Space

A seemingly abnormal buildup of material from Falcon 9’s second stage was seen in the livestream of SpaceX’s Starlink 9-3 mission last night. The livestream ended before the actual failure of the spacecraft occurred.
Photo: SpaceX livestream

Last night in California, SpaceX launched another group of Starlink satellites from California and experienced a failure of the second stage when the mission got to the point of a second burn intended to circularize the orbit of the spacecraft.

Company founder Elon Musk stated on the X platform that, “Upper stage restart to raise perigee resulted in an engine RUD for reasons currently unknown. Team is reviewing data tonight to understand root cause.

Starlink satellites were deployed, but the perigee may be too low for them to raise orbit. Will know more in a few hours.”

Musk added that “We’re updating satellite software to run the ion thrusters at their equivalent of warp 9. Unlike a Star Trek episode, this will probably not work, but it’s worth a shot. The satellite thrusters need to raise orbit faster than atmospheric drag pulls them down or they burn up.”

As Musk states, Warp 9 is from Star Trek, and in the show, that meant that the ship was traveling as fast as its engines allowed. That was only used in emergency situations, and that’s effectively what the Starlink satellites are in: a race to raise their orbit above atmospheric drag before they lose too much velocity and drop out of orbit. Since then, no update has been provided by SpaceX or Musk.

Last night’s failure ended a streak of 284 consecutive 100% mission successes for the company. It should be noted, however, that the first stage booster performed nominally, that it landed on the drone ship ‘Of Course I Still Love You’ offshore safely as intended and that prior to its failure that the second stage did achieve orbit, albeit one that may not be useful for the payload.

SpaceX Statement (July 12, 2024)

SpaceX made the following statement on its website this afternoon:

“On July 11, 2024, SpaceX launched Falcon 9 with 20 Starlink satellites from Space Launch Complex 4E at Vandenberg Space Force Base. Falcon 9’s first stage performed nominally, carrying the second stage and Starlink satellites to orbit, separating from the second stage as expected, and returning to Earth for a successful droneship landing, representing SpaceX’s 329th recovery of an orbital class rocket to-date.

Falcon 9’s second stage performed its first burn nominally. However, a liquid oxygen leak developed on the second stage. After a planned relight of the upper stage engine to raise perigee – or the lowest point of orbit – the Merlin Vacuum engine experienced an anomaly and was unable to complete its second burn. Although the stage survived and still deployed the satellites, it did not successfully circularize its orbit. This left the satellites in an eccentric orbit with a very low perigee of 135 km, which is less than half the expected perigee altitude.

The team worked overnight to make contact with the satellites in order to send early burn commands, but the satellites were left in an enormously high-drag environment only 135 km above the Earth (each pass through perigee removed 5+ km of altitude from the orbit’s apogee, or the highest point in the satellite orbit). At this level of drag, our maximum available thrust is unlikely to be enough to successfully raise the satellites. As such, the satellites will re-enter Earth’s atmosphere and fully demise. They do not pose a threat to other satellites in orbit or to public safety.

We greatly appreciate the team’s effort to learn as much as possible from the satellites and attempt recovery.

This event is a reminder of how technically challenging spaceflight is. To date, we have completed 364 successful Falcon launches – safely carrying astronauts, customer payloads and thousands of Starlink satellites to orbit – making the Falcon family of rockets one of the most reliable in the world. SpaceX will perform a full investigation in coordination with the FAA, determine root cause, and make corrective actions to ensure the success of future missions. With a robust satellite and rocket production capability, and a high launch cadence, we’re positioned to rapidly recover and continue our pace as the world’s most active launch services provider.”

Launch Replay

Here is a replay of SpaceX’s livestream of the Starlink 9-3 launch from last night:

Investigation Ahead

Of course, SpaceX will investigate the failure and try to identify its root cause(s) so it can take corrective action to prevent reoccurrence. In a Root Cause Analysis, or RCA investigation, data from the flight will be examined, as well as the manufacturing and test records associated with that particular second stage. From that flight data, the company will ascertain what failed and when, and from that they can begin to narrow down how it happened. Those investigations are thorough and take some time to complete. How long that takes is anyone’s guess.

SpaceX’s last in-flight failure occurred in 2015, when another second-stage failure ended some 139 seconds into flight. The resulting investigation led to a 180-day gap in Falcon 9 flights. It should be noted, however, that at the time SpaceX had far less experience launching Falcon 9 — the failed CRS-7 mission was the company’s 19th Falcon 9 flight and the next flight, Orbcomm 2-2 was its 20th. Thursday’s launch was SpaceX’s 69th Falcon 9 flight this year and the 354th since the rocket’s debut in 2010. That is quite a lot of in-flight experience, and that experience may well aid the company in identifying what went wrong and how to remediate the issue quickly.

FAA Statement

NASA Spaceflight, a leading space news organization, queried the FAA about the failure, and the FAA responded by saying, “The FAA is assessing the operation and will issue an updated statement if it is determined an investigation is warranted.”

Later, that statement was updated:

“The FAA is aware an anomaly occurred during the SpaceX Starlink Group 9-3 mission that launched from Vandenberg Space Force Base in California on July 11. The incident involved the failure of the upper stage rocket while it was in space. No public injuries or public property damage have been reported. The FAA is requiring an investigation.

An investigation is designed to further enhance public safety, determine the root cause of the event, and identify corrective actions to avoid it from happening again.

The FAA will be involved in every step of the investigation process and must approve SpaceX’s final report, including any corrective actions

A return to flight is based on the FAA determining that any system, process or procedure related to the mishap does not affect public safety. In addition, SpaceX may need to request and receive approval from the FAA to modify its license that incorporates any corrective actions and meet other licensing requirements.

The FAA responding to NASA Spaceflight, July 12, 2024

At this time, NASA, the US Space Force and NRO — three of SpaceX’s biggest governmental customers — have not made any public statement requiring their requirement of or participation in an investigation. Ostensibly, SpaceX will conduct the investigation working with the FAA and report the findings to those entities for their approval.

Launch Schedule Effects

With Falcon 9 now grounded by the FAA while an investigation is completed, missions such as Polaris Dawn, Crew 9, NG-21 and others are indefinitely delayed, as are any Starlink or customer launches currently on SpaceX’s manifest.

That said, the Starlink 10-4 mission scheduled for early Sunday morning from Space Launch Complex 40 is almost certainly delayed, pending a company announcement. Other missions later on the calendar are affected as well: GSAT-20, WorldView Legion 3 and 4, Arctic Satellite Broadband Mission (ASBM), Transporter 11 and others were manifested for the next 45 days from either Cape Canaveral, Kennedy Space Center or Vandenberg Space Force Base.

Regarding the upcoming private crewed Polaris Dawn mission that will be commanded by Jared Isaacman, Isaacman released this statement on X.com today:

“SpaceX has an incredible track record with Falcon9. I can say from personal experience they are very transparent when issues arise. I have no doubt they will arrive at a cause quickly and ensure the most cost-effective and reliable launch vehicle keeps delivering payload to orbit. As for Polaris Dawn, we will fly whenever SpaceX is ready and with complete confidence in the rocket, spaceship and operations.”

Jared Isaacman, July 11, 2024

Polaris Dawn had been scheduled to fly NET July 31, but that mission is now delayed pending the mishap investigation and the implementation of remediations.

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Falcon 9 lifts off from Space Launch Complex 40 on July 8, 2024.
Photo: Charles Boyer / Talk of Titusville

SpaceX weathered lightning in the area until skies cleared early this evening, allowing the company to launch the Turksat-6A mission aboard a Falcon 9. Originally scheduled for 5:20 PM EDT, liftoff was delayed several times until 7:30 PM when the afternoon’s storms were far away enough to allow the rocket to safely ascend towards orbit.

Around 8.5 minutes after liftoff, Booster B1076 touched down safely on the company’s drone ship ‘Just Read The Instructions’ to complete its fifteenth mission, while the second stage and payload continued to Earth orbit.

Shortly after 8 PM, SpaceX confirmed a successful deployment of the payload, marking yet another successful mission for the company and for Falcon 9: its 351st Falcon 9 launch, its 308th booster landing, and its 282nd flight of a previously flown booster.

Launch Replay

Payload

The payload for this mission was a domestically produced telecommunications satellite, Türksat 6A. Minister of Transport and Infrastructure Abdulkadir Uraloğle stated that Türksat 6A was produced with a local production rate of nearly 90 percent, a first for the Türkish nation.

In May, he said, “We produced our Türksat 6A satellite locally and nationally. While producing this, we assigned Türksat’s engineers to the construction of TÜRKSAT 3A, 4A, 4B, 5A, 5B satellites, trained them and included them in the production programs.”

It is currently traveling under its own power to a geosynchronous orbit positioned at 42° East, where it will have an expected service lifetime of at least fifteen years once it reaches its operational location and is tested and commissioned.

Falcon 9 powers through clouds this evening over Florida skies
Photo: Charles Boyer / Talk of Titusville

Türksat 6A will service Türksat’s normal customer base as well as adding four new countries with the new Türksat 6A. “Currently, with our satellites, we cover Europe, the Middle East, the Turkish Republics and a part of the Far East,” Uraloğle said. “We are already selling this service to the geographies I mentioned. There will be additional income by selling this communication service and exporting services to the new 4 countries.” he said.

Booster B1076.15

Booster B1076
Flight NumberMissionLaunch Date
1CRS-26November 26, 2022
2OneWeb 16January 10, 2023
3Starlink 6-1February 27, 2023
4Intelsat 40eApril 7, 2023
5Starlink 6-3May 19, 2023
6Starlink 6-6July 24. 2023
7Starlink 6-14September 9, 2023
8Starlink 6-21October 5, 2023
9O3b mPOWER 5/6November 12, 2023
10Ovzon-3January 3, 2024
11Starlink 6-40February 29, 2024
12Eutelsat 36DMarch 30, 2024
13Starlink 6-54April 28, 2024
14Starlink 6-64May 31, 2024
15Turksat-6AJuly 8, 2024
Booster B1076 record as of July 8, 2024

Next Launch

SpaceX is scheduled to launch another set of Starlink satellites early on Saturday morning from Space Launch Complex 40.

  • Date: NET July 13, 2024
  • Organization: SpaceX
  • Mission: Starlink Group 10-4
  • Rocket: Falcon 9
  • Launch Site: SLC-40, Cape Canaveral Space Force Station
  • Launch Window: 03:58 AM – 08:28 AM EDT
  • Payload: Starlink Mini v2 satellites

Keep in mind that launch dates and times change often. Launch attempts can be scrubbed anytime due to weather, technical reasons, or range conditions.

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Falcon 9 lifting off in January 2024
Photo: Charles Boyer / Talk of Titusville

SpaceX is planning to launch a Falcon 9 carrying a Turkish telecommunications satellite later Monday afternoon from Space Launch Complex 40 at Cape Canaveral Space Force Station, weather permitting. The launch window opens at 05:20 PM EDT and extends over four hours to 09:43 PM EDT Monday.

The launch will be SpaceX’s 71st launch of 2024, and its 34th launch from Space Launch Complex 40 this year. Overall, it will 382nd SpaceX launch all time.

At A Glance

  • Mission: Turksat 6A
  • Date: NET July 8, 2024
  • Launch Window: 05:20 PM EDT – 09:43 PM EDT*
  • Organization: SpaceX
  • Rocket: Falcon 9
  • Launch Site: SLC-40, Cape Canaveral Space Force Station
  • Payload: Communications satellite to geosynchronous orbit.
    * consult SpaceX for the specific target for T-0.

Payload

Minister of Transport and Infrastructure Abdulkadir Uraloğlu of Türkiye
Photo: Türksat

The payload for this mission is a domestically produced telecommunications satellite, Türksat 6A. Minister of Transport and Infrastructure Abdulkadir Uraloğle stated that the Türksat 6A communication satellite was produced with a local production rate of nearly 90 percent. In May, he said, “We produced our Türksat 6A satellite locally and nationally. While producing this, we assigned Türksat’s engineers to the construction of TÜRKSAT 3A, 4A, 4B, 5A, 5B satellites, trained them and included them in the production programs.”

It will be placed in a geosynchronous orbit positioned at 42° East with an expected service lifetime of at least fifteen years once it reaches its operational location and is tested and commissioned.

Türksat 6A will service Türksat’s normal customer base as well as adding four new countries with the new Türksat 6A. “Currently, with our satellites, we cover Europe, the Middle East, the Turkish Republics and a part of the Far East,” Uraloğle said. “We are already selling this service to the geographies I mentioned. There will be additional income by selling this communication service and exporting services to the new 4 countries.” he said.

Weather

According to the 45th Weather Squadron, chances are high for a weather violation on the launch range creating a delay. Their forecast calls for a 70% likelihood of a weather violation, leaving only a 30% chance of acceptable weather.
In their July 7th launch discussion, the 45th states, “For both Monday and Tuesday, [a frontal] ridge is expected to shift south of the spaceport, bringing weak southwesterly winds and coastal afternoon thunderstorms to the Cape. Some of these storms may produce 40 mph or greater winds. Convective activity should taper off after sunset, but steering winds are expected to be weak, possibly extending any weather violations that occur.”

Trajectory

Eastward. Falcon 9 will appear to be flying nearly straight out to see for spectators facing the Atlantic Ocean at launch time.

Landing

Landing is expected to be out at sea aboard one of SpaceX’s Autonomous Spaceport Drone Ships.

Online Viewing

SpaceCoastLaunchCalendar.com will have a livestream of the launch if you’re not able to watch the launch in person: Livestream

A live webcast of this mission will begin on SpaceX’s X account feed about five minutes prior to liftoff.  Watch live on X.

SpaceX’s official web page has links to their live coverage as well as up-to-date planned launch times. 

Spaceflight Now will begin its live launch feed one hour prior to liftoff.
SFN on Youtube.

For official updates regarding launch timesSpaceX.com is the best source of information. Starlink launch times change from time to time, and the company generally updates their website within minutes of the decision to change the launch time. This is very handy if none of the streaming options on YouTube have started their broadcasts.

Remember that there is a delay between a launch stream and the actual countdown clock. That is simply because of physics: it takes time for the signal to travel from the launch site, through the Internet, and back down to your phone, resulting in a five to fifteen-second delay.

Next Space Launch an app for iOS and Android phones, has a real-time countdown clock that is accurate to a second, give or take. The app is free. Search the App Store or Google Play.

Launch Viewing: In Person

This morning’s planned launch is from SLC-40, on the south side of the Eastern Range (KSC and Cape Canaveral Space Force Station combined.) The southern parks in Titusville on Washington Avenue and FL-528/A1A in Cape Canaveral are the best spots to watch liftoff directly.

Restaurants With Good Launch Views

Given the early hours of the launch window (7:30AM – 11:30AM EDT) these restaurants may not be open for launch viewing. Later in the day, all three may well be, so if you are interested, be sure to call ahead to make sure they’ll be ready to serve you.

  • The Space Bar ($$$) – atop the Courtyard Marriott near Kennedy Parkway
  • New York New York ($$) – on the Indian River with an outdoor seating area. Is family-friendly.
  • Shiloh’s ($$$) — located on the Indian River with an outdoor deck overlooking KSC/CCSFS

Indirect Views

There are several excellent viewing spots for SLC-40 launches that offer indirect views — meaning you won’t see the rocket until it clears obstructions such as trees, buildings, even a storm berm in one case.

  • Jetty Park, Port Canaveral
    • Fee required, much be purchased in advance: Port Canaveral Store
    • It’s very possible to see a cruise ship coming or going.
    • The pier especially has great views
  • Cocoa Beach
    • Parking fees (probably). Pay with your smartphone on the parking app. There are signs everywhere telling you how.
    • Further away, but still good views.
  • Northern Titusville Parks
    • Further away, but really nice views.

Playalinda Beach

Playalinda Beach out on the Cape Canaveral National Seashore will be open to spectators until 8 PM EDT, that is if KSC Security and the National Park Service allow viewers for the launch. It opens to visitors at 6 AM.

Call ahead to be sure.

Cape Canaveral National Seashore • Playalinda Beach

Phone: (386) 428-3384 x0

Current operating hours: 6:00 AM–8:00 PM

If you are going to Playalinda, and if it is open, remember these general tips. Some may not apply to this particular launch.

  • Get there at least two hours early, or better, earlier than that. Lines are long at the entry gate and they will only allow as many spectator vehicles as there are parking space available.
  • If the launch L-0 time is moved to after 8PM, you must leave Playalinda, as the National Park Service is very strict about closing hours.
  • Cape Canaveral National Seashore has a fee to get in and cash is not accepted. Debit and credit cards are okay, or if you have one of the National Park Service’s passes for the Seashore or the National Parks, that will work as well.
  • Cellphone service is spotty at best and often non-existent at Playalinda. Don’t count on your cellphone to keep up with the launch; you might get a signal, or you might not.
  • You are not allowed to view from the pullouts on Beach Road. Stanchions will block them. You’ll have to park and go to the beach.
  • Refreshments are not available. There are no stores at Cape Canaveral National Seashore, so you’ll need to bring drinks and food if you want any while you’re there.
  • Rangers will keep you back a certain distance from the launch area on the beach. Even if the beach is open, you’ll still be unable to go down to the fence that demarcates the normal security zone. There’s a line that spectators can’t go past somewhat north of the fence. That’s for safety and security.

Be prepared for potential changes or pushbacks in the launch schedule, and keep up by monitoring the live stream links mentioned above.

Keep up with launch news and other space events that affect the local area by subscribing to alerts when we publish a new article by entering your email at the link at the bottom of this page, or by visiting Space Talk here on the website. It’s free, and you can cancel at any time.

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Falcon 9 rises over a ghost boat on the Banana River on July 3, 2024
Photo: Charles Boyer / Talk of Titusville

SpaceX successfully launched another group of Starlink satellites into orbit this morning from its Space Launch Complex 40 facility to open the second half of the year. Liftoff was at 4:55 AM EDT.

Around 8:20 minutes after liftoff, the first-stage booster used for the mission, tail number B1073, touched down safely on ASDS ‘A Shortfall of Gravitas’, stationed downrange in the Atlantic Ocean near the Carolinas. After landing, B1073 has now flown sixteen successful missions. ‘A Shortfall of Gravitas’ will now return to Port Canaveral, where the booster will be unloaded, transported to SpaceX’s Hangar X facility at Kennedy Space Center, and prepared for its next flight after inspection and refurbishment.

Launch Replay

Payload

According to SpaceX, tonight’s payload is “20 Starlink satellites, including 13 with Direct to Cell capabilities, to low-Earth orbit from Space Launch Complex 40 (SLC-40) at Cape Canaveral Space Force Station in Florida.”

Debbie Henninger Harris caught this photo of Falcon 9 ascending to orbit in Raleigh, NC this morning. The launch was visible for much of the SE coastal state.
Photo: Debbie Henninger Harris, shared by permission

Booster B1073.16 Record

Booster B1073May 12, 2024
FlightMissionDate
1Starlink 4-15May 14, 2022
2SES-22June 29, 2022
3Starlink 4-26August 10, 2022
4Starlink 4-35September 24, 2022
5HAKUTO-RDecember 11, 2022
6Amazonus NexusFebruary 7, 2023
7CRS-27March 15, 2023
8Starlink 6-2April 19, 2023
9Starlink 5-11June 12, 2023
10Starlink 6-12September 4, 2023
11Starlink 6-27November 8, 2023
12Starlink 6-37January 15, 2024
13Starlink 6-41March 4, 2024
14Bandwagon-1April 7, 2024
15Starlink 6-58May 12, 2024
16Starlink 8-9July 3, 2024
Booster B1073 flight record as of July 3, 2024
Falcon 9 lifts off and turns night into day for a moment—iPhone photo.

Next Launch

SpaceX will send a satellite built in Türkiye to geosynchronous orbit. Once commissioned, it will provide services to customers in Türkiye, Europe, the Northern coast of Africa, the Middle East, India, and Indonesia.

  • Date: NET July 7, 2024
  • Organization: SpaceX
  • Mission: Türksat 6A
  • Rocket: Falcon 9
  • Launch Site: SLC-40, Cape Canaveral Space Force Station
  • Launch Window: 5:20 PM EDT
  • Payload: Communications satellite

Keep in mind that launch dates and times change often. Launch attempts can be scrubbed anytime due to weather, technical reasons, or range conditions.

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A Falcon 9 heads to space in 2023, as seen from Rotary Riverfront Park in Titusville
Photo: Charles Boyer / Talk of Titusville

SpaceX plans to add more satellites to their Starlink constellation in the wee hours Wednesday morning with the Starlink 8-9 mission set to depart Space Launch Complex 40. Liftoff is currently targeted for 02:57 AM EDT with a launch window extending to 06:01:00 AM EDT the same day. If weather or technical reasons cause a scrub, an additional opportunities are also available on Sunday, July 7 starting at 12:28 AM EDT.

The booster used for the mission is Booster B1073, the same one that experienced an abort-at-ignition on its last launch attempt. After completing its boost cycle, B1073 on the company’s automated landing barge ‘A Shortfall Of Gravitas’ which is stationed at sea in the Atlantic Ocean offshore of the Carolinas. Since the booster will not be returning to the launch site, there will be no sonic booms on the Space Coast.

Payload

According to SpaceX, tonight’s payload is “20 Starlink satellites, including 13 with Direct to Cell capabilities, to low-Earth orbit from Space Launch Complex 40 (SLC-40) at Cape Canaveral Space Force Station in Florida.”

Starlink satellites mounted for launching. Photo: SpaceX

Weather

The 45th Weather Squadron forecasts an 80% chance of acceptable launch conditions. They do mention cumulus clouds as possibly playing the role of spoiler, however, with a long launch window, SpaceX can delay if fueling has not started and wait for improved conditions.

Trajectory

The planned trajectory for the launch is northeastwards, or right-to-left if you are a spectator in Florida looking towards the Atlantic Ocean.

Booster

SpaceX says that the booster, which is planned for use tonight, “[Will be] the 16th flight for the first-stage booster supporting this mission, which previously launched SES-22, ispace’s HAKUTO-R MISSION 1, Amazonas-6, CRS-27, Bandwagon-1, and 10 Starlink missions.”

That’s Booster B1073, the same one that experienced an abort-at-ignition on its last launch attempt. It has been re-inspected and any repairs needed have been completed, so it’s back to work for the well-experienced first stage.

Booster B1073May 12, 2024
FlightMissionDate
1Starlink 4-15May 14, 2022
2SES-22June 29, 2022
3Starlink 4-26August 10, 2022
4Starlink 4-35September 24, 2022
5HAKUTO-RDecember 11, 2022
6Amazonus NexusFebruary 7, 2023
7CRS-27March 15, 2023
8Starlink 6-2April 19, 2023
9Starlink 5-11June 12, 2023
10Starlink 6-12September 4, 2023
11Starlink 6-27November 8, 2023
12Starlink 6-37January 15, 2024
13Starlink 6-41March 4, 2024
14Bandwagon-1April 7, 2024
15Starlink 6-58May 12, 2024

Countdown Timeline

There are key events in the countdown that you may hear called out in launch coverage.

Remember that once Propellant Loading (T-minus thirty-eight minutes) starts, Falcon 9 is committed to the launch attempt. Because of the nature of the cryogenic fuels used to power the rockets, any hold precludes a later launch attempt the same day. While it only rarely happens, there have been occasions where that has happened, and a launch scrub is called for the day’s attempt.

SpaceX provides the following countdown milestones on their mission information page:

Hours:Minutes:SecondsEvent
00:38:00SpaceX Launch Director verifies go for propellant load
00:35:00RP-1 (rocket grade kerosene) loading begins
00:35:001st stage LOX (liquid oxygen) loading begins
00:16:002nd stage LOX loading begins
00:07:00Falcon 9 begins engine chill prior to launch
00:01:00Command flight computer to begin final prelaunch checks
00:01:00Propellant tank pressurization to flight pressure begins
00:00:45SpaceX Launch Director verifies go for launch
00:00:03Engine controller commands engine ignition sequence to start
00:00:00Falcon 9 liftoff
Via SpaceX

Typical SpaceX countdown timeline is presented for information purposes only.

Timeline of Falcon 9 Flight

SpaceX has published a timeline of expected events during the mission:

Hours:Minutes:SecondsEvent
00:00:00Liftoff
00:01:10Max-Q (Moment of peak mechanical stress on the rocket)
00:02:241st stage main engine cutoff (MECO)
00:02:281st and 2nd stages separate
00:02:352nd stage engine starts (SES-1)
00:02:54Fairing deployment
00:06:091st stage entry burn begins
00:06:331st stage entry burn ends
00:07:531st stage landing burn begins
00:08:181st stage landing
00:08:382nd stage engine cutoff (SECO-1)
00:43:502nd stage engine starts (SES-2)
00:43:522nd stage engine cutoff (SECO-2)
00:52:44Starlink satellites deploy
via: SpaceX

All events up to the end of the 1st stage entry burn should be visible for launch spectators watching the launch in person, so long as clouds are not blocking the viewer’s line of sight.

Watching Online

SpaceX will have a livestream of the launch on their website: Starlink 8-9. This will also be available on the X platform. Coverage starts about five minutes before liftoff.

Spaceflight Now will have coverage of the launch starting about one hour before liftoff on Youtube: link

For official updates regarding launch timesSpaceX.com is the best source of information. Starlink launch times change from time to time, and the company generally updates their website within minutes of the decision to change the launch time. This is very handy if none of the streaming options on YouTube have started their broadcasts.

Remember that there is a delay between a launch stream and the actual countdown clock. That is simply because of physics: it takes time for the signal to travel from the launch site, through the Internet, and back down to your phone, resulting in a five to fifteen-second delay.

Next Space Launch an app for iOS and Android phones, has a real-time countdown clock that is accurate to a second, give or take. The app is free. Search the App Store or Google Play.

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A spent second stage as imaged by Astroscale Japan’s Adras-J spacecraft in April 2024.
Photo: Astroscale Japan
A spent second stage as imaged by Astroscale Japan’s Adras-J spacecraft in April 2024.
Photo: Astroscale Japan

NOTE: This article first published on April 27, 2024. It was written by me.

In his classic book “The Hitchhiker’s Guide To The Galaxy” writer Douglas Adams once said that “Space is big. You just won’t believe how vastly, hugely, mind-bogglingly big it is. I mean, you may think it’s a long way down the road to the chemist’s, but that’s just peanuts to space.”

Adams is right, of course. Space is infinitely huge, but at the same time, near-Earth orbit is an increasingly crowded place. As of March 7, 2024, 9,494 active satellites were orbiting Earth, and there are another 3,300 inactive satellites.

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Cape Canaveral, Florida as seen from STS-66 Atlantis
Photo: NASA

Public Comment Period Ended June 24th

Interesting comments from other launch providers as well as the general public regarding the potential of Launch Complex 39A being used as a launch pad and landing zone for SpaceX’s Starship have been published online by the FAA: Environmental Impact Statements; Availability, etc.: Office of Commercial Space Transportation. Notably, United Launch Alliance and Blue Origin have weighed in with their thoughts, and their statements on the EISZ echo many of the general public’s concerns.

Blue Origin

Blue Origin, who has manufacturing, launch and refurbishment facilities at Kennedy Space Center and also Cape Canaveral Space Force Station, weighed in strongly.

They propose capping Starship Heavy launch and landing activities to a certain number in a given time period, limiting launches to a certain time period on any given day, government-built infrastructure to de-conflict other launch facilities from Starship activities, mandatory penalties for SpaceX violating launch licenses or environmental agreements, and also for SpaceX to indemnify (compensate for harm or loss) from any Starship activities at LC-39A:

• Capping the rate of Ss-SH launch, landing, and other operations, including but not limited to test firings, transport operations, and fueling, to a number that has a minimal impact on the local environment, locally operating personnel, and the local community, in consideration of all risks and impacts, including but not limited to anomaly risks, air toxin and hazardous materials dispersion, road closures, and heat and noise generation.

• Government investment in additional launch infrastructure that would make more launchpads available to other entities in a manner that deconflicts Ss-SH operations from other launch providers at KSC and CCSFS to preserve the health and safety of their personnel and Assets.

• Government investment in additional infrastructure for KSC and CCSFS that would reduce the risk to other launch providers at KSC and CCSFS in order to preserve the health and safety of their personnel and Assets by diverting traffic from the Proposed Action area, including but not limited to improving the Roy D. Bridges Bridge to accommodate transport of large Assets.

• Limiting Ss-SH operations to particular, limited times to minimize and make predictable their impact on the local community, and allotting other launch providers the right-of-firstrefusal or schedule priority for certain conflicting launch or other operational opportunities.

• Mitigating the effects of Ss-SH that would require evacuation or other operational pauses at other launch providers’ launch sites through infrastructure improvements or other operational changes.

• Require SpaceX and/or the Government to indemnify third parties for any losses caused by or related to Ss-SH operations, including commercial disruption incurred due to the operation of Ss-SH.

• Institute independent mandatory penalties for SpaceX for conducting operations not included in an active EIS or other environmental restriction, violating a launch license, or any other laws, regulations, or other rules for operating.

Blue Origin also calls for the FAA to study effects of noise on workers at or near LC-39A, roadway capacity, infrastructure maintenance and other effects.

If interested, you can read Blue Origin’s comments in full:

United Launch Alliance

ULA, which launches the Atlas V and Vulcan rockets for commercial and federal government customers from Space Launch Complex 41, made the following statements:

EIS Must Address Evolving Starship Heavy Design

“SpaceX intends to launch a larger model at LC-39A than it is currently testing in Boca Chica. In April 2024, SpaceX revealed plans to, at minimum, quadruple payload capability to make up for shortfalls in predicted performance. Starship will eventually be 492 feet tall, “roughly 20% higher than the massive system aboard the Super Heavy rocket right now.”21 The Super Heavy booster is expected to hold up to 4100 metric tons of propellant, and Starship up to 2,600 metric tons.22 The maximum lift-off thrust is anticipated at 103 meganewtons.23 The resulting launch impacts would far exceed current impacts seen during current Boca Chica launches. Additional growth of the Starship launch vehicle may be planned if performance continues to fall below expectations.

Given these changes, the EIS must perform a comparative analysis between current usage impacts and the proposed operations, with a rocket proposed to be more than double the size of any currently licensed launch vehicle and with increased frequency of launches.”

ULA also notes that returning booster and Starship vehicles locates the risk associated with these activities locally, rather than at sea:

Landing a booster at LC-39A, rather than in the ocean, shifts the risks of a system failure onto the communities, businesses, and environment that surround KSC.

They state that the EIS should also include impacts on other launch service providers:

“The FAA’s EIS should evaluate SpaceX’s proposed operations at LC-39A in conjunction with SpaceX’s proposed operations at SLC-37. This should further include an assessment of national security space capabilities and the associated vulnerabilities presented by the consolidation of these operations at adjacent launch complexes within a six-mile area. This also potentially increases the threat to other national security space launch providers located in the same six-mile area. SpaceX seeks to frequently launch the largest rocket ever from two launch sites within a six-mile area. Just one Starship launch site is likely to disrupt other launch operations in the area and cause significant environmental impacts”

ULA also states that the EIS should consider potential harms to local businesses and properties.

LC-39A sits in a bustling center for space operations. That center is surrounded by communities, including Cape Canaveral and Titusville, and important ecosystems, including the Merritt Island National Wildlife Refuge and the Canaveral National Seashore.

The EIS must consider any disruptions to the health and safety of local communities and ecosystems, from both normal operations and any potential accidents. This includes impacts on traffic, economic and property harms to local businesses and individuals, and concerns about environmental justice. Impacts to public safety must also be addressed, including but not limited to nearby schools, hospitals and other key public support infrastructure and services.

These are just a few highlights from the ULA document. If interested, you can read their entire statement below, or download it and read using Acrobat Reader or another PDF compliant viewer.

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