-angle and long-range lenses, the cameras are expected to capture everything from close-quarters life inside Orion to distant views through the spacecraft’s windows during the lunar flyby.

The choice of the Nikon D5 was not accidental. The camera is known for its low-noise performance and high dynamic range, qualities that allow it to handle the stark contrast between sunlit spacecraft surfaces and deep shadow in space. The same will be true for a brightly lit lunar environment, where the sunlight surfaces and craters in shadow are like night and day.

Just as critical for a deep-space mission, the D5 has shown strong resistance to radiation effects, helping ensure reliable operation beyond low Earth orbit where exposure levels are significantly higher. Still, it is an old camera by today’s standards, but just because something is old does not mean it is not useful.

Specification Details
Production start January 2016
Production ended February 2020
Sensor type CMOS
Sensor size 35.9 mm × 23.9 mm (FX)
Effective resolution 20.8 MP
Image dimensions 5568 × 3712
Size 160 × 158.5 × 92 mm
Weight 1405 g
Card types CF / XQD
Ports USB 3.0, HDMI, Ethernet
ISO 100–102,400
FX vs DX: FX is Nikon’s full-frame sensor format, favored for spaceflight because it handles extreme contrast and low-light conditions more effectively than smaller DX sensors.

Video from the Nikon cameras can also be routed through Orion’s onboard ZCube encoder, allowing selected footage to be compressed and sent to the ground during the mission. Bandwidth limitations mean not everything can be transmitted live, but the system supports high-definition and ultra-high-definition recording, preserving higher-quality footage for return with the spacecraft after splashdown.

An astronaut on EVA with a Nikon D5.
Photo: NASA.

Nikon’s History With NASA

Nikon and NASA have had a working relationship since Apollo 15.

For much of the past decade, Nikon DSLRs formed the backbone of ISS still photography. Cameras such as the Nikon D4, released in 2012, and later the Nikon D5, released in 2016, became familiar tools for astronauts documenting everything from spacewalk preparation to dramatic Earth imagery through the station’s windows. These cameras were favored for their ruggedness, low-light performance, and compatibility with a wide range of lenses already qualified for spaceflight.

Nikon NASA Timeline
Year Milestone
1971 The Nikon Photomic FTN* (NASA specifications) and NIKKOR lens were used on Apollo 15.
1980 The “Small Camera”, based on the Nikon F3 film SLR camera and equipped with a motor drive, and the F3 “Big Camera”, which utilized long film, were delivered to NASA.
1981 The “Small Camera” was used aboard the Space Shuttle Columbia launched the following year.
1999 The Nikon F5 film SLR camera and AF NIKKOR lens were carried aboard the Space Shuttle Discovery to photograph extravehicular activities (EVA).
2008 The Nikon D2XS digital SLR cameras were delivered to NASA. Six D2XS cameras are used in space to document activities such as inspection and maintenance.
2013 A total of 38 Nikon D4 digital SLR cameras, 64 NIKKOR lenses, including the AF-S NIKKOR 800mm f/5.6E FL ED VR, and various other accessories were delivered to NASA.
2013 These products are used, among other things, to check solar panels and outer surfaces of the ISS.
2016 An additional 10 Nikon D4 digital SLR cameras were delivered to NASA, and are also used to check solar panels and outer surfaces of the ISS.
2017 10 unmodified Nikon D5 DSLR bodies were sent to the ISS on Orbital OA-8 (November 12) to replace older models, reusing existing lenses.
2024 Multiple Nikon Z9 bodies and lenses were delivered on Northrop Grumman’s NG-20 resupply mission (launched January 30), marking the first time Nikon’s mirrorless technology was used on the ISS and replacing the D5/D6 cameras as the primary imaging systems.

The most prominent Nikon camera currently in use on the ISS is the Nikon Z9, which was delivered to the station in 2022. The addition of the Z9 represented a major step forward for on-orbit imaging, offering a high-resolution stacked sensor, fast readout, and strong video capability without a mechanical shutter. Astronauts use it for Earth observation, operational documentation, and public-affairs photography, often paired with long telephoto lenses for detailed imagery of weather systems, cities, and natural features.

That said, using the D5 in lieu of the Z9 is an interesting choice.

Specification Nikon D5 Nikon Z9
Camera type DSLR Mirrorless
Production start 2016 2021
Sensor type CMOS Stacked CMOS
Sensor size 35.9 mm × 23.9 mm (FX) 35.9 mm × 23.9 mm (FX)
Effective resolution 20.8 MP 45.7 MP
Image dimensions 5568 × 3712 8256 × 5504
ISO range 100–102,400 64–25,600
Viewfinder Optical Electronic
Video 4K 30p 8K 60p
Card types CF / XQD CFexpress B
Weight ≈ 1405 g ≈ 1340 g
ISS role Legacy still camera Primary ISS handheld

Storage space and unimpeachable reliability are possibly the basis of NASA’s decision to go with the older camera, or it could be that the selection was made before the agency had experience with the newer gear. The Z9 will be part of the Artemis III roster and will be used on the lunar surface.

In addition to the NASA-owned handheld cameras, Artemis II will also carry a set of National Geographic cameras. These handheld GoPro units are flying as a dedicated payload for a Disney and National Geographic documentary. The cameras will be operated by the crew throughout the mission, but their footage will not be downlinked during flight. Instead, the recorded material will return to Earth aboard Orion, offering a behind-the-scenes look at the mission once the capsule is recovered.

Other Cameras Aboard Artemis II

Supporting all of this handheld imagery is a dense network of fixed cameras mounted throughout the spacecraft. Inside the cabin, wireless cameras and human health monitoring cameras document crew activity and vehicle performance, particularly during dynamic phases such as launch, ascent, entry, and landing. One of these interior cameras will stream live video from crew ingress through ascent, giving mission controllers real-time insight into conditions inside Orion.

Outside the spacecraft, fixed exterior cameras track critical events such as solar array deployment, spacecraft separation, and vehicle inspections. These views are essential for engineers, but they also continue a tradition dating back to Apollo, showing the realities of spaceflight from the spacecraft itself. Altogether, 28 cameras will support Orion during Artemis II, making it one of the most extensively documented human spaceflight missions to date.

Artemis II will not land on the Moon, but will very possibly carry humans farther from Earth than ever before, and the imagery plan reflects a careful balance. Engineering needs come first, but with crew handheld cameras and a dedicated National Geographic payload onboard, Artemis II is also set to capture the human experience of deep space, one frame at a time.

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john kraus swearing in small

John Kraus, the Satellite Beach-based launch photographer extraordinaire, announced that he has a role on Jared Isaacman’s staff as a Special Communications Assistant to the NASA Administrator.

I’m humbled and energized to bring my passion for photography and storytelling to NASA and work under NASA Administrator Jared Isaacman as Special Communications Assistant to the Administrator.

With my focus now fully on working alongside the best and brightest at NASA, my independent media coverage and for-hire work comes to an end. Thank you all for following along over the years! Be sure to follow NASA’s channels to see great content from across the agency.

I have deep respect for NASA’s communicators and creatives, individuals whose work I’ve followed and admired for a long time. I’m profoundly grateful for the opportunity to work with them to help continue sharing NASA’s story with the widest audience possible and inspiring the next generation to look up to the stars. Under Administrator Isaacman’s leadership, we will do just that.

John Kraus
Special Communications Assistant to the Administrator
NASA

Kraus is well-qualified for this role. While he cut his teeth as an award winning launch and space photographer, John was also the Content Director for the Polaris Program, which saw the first privately conducted EVA in Earth orbit. Additionally, Kraus was responsible for photographing campaign milestones and sharing the highly popular Polaris story via social media.

Presumably the role starts immediately and that at a good time as the agency prepares to ramp up its launch campaign for the Artemis II mission, mankind’s first foray past Earth orbit in fifty-four years.

John Kraus
Photo: Polaris Program

First recognized nationally in 2016 when Kraus was sixteen years old and still in high school, in the past ten year he’s covered 385 launches globally, including human spaceflight: training, launch, and splashdown/recovery operations.

Kraus has also photographed and reported on static fires, engine test fire campaigns and zero gravity flights. When he’s not covering space, you might find him in the rear seat of a high-performance fighter aircraft, capturing air-to-air shots. Kraus has spent time in an L-39, Alpha Jet and a Russian-made MiG-29.

While he now has a new role, you can take a look at John’s work on his website, the Polaris Progam Flickr page, the Polaris Program official website, his personal Instagram and of course many major publications worldwide.

Talk of Titusville has reached out to Kraus for a comment about his new role and we will add them when he has time to reply.

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One down, ten to go: United Launch Alliance launched an Atlas V 551 this morning from SLC-41 at Cape Canaveral in partly cloudy cool winter skies. Launch was at the top of the window, 3:28 AM ET.

Aboard the venerable rocket were 27 Amazon Leo satellites, which will now join the other 152 satellites in low Earth orbit (LEO) as Amazon begins building its orbital-based Internet service offering. The company plans for over 3,200 in its full constellation, aiming for initial service by early 2026.

“One of our primary missions at ULA is to be a catalyst in connecting the world,” said Gary Wentz, ULA vice president of Atlas and Vulcan programs. “Partnering with Amazon contributes to their mission of bridging the global digital gap. We thank the Amazon Leo team for their continued collaboration.”

 Trajectory was northeastward, at roughly 44-45º, aiming for a final orbit inclination of around 51.9º at roughly 630 km (391 miles.)

Tonight’s launch leaves only ten Atlas V’s remaining: six for Starliner, four more for Amazon Leo. The rocket has been in service for over 23 years, since its inaugural launch on August 21, 2002. Originally designed and developed by Lockheed Martin for the U.S. Air Force’s EELV program, with manufacturing/operations later consolidated under ULA. It has launched over 100 missions to date, but will be replaced by the new ULA-designed Vulcan rocket.

Launch Replay

Next Launch

Next Launch: Falcon 9 Block 5 | Starlink Group 6-99

Go for Launch Kennedy Space Center • LC-39A

Mission Starlink Group 6-99 (29 satellites)
Organization SpaceX
Rocket Falcon 9
Launch Site Kennedy Space Center, Florida, USA
Pad Launch Complex 39A (LC-39A)
Window Opens Wednesday, 12/17/2025 • 7:19:00 AM (ET)
Window Closes Wednesday, 12/17/2025 • 11:19:00 AM (ET)
Destination Low Earth Orbit
Status Info Current T-0 confirmed by official or reliable sources.
Mission Description A batch of 29 satellites for the Starlink mega-constellation — SpaceX’s project for a space-based Internet communication system.
Countdown (to window open)
As of: (your local time)
Launch times are subject to change due to weather, range operations, and mission requirements.
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ULA is planning to launch another batch of 29 satellites for Amazon’s nascent Leo constellation early Tuesday morning aboard one of its remaining Atlas V rockets. Liftoff is currently scheduled for sometime between 3:28 and 3:57 AM EST.

At A Glance

Launch Preview — At a Glance
As of: December 14, 2025 (America/New_York)
Mission Atlas V 551 | Amazon Leo (Project Kuiper)
Status Go for Launch
Current T-0 confirmed by official or reliable sources.
Rocket Atlas V 551
Organization United Launch Alliance
Location Cape Canaveral SFS, FL, USA
Pad Space Launch Complex 41 (SLC-41)
Window Opens: Tuesday, December 16, 2025 — 3:28 AM ET
Closes: Tuesday, December 16, 2025 — 3:57 AM ET
(29-minute window)
Countdown
Loading countdown…
Target: 3:28 AM ET (Window Open)
Destination Low Earth Orbit
Official Stream ULA Mission Coverage / Webcast
Mission Notes Amazon Leo (formerly Project Kuiper) is a planned broadband mega-constellation in Low Earth Orbit, managed by Kuiper Systems LLC (a subsidiary of Amazon). Planned: 3,276 satellites in 98 orbital planes across three orbital layers at ~590 km, 610 km, and 630 km altitude.
Tip: Times are shown in Eastern Time (America/New_York). Launch schedules can change quickly due to weather and range operations. If your platform strips scripts, the countdown may not display.

Weather

The 45th Weather Squadron of Space Launch Delta 45 has released their L-2 forecast, and at this time, it’s not very positive: an 80% chance of NO-GO weather.

Trajectory

Northeastward. Estimated Launch Azimuth: ~44-45°, targeting a 51.9 degree inclination orbit.

Facing eastwards, the launch will be right-to-left.

Launch Viewing: In Person

If you are planning to be up to watch this launch, here’s a list of good places to go see it.

Best Public Viewing Spots for ULA Launches from SLC-41 (Cape Canaveral) — Pre-Dawn Hours
Area Spot Distance to SLC-41 Notes
Port Canaveral SR-528 Bennett Causeway pull-offs ~10–11 mi Open causeway views; liftoff generally unobstructed. 24/7 public road access. Arrive early; bring chairs.
Port Canaveral SR-401 / Port waterfront ~10–12 mi ⚠️ Views toward pads, but liftoff can be obstructed by port structures or cruise ships. 24/7 road access.
Port Canaveral Jetty Park (pier & beach) ~11–12 mi 💵 ⚠️ Park fee; 24-hr access for campers. Day visitors check gate hours. Liftoff may be blocked by cruise ships. Jetty Park info.
Titusville / US-1 Max Brewer Bridge & Parrish Park ~11–13 mi Elevated bridge vantage; liftoff generally unobstructed. 24/7 public access. Fills quickly even pre-dawn.
Titusville / US-1 Space View Park ~12–14 mi Riverfront views; liftoff generally unobstructed. Typically accessible for launches; verify with city.
Titusville / US-1 Rotary Riverfront Park ~12–14 mi Open river views; liftoff generally unobstructed. Moderate parking; typically accessible for launches.
Titusville / US-1 Kennedy Point Park ~12–14 mi Long riverfront; liftoff generally unobstructed; good tripod space. Typically accessible for launches.
Cape Canaveral (city) Cherie Down Park ~12–13 mi ⚠️ Beach access 24/7; parking lot may close at night. Dune/vegetation can block first seconds—go to shoreline.
Cocoa Beach Cocoa Beach Pier area ~15–17 mi 💵 Park officially closed pre-dawn; beach remains accessible. Pier facilities closed. Street parking; horizon view unobstructed.
Cocoa Beach Alan Shepard Park ~16–18 mi 💵 Park officially closed pre-dawn; beach remains accessible. Liftoff generally unobstructed from shoreline.
Cocoa Beach Lori Wilson Park ~17–18 mi Park officially closed pre-dawn; beach remains accessible. Large beachfront with unobstructed views.
⚠️ Potential obstruction 💵 Fee or paid parking
Note: Distances are approximate straight-line measures from SLC-41. This list is filtered for locations accessible during pre-dawn hours (~3:30 AM). Florida beaches are generally accessible 24/7, but parking lot gates may close at night—arrive early or use street parking. Access, fees, and closures change by mission—verify on launch day.

Launch Viewing: Streaming

Live Streaming Options for ULA Atlas V LA-04 Launch
Source Coverage Starts Notes
ULA Official L-20 minutes Official ULA webcast with mission commentary and clean pad views.
Spaceflight Now ~L-60 to L-30 min Independent coverage with expert commentary. Often includes pre-launch discussion and post-launch analysis.
NASASpaceflight ~L-60 to L-30 min In-depth technical commentary. Multiple camera angles when available. Active live chat community.
Note: Coverage start times are approximate and may vary. Check each channel for the official stream link closer to launch. All times are estimates based on typical coverage patterns.
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