edition 2life beyond earth

stellar times

all you need to know about humanity’s journey to the moon, mars, and beyond

the whole edition in about 90 secondsjust right: the stories, with extras foldedall open, deeper captions, terms, sources

the lead · life beyond earth

nasa’s chief likes the odds that mars once had life.

in one line NASA’s chief sees “a very good chance” that Mars samples will show past life, but the US plan to bring them home is cancelled. our call: China’s Tianwen-3 brings the first Mars rock to a lab on Earth.

key date2031 China’s Mars samples due on Earth (China target)

NASA’s 15th administrator, Jared Isaacman, says there is “a very good chance” that Mars samples will show microbial life lived there once. the hard part is getting the samples to Earth. the program to bring Perseverance’s samples to Earth was cancelled in January.

illustration of an empty rocky martian plain at dusk
illustration, baa art. not a mission photo. the samples Perseverance collected are still on Mars.

what happened

Isaacman made the claim on pod force one, the NY Post’s podcast, on 08/05/2026. he sees “a very good chance” of proving that microbial life once existed on Mars, with samples brought back to Earth. the Post’s write-up has those samples back in the next decade or so.

in April, during Artemis II, he told CNN: “I would say the odds that we will find something at some point to suggest that we are not alone are pretty high.” he pointed to the two trillion galaxies out there. the search, he said, “goes to the heart of many things that we do at Nasa.”

why it matters

a yes would mean life once existed on a second world in our solar system. proving it needs Mars rock in a lab on Earth, and no US mission to bring that rock back is funded today.

Congress’s FY2026 appropriations “does not support the existing Mars Sample Return (MSR) program.” the bill kept $110 million for Mars Future Missions technology. on 04/27/2026 Isaacman told House appropriators the mission “was conceived to cost up to $4 billion and in just a few years ballooned to over $10 billion, with $2 billion in taxpayer funds already spent.” he called the cancellation rightful: “This is not good capital allocation or execution.”

China has its own plan. Tianwen-3 aims to launch around 2028 and return samples in 2031 (China target). the mission’s chief scientist calls signs of life its top goal. China expects to pick the landing site by the end of 2026 (Xinhua).

how it works

a rover cannot prove life. it can only find clues. scientists call a strong clue a potential biosignature: something life might have made, which needs more study before anyone can say yes or no.

the best clue so far is the “Sapphire Canyon” sample. Perseverance drilled it in July 2024 from a rock called “Cheyava Falls,” in an old dry riverbed in Jezero Crater. NASA called it a potential biosignature on 09/10/2025 (NASA).

the rock has small “leopard spots.” they hold two iron minerals, vivianite and greigite, next to organic carbon. on Earth, some microbes make this pair when they get energy from chemistry. chemistry without life can make it too, for example with high heat or acid. Cheyava Falls shows no sign of either. to tell life from chemistry, scientists need instruments far more sensitive than any rover carries.

Perseverance keeps driving. on 09/28/2026 it was about 100 feet short of Opportunity’s 28.06-mile record for driving on another world (KCRA). farther out, Europa Clipper is not a life-detection mission. it will check whether Europa’s ocean has the ingredients and energy for life (NASA). it reaches Jupiter on 04/11/2030 (NASA target).

our call

the first Mars rock to reach a lab on Earth will most likely be China’s, from Tianwen-3. the signal of a US comeback: a sample-return line in the final FY2027 budget.

“a very good chance”
on proving past life on Mars with returned samples · pod force one · 08/05/2026 · NY Post
“the odds that we will find something … are pretty high.”
CNN State of the Union · 04/05/2026 · CNN
“ballooned to over $10 billion”
on Mars Sample Return, to House appropriators · 04/27/2026 · testimony

the orbit dial

why the mars calls land where they land

earth laps mars about once every 26 months. a ship leaves when mars is about 44° ahead, so mars reaches the meeting point when the ship does. step through it, then explore.

dateoct 202610/04/2026

mars leads earth by76°textbook launch: about 44°

earth and mars on their orbits around the sun, to scale, for the date on the slider

earth to mars1.64 AU13.6 light-minutes

launch windowopencheapest launch 10/29/2026

open 09/23/2026 to 12/08/2026. NASA’s ESCAPADE twins are using this window: they loop back past Earth this fall and slingshot to Mars, arriving 09/2027 (NASA target).

BAA calc. planet positions from JPL’s approximate orbital elements3 (good to about a minute of arc here; checked against JPL Horizons), drawn to scale (1 AU is the earth-sun distance, about 150 million km) and flattened onto one plane; mars’ tilt of about 1.85° is left out. purple bands mark windows where the cheapest trip needs a launch energy (C3)1 of 20 km²/s² or less, from a simple two-body Lambert solve2 on the same orbits; it gives 14.4 for Perseverance’s 2020 trajectory, against 14.49 flown (ULA). the dashed line is the textbook half-ellipse path; the hollow circle is where mars would be when a ship on it arrives. dots on the track are our calls. little guys not to scale (or real).
dig inclosewho he is, what MSR cost, what is left, what to watch

context

Isaacman was nominated 11/04/2025, confirmed by the Senate 12/17/2025 (67 to 30) and sworn in 12/18/2025. he was still in the job this week: a WESH interview after the Crew-13 launch on 10/01/2026, and the Boeing and NASA Starliner update on 09/28/2026.

the numbers

  • up to $4 billion MSR’s original cost, in Isaacman’s testimony
  • over $10 billion what it grew to, “in just a few years”
  • $2 billion already spent, same testimony
  • $110 million kept for Mars Future Missions technology, FY2026
  • around 2028 / 2031 Tianwen-3 launch and return (China target); landing site due by the end of 2026
  • 28.06 miles Opportunity’s record for driving on another world; Perseverance was about 100 feet short on 09/28/2026
  • 04/11/2030 Europa Clipper at Jupiter (NASA target)

why it matters

for Isaacman, the strongest way to prove past life is Mars rock on Earth, and no funded mission can bring those samples to Earth today. Clipper and Dragonfly can show whether ocean worlds have what life needs. neither is built to detect life itself.

what to watch

  • money. NASA runs on a stopgap at its FY2026 level, $24.4 billion, until 12/11/2026. the White House asked for $18.8 billion for FY2027, and the House bill would trim science from $7.3 billion to $6 billion (SpacePolicyOnline). a sample-return line in the final bill is the signal to watch
  • Perseverance passing Opportunity’s driving record, any day now
  • Europa Clipper’s Earth flyby on 12/03/2026 (NASA target)
  • Dragonfly’s launch window, 07/05 to 07/25/2028 (NASA target)

sources

NASA, 12/18/2025 · CNN, 12/17/2025 · WESH, 10/01/2026 · Boeing, 09/28/2026 · pod force one · 08/05/2026 · NY Post, 08/05/2026 · The Guardian, 04/05/2026 (quote text) · Space.com, 01/2026 · Live Science · House testimony, 04/27/2026 · NASA, 09/10/2025 · NASA Clipper FAQ · KCRA, 09/28/2026 · Xinhua, 09/04/2026 · SpacePolicyOnline, 09/03/2026

feature · 2026 to 2031

what happens next: the next five years, mission by mission

in one line uncrewed missions lead to the Moon, Mars, Jupiter and Titan. our call: a crew walks on the Moon in sep 2028 and on Mars in jun 2029.

key dates09/15/2028 crew on the Moon · 06/28/2029 crew on Mars (our calls)

uncrewed missions go first: to the lunar south pole, Mars’ moons, Jupiter and Titan. people follow in Earth orbit in 2027 (NASA target). people walk on the Moon again in sep 2028 (our call; NASA targets 2028). one uncrewed Starship leaves for Mars in dec 2026, and the first crew lands there in jun 2029 (our call).

why it matters

these uncrewed missions go first and answer what crews and investors need to know: can we land there, what’s there, and is there water?

how it works

physics sets most of these dates. ships leave only when the planets line up, about every 26 months for Mars. Dragonfly’s window to Titan is 07/05 to 07/25/2028 (NASA target).

our call

first ship catch on Flight 15, late nov 2026. one uncrewed Starship leaves for Mars in dec 2026 as a small landing demo and lands in jul 2027. an uncrewed Starship lands on the Moon in apr 2027, and a crew follows in sep 2028. the first crew leaves for Mars in dec 2028 and lands in jun 2029. Chang’e-7 launches in mar 2027 and lands in jun 2027. Blue Moon Mark 1 in fall 2027, once New Glenn flies again.

  1. 2026
  2. 10/19 · JAXA target MMX launches on H3 for Phobos and Deimos, a sample return
  3. 11/18 · NASA Voyager 1 reaches one light-day
  4. late 11/2026 · our call Starship Flight 15 makes the first ship catch at the launch tower
  5. 11/27 · our call the first propellant transfer between two Starships, a partial refill for the Mars demo
  6. 12/01 · our call one uncrewed Starship launches for Mars, a small landing demo near the end of this window
  7. 12/03 · NASA target Europa Clipper Earth flyby
  8. 12/2026 or 01/2027 · NASA/Boeing target uncrewed Starliner-1 to the station; crewed Starliner-2 in 2028 (NASA target)
  9. by year end · company target Amazon Leo limited commercial service
  10. Q4 · ISRO target Gaganyaan G1, uncrewed
  11. 2027
  12. 03/2027 · our call Chang’e-7 launches for the lunar south pole, after China called off its 2026 window
  13. 04/2027 · our call an uncrewed Starship lands on the Moon (SpaceX targeted 03/2027)
  14. early 2027 · company targets Vast Haven-1, Stoke Nova first orbital try, Google’s two-satellite Suncatcher
  15. summer · NASA target Artemis III: Orion with commercial landers in Earth orbit
  16. 2027 onward · NASA target uncrewed landers and rovers to the south pole, “near monthly”
  17. 06/2027 · our call Chang’e-7 lands, after about three months scouting from orbit
  18. 07/2027 · our call the first Starship lands on Mars
  19. 09/2027 · NASA target ESCAPADE arrives at Mars
  20. fall 2027 · our call Blue Moon Mark 1 lander with two NASA payloads (01/2027 on NASA’s list), once New Glenn is flying again
  21. Q4 · SpaceX target first Starmind AI1 orbital compute satellites
  22. 2028
  23. 2028 · NASA target Artemis IV: astronauts on the Moon (our call: 09/2028, in a Starship)
  24. 07/05 to 07/25 · NASA target Dragonfly launches for Titan, arriving 2034
  25. 2028 · China target Tianwen-3 launches for Mars samples, return 2031
  26. 12/2028 · NASA target SR-1 Freedom to Mars, carrying three SkyFall helicopters
  27. 12/01/2028 · our call cargo ships with power, a propellant plant and habitats leave for Mars
  28. 12/15/2028 · our call the first crew launches for Mars
  29. 2029
  30. 06/2029 · our call the first people step onto Mars, at Arcadia Planitia
  31. 2030 and 2031
  32. by 2030 · China target first Chinese crew on the Moon
  33. 04/11/2030 · NASA target Europa Clipper at Jupiter
  34. 07/21/2031 · ESA nominal Juice at Jupiter
dig inclosesources for every line

feature · compute in orbit

the first data centers above the clouds are about the size of a fridge

in one line the first computers in orbit carry about 1 kW each. our call: about 1 GW in orbit by the end of 2030, with heat as the hard limit.

key numberabout 1 GW in orbit by the end of 2030 (our call)

on the ground, AI computers need power, land and cooling. in orbit there is steady sunlight and room. the first flights carry about 1 kW of computing. the largest plan asks for up to 1 million satellites.

why it matters

if computing moves to orbit, launch cost replaces power plants and permits as the limit on AI.

how it works

an orbital data center is a satellite with chips, big solar panels and big radiators. the chips turn power into heat. space has no air to carry heat away, so radiators shine it off as infrared light. that is why Google’s test runs in 15-minute bursts.

our call

about 1 GW (a gigawatt, the output of a large power plant) of computing in orbit by the end of 2030 (BAA base case), a little under SpaceX’s ground fleet today. the low and high cases are below.

  1. 1 GPUStarcloud-1, one Nvidia H100 (an AI chip), 11/2025
  2. about 1 kWGoogle’s Suncatcher test, four TPUs (Google’s AI chips), 10/01/2026
  3. 1.5 kW a satelliteTakeMe2Space, two laser-linked satellites, late 2028 (company target)
  4. 175 kW a satelliteSpaceX AI1, average compute, first launches Q4 2027 (SpaceX target)
  5. 1 GW a yearSpaceX’s goal for new compute launched each year by the end of 2027, then 10 times more each year

flying now or just launched

  • Starcloud-1 launched 11/2025 and trained a small language model in orbit.
  • Axiom Space launched its first two orbital data center nodes on 01/11/2026 with Kepler’s optical relays.
  • ADA Space (China) has 12 “Three-Body” computing satellites up; the company plans 2,800 compute satellites by 2035.
  • Supercomputing-1 (China) launched 09/20/2026 to process its own Earth pictures in orbit.
  • Google Suncatcher launched 10/01/2026 with Planet: four TPUs, about 1 kW, running Gemini in 15-minute bursts while the radiators catch up.
  • TakeMe2Space MOI-1a (India) was scheduled on the same 10/01/2026 rideshare.

announced, owner on every date

  • SpaceX Starmind AI1: first launches Q4 2027 (SpaceX target); deployment “as early as 2028” (SEC filing). FCC application for up to 1 million satellites, accepted for filing 02/04/2026, not approved.
  • Blue Origin Project Sunrise: FCC application for up to 51,600 satellites; NASA filed concerns in 05/2026. no date or power figure found.
  • Starcloud: an AI payload to lunar orbit on Firefly’s Elytra, NET 2028 (company target).
  • Aetherflux: commercial operation Q1 2027 (company target).
  • TakeMe2Space: two 1.5 kW satellites with 10 Nvidia Thor GPUs each, late 2028 (company target).
  • Anthropic will study using SpaceX orbital data centers. exploratory, no contract disclosed.
dig inclosethe hard parts, the specs, sources

the hard parts

heat has to be radiated away, since there is no air or water to carry it (Google runs 15-minute bursts; SpaceX lists radiators, vapor chambers and loops). radiation flips bits in off-the-shelf chips. launch mass is the biggest limit: SpaceX’s own math is about 1 million tons a year to orbit for 100 GW a year. NASA’s administrator, 08/05/2026: “I would not bet against the orbital data centers.”

the numbers

  • 250 kW peak / 175 kW average AI1 compute per satellite, SpaceX Starmind page as fetched 10/04/2026
  • 75 kW per ton same page; an 08/25/2026 report quoted 70, so the published spec has grown since August
  • 1.4 GW SpaceX’s ground AI compute, nameplate, 06/30/2026 (SEC)

what to watch

first results from Google’s test, Starcloud-2’s date, and any FCC action on the SpaceX and Blue Origin filings.

sources

CNBC, 12/10/2025 · Axiom · Kepler · Xinhua, 04/25/2026 · Tom’s Hardware, 09/23/2026 · Google · NPR, 10/02/2026 · Business Standard, 09/28/2026 · SpaceX Starmind · MLQ, 08/25/2026 · FCC · Reuters, 01/31/2026 · Tom’s Hardware, 06/09/2026 · SpaceNews, 05/07/2026 · DCD, 05/12/2026 · SpaceNews on Blue Origin · GeekWire, 09/30/2026 · Starcloud · Aetherflux · SpaceX Q2 release, SEC

tonight · play with it

what time is it on mars

in one line a Mars day runs about 40 minutes longer than ours, and a radio message takes minutes to get there. play with the clocks below.

key number24 h 39 m 35 s one day on Mars

a day on Mars, a sol, is 24 hours, 39 minutes, 35.244 seconds. so a Mars clock falls about 40 minutes behind ours every day. coordinated mars time is one clock for the whole planet, like greenwich time on Earth. a radio message to Mars takes about 13.6 minutes one way today.

coordinated mars time

live

at jezero crater, perseverance’s home (local mean solar time)

live

mars sol date

live

uses NASA GISS’s Mars24 algorithm. Jezero sits at about 77.5° east (NASA); the rover’s own mission clock can differ by minutes.

light-delay calculator

13.6 minutes one way

send it now and it arrives at about 7:44 a.m. ET. a reply would land around 7:57 a.m.

one-way light time at noon ET, 10/04/2026, BAA calc from JPL Horizons. values are fixed for this edition.

how many launches is a gigawatt

133 launches for 1 GW (7.5 MW a launch)

BAA calc. defaults: Starship V3’s 100+ t design figure (not yet shown: Flight 14 reached orbit on 09/28/2026 with 26 V3 Starlinks, and SpaceX gave no payload mass) and SpaceX’s 75 kW per ton for AI1 (Starmind page, 10/04/2026). SpaceX’s own 100 GW math works out to 100 kW per ton.

projections · BAA projection, not a forecast of record

how much computing could be in orbit, and how much of the internet comes from space

in one line our base case for 2030: about 1 GW of computing in orbit, and satellites serve about 1 in 65 people online, up from about 1 in 270.

key numberabout 1 in 65 people online served from orbit in 2030 (base case)

compute in orbit, megawatts at year end BAA projectioncumulative payload power, all operators, log scale. low, base and high cases.

2030, base: 1,000 MW (1 GW) · low 20 · high 15,000

share of the internet served from space BAA projectionthe rest comes over the ground: fiber, cable, cell towers. direct-to-phone satellite service is left out.

2030, base: space 1.49% · ground 98.51%

morehow to read the charts, and the assumptions
dig incloseassumptions, anchors, the full tables, sources

compute: anchors and math

anchors: Starcloud-1, one H100 (2025) · Google test about 1 kW (10/2026) · TakeMe2Space 1.5 kW a satellite (2028) · Starcloud-2 (2027, company target) · SpaceX AI1 175 kW average a satellite, first launches Q4 2027 (SpaceX target), “as early as 2028” (SEC), “meaningful amounts” by 2029 (SpaceX CFO) · Starship V3 designed for 100+ t to low orbit (design figure; Flight 14 reached orbit with 26 V3 Starlinks and no published payload mass).

launch math (BAA calc): one Starship with 100 t of AI1 satellites at 75 kW per ton is 7.5 MW a launch, so 1 GW is about 133 launches carrying only compute. SpaceX’s own figure, 100 GW a year from about 1 million t a year, works out to 100 kW per ton.

year endlowbasehighwhat has to be true for base
2025under 0.01about 0.010.01Starcloud-1 plus China’s 12 compute satellites (order of magnitude only)
20260.010.030.05Google, Supercomputing-1, TakeMe2Space, more Three-Body satellites, each about 1 kW class
20270.05250Starcloud-2, Aetherflux, Google’s pair, about 10 AI1 satellites in Q4 (1.75 MW)
2028140500about 230 AI1 satellites, 5 to 6 Starship launches
202952503,000about 33 compute launches in total
2030201,00015,000about 133 compute launches in total; Starship flying weekly or better
2031502,50040,000second-generation satellites, more operators

SpaceX’s stated aspiration implies far more (10 GW a year around 2029, 100 GW a year around 2030). it is shown as context, not as a case.

internet: anchors and assumptions

anchors: 6.0 billion people online in 2025, 74% of the world, 2.2 billion offline (ITU) · 7.3 ZB fixed and 1.5 ZB mobile traffic in 2025, growing about 16% and 19% a year (ITU) · Starlink 8.9M subscribers at end 2025 and 12.0M at 06/30/2026 (SpaceX Q2, SEC) · forecasts: TMF 35M+ to 45M+ in 2030, Deutsche Bank 102M by 2031 · US fixed broadband 711 GB a month (OpenVault, Q2 2026).

BAA assumptions: 2.5 people per satellite subscription · internet users grow 3.3% a year · an average satellite subscription uses 400 GB a month in 2025, rising 10% a year · yearly traffic uses the average of start and end subscribers · direct-to-phone satellite service is excluded.

year endsatellite subs, low / base / highpeople, baseusers from space, low / base / hightraffic from space, low / base / high
20258.9M (actual)22M0.37%0.36%
202616 / 18 / 19M45M0.65 / 0.73 / 0.77%0.64 / 0.69 / 0.72%
202721 / 25 / 30M62M0.82 / 0.98 / 1.17%0.90 / 1.05 / 1.19%
202826 / 31 / 45M78M0.98 / 1.17 / 1.70%1.08 / 1.28 / 1.72%
202930 / 36 / 65M90M1.10 / 1.32 / 2.38%1.21 / 1.45 / 2.38%
203036 / 42 / 88M105M1.27 / 1.49 / 3.12%1.35 / 1.59 / 3.13%
203140 / 48 / 105M120M1.37 / 1.65 / 3.60%1.47 / 1.74 / 3.72%

base: TMF’s 2030 midpoint (40M) plus about 2M for Amazon Leo and others. high: Deutsche Bank’s path to 102M by 2031 plus others. capacity is not the limit on share in this window; subscribers are.

sources

SpaceX Starmind · SpaceX Starship · SpaceX Q2 release, SEC · MLQ, 08/25/2026 · ITU users · ITU traffic · SatNews, 06/07/2026 (TMF) · Advanced Television, 07/29/2026 · OpenVault, 07/22/2026. BAA projections are labeled.

the briefs · 15 stories, current and upcoming

around the industry this week

in one line 15 short stories: crewed dates, Moon and Mars landers, computers in orbit, new money for rockets, and internet from space.

key datesummer 2027 Artemis III, a crew docking in Earth orbit (NASA target)

people on the calendar

NASA’s two crewed targets: Artemis III in 2027 and the first crewed Starliner-2 flight in 2028. why it matters: crewed dates drive budgets and contracts for years.

  1. NASA promised an “artemis acceleration” update for early October, and the administrator says he is “very confident” in summer 2027 for Artemis III (NASA target). no update was out as of early 10/04

    09/23 and 10/01/2026 · Payload · WESH · NASA architecture

  2. starliner gets another try: uncrewed to the station in December or January (NASA/Boeing target), then a crewed flight under Woody Hoburg in 2028 (NASA target)

    09/28/2026 · Boeing · SpacePolicyOnline · Space.com · Spaceflight Now

moons, near and far

uncrewed missions go first: Chang’e-7 to the lunar south pole, MMX to Mars’ moons. why it matters: the south pole may hold water ice, which crews could use for air, water and fuel.

  1. china called off Chang’e-7’s 2026 launch window, and NASA’s chief says the US “may have dodged a bullet” at Shackleton crater

    08/23 and 09/23/2026 · Xinhua · Ars Technica, 08/23 · Ars Technica, 09/24

  2. our call: Chang’e-7 launches in 03/2027 and lands near the south pole in 06/2027, two months after an uncrewed Starship’s first Moon landing. Blue Moon Mark 1 (January 2027 on NASA’s list) follows in fall 2027

    09/24/2026 · Ars Technica · NASA · NASA CLPS (commercial Moon deliveries)

  3. japan’s MMX leaves for Mars’ moons on 10/19 ET (JAXA target), to bring a piece of Phobos home: the first sample return from the Mars system

    launch 10/19/2026, 3:41 p.m. ET · JAXA · JAXA mission · NASA

computers in orbit

from Google’s fridge-sized test to plans for thousands of compute satellites. why it matters: heat is a hard limit on computing in orbit. each test shows how well a satellite sheds it.

  1. google’s first orbital data center test is up and “operating as expected”: four TPUs, about 1 kW, 15 minutes of work at a time (Ars)

    10/01/2026 · Google · Ars Technica · NPR

  2. a data center for the moon: Starcloud’s AI payload rides Firefly’s Elytra to lunar orbit, NET 2028 (company target)

    09/30/2026 · GeekWire

  3. india’s TakeMe2Space books two laser-linked compute satellites on Falcon 9 for late 2028 (company target)

    09/28/2026 · Business Standard

  4. china launched Supercomputing-1, a satellite that processes its own Earth pictures before sending them down, its third orbital compute effort

    09/20/2026 launch, 09/23 report · Tom’s Hardware · China in Space

  5. SpaceX aims for Q4 2027 for its first orbital compute satellites on Nvidia’s Vera Rubin, and its SEC filings say “as early as 2028”

    08/24/2026 · Nvidia · SpaceX Starmind · MLQ, 08/25 · FCC

follow the money

about $1.56 billion of new money in September for rockets, tugs and reentry (BAA calc: $1 billion + $251 million + $308 million). why it matters: cheaper rides make every later step cheaper.

  1. stoke raised $1 billion for a fully reusable rocket and aims for its first orbital try in early 2027 (company target)

    09/08/2026 · Stoke Space

  2. varda raised $251 million to process drugs in orbit and fly them home at Mach 25

    09/30/2026 · PR Newswire

  3. impulse space added $308 million, taking its Series D to $808 million as its backlog grows

    09/16/2026 · Reuters · Impulse · SpaceNews

internet from above

Starlink doubled its subscribers in a year; Amazon Leo has not started service yet. why it matters: satellites reach places cables do not, and about 2.2 billion people were still offline in 2025.

  1. amazon leo still plans limited service by year end (company target), after launch delays slowed the build-out

    09/10/2026 · SpaceNews · PCMag · GeekWire

  2. starlink doubled in a year to 12.0 million subscribers. average revenue per user fell to $66 from $85 a year earlier, and held there from the first quarter

    08/04/2026 (Q2) · SpaceX Q2 release, SEC

  3. about 11,100 Starlink satellites are working right now (10/02/2026). most fly in thin shells about 460 to 490 km up. each one goes around the earth in about an hour and a half. the piece below builds the fleet one step at a time: one satellite, one orbit, one shell, then all of them.

    meet the fleet, shell by shell ↓

baa’s bets · 22 calls, 0 graded so far

our biggest calls, with dates

in one line the headline bet is first humans on mars 06/28/2029, after the first crew on the moon in a starship 09/15/2028. each call gets a grade when its date comes.

the headline bet low

baa’s bet: first humans on mars 06/28/2029

2 years, 8 months, 24 days 998 days from today in ET

whythe first crew launches 12/15/2028 and makes about a 6-month trip. NASA’s ice map puts water less than a foot down at Arcadia Planitia. the reasoning

the first human steps onto Mars, at Arcadia Planitia · our call

the second big one low

baa’s bet: first crew on the moon in a starship 09/15/2028

1 year, 11 months, 11 days 712 days from today in ET

whyNASA targets 2028; the crewed lander must first prove refilling, a Moon landing and months of crew life. the reasoning

Artemis IV: the first crew lands on the Moon in a Starship · our call

more of our calls

  1. late 11/2026

    Starship Flight 15 makes the first ship catch at the launch tower

    baa’s bet: first starship ship catch late 11/2026

    low
  2. 04/15/2027

    the first uncrewed Starship lands on the Moon

    baa’s bet: first uncrewed starship on the moon 04/15/2027

    low
  3. end of 2030

    about 1 GW of computing in orbit, all operators (base case; range 20 MW to 15 GW)

    baa’s bet: about 1 gw of computing in orbit by end of 2030

    low
  4. 2031

    the first Mars rock in a lab on Earth is China’s, from Tianwen-3

    baa’s bet: first mars rock on earth is china’s, 2031

    medium
  5. 2055

    the first probe melts through Europa’s ice and looks for life in its ocean (launch about 2047)

    baa’s bet: first probe in europa’s ocean 2055

    low

all 22 bets, with reasons and the track record →

“That’s one small step for (a) man, one giant leap for mankind.”
Neil Armstrong, Apollo 11, 07/20/1969 · NASA
“We choose to go to the Moon in this decade and do the other things, not because they are easy, but because they are hard.”
John F. Kennedy, Rice University, 09/12/1962 · JFK Library
“Look again at that dot. That’s here. That’s home. That’s us.”
Carl Sagan, Pale Blue Dot, 1994 · The Planetary Society
“We came all this way to explore the Moon, and the most important thing is that we discovered the Earth.”
Bill Anders, Apollo 8, Earthrise, 12/24/1968 · NASA
“The Earth is the cradle of humanity, but one cannot live in the cradle forever.”
Konstantin Tsiolkovsky, letter, 1911 (translations vary) · NASA
“Remember to look up at the stars and not down at your feet.”
Stephen Hawking, ABC interview, 06/2010 · BBC
“Poyekhali! (Let’s go!)”
Yuri Gagarin, liftoff of Vostok 1, 04/12/1961 · ESA
“I would say the odds that we will find something at some point to suggest that we are not alone are pretty high.”
Jared Isaacman, NASA administrator, CNN, 04/05/2026 · The Guardian
“Mars is going to suck to live in.”
Jared Isaacman, NASA administrator, 08/05/2026 · NY Post
“I would not bet against the orbital data centers.”
Jared Isaacman, NASA administrator, 08/05/2026 · NY Post
“Space is the future of data centers, and the moon is the next frontier for that vision.”
Ezra Feilden, Starcloud CTO, 09/30/2026 · GeekWire
“This moment belongs to the thousands of people across fourteen countries who built, tested, and trusted this vehicle.”
Amit Kshatriya, NASA associate administrator, after Artemis II splashdown, 04/10/2026 · NASA
1 of 12

the last word · every week

ben’s countdown to mars

in one line every step from the first ship catch in nov 2026 to the first human on Mars on 06/28/2029, each with a date, a confidence tag and the math.

key number998 days to the first humans on Mars (our call)

first human steps onto Mars · 06/28/2029 · BAA est.

how it works: each row before the goal is one step toward the first crew on Mars, and each step proves one thing. rows after the goal come after the first crew lands. later dates are our estimates or agency targets, each with a confidence tag.

our call: the first base goes up at Arcadia Planitia. NASA’s 2019 ice map calls a large part of that plain “the most tempting target in the northern hemisphere,” with water ice less than a foot below the surface (NASA).

997d 17h 45m 52s

2 years, 8 months, 24 days on the calendar · 998 days from today in ET · about 971 sols · the clock counts to noon ET (EDT) on 06/28/2029

two timelines on one scale: how long we think Mars will take, and how long the Moon took.

“we choose to go to mars” baa’s bet: first humans on mars 06/28/2029

mars: from Starship Flight 1 (04/20/2023) to the first humans landing (our call, 06/28/2029)

“we choose to go to the moon” JFK, Rice University, 09/12/1962 (Smithsonian)

moon: from Kennedy’s goal (05/25/1961) to the Apollo 11 landing (07/20/1969)

same scale: from Kennedy’s goal to the first Moon landing took 8 years, 1 month, 25 days. Starship Flight 1 to our Mars call is 6 years, 2 months, 8 days. dates: NASA (speech, Glenn, Gemini 8, Apollo)

start the mars bar at

done medium low BAA confidence that a date holds within about 3 months · life beyond earth agency dates for missions that look for life’s ingredients and new worlds, set apart from the BAA chain · open any row’s “show the math”

  1. #01

    Booster caught by the launch tower

    10/13/2024 · SpaceX Flight 5

    proves: Super Heavy can come home and be reused fast. launches: 1

    show the math

    done on 10/13/2024. counting from then to today, 10/04/2026 ET:

    1. rest of 2024 after oct 13: oct 18 + nov 30 + dec 31 = 79
    2. full years: 2025 (365) = 365
    3. into 2026: oct 4 is day 277 of the year
    4. total: 79 + 365 + 277 = 721 days

    721 days ago.

    ✓1 year, 11 months, 21 days ago721 daysdone
  2. #02

    Raptor engine relit in space

    11/19/2024 · SpaceX Flight 6

    proves: the ship can fire its engines on command in orbit, needed for every deorbit and transfer burn. launches: 1

    show the math

    done on 11/19/2024. counting from then to today, 10/04/2026 ET:

    1. rest of 2024 after nov 19: nov 11 + dec 31 = 42
    2. full years: 2025 (365) = 365
    3. into 2026: oct 4 is day 277 of the year
    4. total: 42 + 365 + 277 = 684 days

    684 days ago.

    ✓1 year, 10 months, 15 days ago684 daysdone
  3. #03

    A flown booster flies again

    05/27/2025 · SpaceX Flight 9

    proves: boosters are reusable hardware, not throwaway stages. launches: 1

    show the math

    done on 05/27/2025. counting from then to today, 10/04/2026 ET:

    1. rest of 2025 after may 27: may 4 + jun 30 + jul 31 + aug 31 + sep 30 + oct 31 + nov 30 + dec 31 = 218
    2. into 2026: oct 4 is day 277 of the year
    3. total: 218 + 277 = 495 days

    495 days ago.

    ✓1 year, 4 months, 7 days ago495 daysdone
  4. #04

    First orbital Starship and first V3s delivered to orbit

    09/28/2026 · SpaceX Flight 14

    proves: the ship can reach orbit, do real work, and come back on target. launches: 1

    show the math

    done on 09/28/2026. counting from then to today, 10/04/2026 ET:

    1. sep 2 (rest of sep after the 28th) + oct 4 = 6

    6 days ago.

    ✓6 days agodone
  5. ◇

    MMX launches for Mars’ moons, to bring a piece of Phobos home

    10/19/2026 · 3:41 p.m. ET · JAXA target · JAXA

    proves: a sample from a moon of Mars can come to Earth.

    show the math

    from today, 10/04/2026 ET, to 10/19/2026, counting calendar days:

    1. oct 4 to oct 19: 19 minus 4 = 15

    on the calendar that is 15 days: 15 days more to 10/19/2026.

    15 dayslife beyond earth
  6. ◇

    Voyager 1 is one light-day from Earth

    11/18/2026 · 5:16 a.m. ET · NASA · NASA

    proves: a human-made object can reach a full light-day from Earth.

    show the math

    from today, 10/04/2026 ET, to 11/18/2026, counting calendar days:

    1. oct 27 (rest of oct after the 4th) + nov 18 = 45

    on the calendar that is 1 month, 14 days: add 1 month to reach 11/04/2026, then 14 days more to 11/18/2026.

    1 month, 14 days45 dayslife beyond earth
  7. #05

    Ship caught by the launch tower

    11/20/2026 · BAA est., Flight 15, late 11/2026

    proves: the upper stage can come back whole, so it can fly again. launches: 1 (Flight 15)

    show the math

    from today, 10/04/2026 ET, to 11/20/2026, counting calendar days:

    1. oct 27 (rest of oct after the 4th) + nov 20 = 47

    on the calendar that is 1 month, 16 days: add 1 month to reach 11/04/2026, then 16 days more to 11/20/2026.

    our call is late november; 11/20/2026 is used for the math, so read it as about 47.

    about 1 month, 16 days≈ 47 dayslow
  8. #06

    First propellant transfer between two ships in orbit

    11/27/2026 · BAA est., a partial refill for the Mars demo ship

    proves: a tanker docks with another Starship and pumps super-cold propellant into it. without refilling, Starship cannot reach the Moon or Mars. launches: 1 tanker, a few days after the Mars ship

    show the math

    from today, 10/04/2026 ET, to 11/27/2026, counting calendar days:

    1. oct 27 (rest of oct after the 4th) + nov 27 = 54

    on the calendar that is 1 month, 23 days: add 1 month to reach 11/04/2026, then 23 days more to 11/27/2026.

    1 month, 23 days54 dayslow
  9. #07

    First uncrewed Starship launches for Mars: a small landing demo

    12/01/2026 · BAA est. · late-2026 window, which closes 12/08

    proves: a Starship can leave Earth orbit, cross to Mars and land. SpaceX told investors in 02/2026 that it would put the Moon first and try Mars later (Reuters); our call is that a small demo still flies. launches: 1 ship with a light payload, partly refilled by 1 tanker

    show the math

    from today, 10/04/2026 ET, to 12/01/2026, counting calendar days:

    1. oct 27 (rest of oct after the 4th) + nov 30 + dec 1 = 58

    on the calendar that is 1 month, 27 days: add 1 month to reach 11/04/2026, then 27 days more to 12/01/2026.

    1 month, 27 days58 dayslow
  10. ◇

    Europa Clipper swings past Earth, about 2,000 miles up

    12/03/2026 · NASA target · NASA

    proves: Clipper gets the last gravity assist (a close pass that uses a planet’s pull to gain speed) it needs to reach Jupiter.

    show the math

    from today, 10/04/2026 ET, to 12/03/2026, counting calendar days:

    1. oct 27 (rest of oct after the 4th) + nov 30 + dec 3 = 60

    on the calendar that is 1 month, 29 days: add 1 month to reach 11/04/2026, then 29 days more to 12/03/2026.

    1 month, 29 days60 dayslife beyond earth
  11. #08

    First purpose-built tanker Starship flies

    01/20/2027 · BAA est.

    proves: a ship built only to carry propellant can fly. every refill in orbit depends on it. launches: 1

    show the math

    from today, 10/04/2026 ET, to 01/20/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: jan 20 is day 20 of the year
    3. total: 88 + 20 = 108 days

    on the calendar that is 3 months, 16 days: add 3 months to reach 01/04/2027, then 16 days more to 01/20/2027.

    3 months, 16 days108 dayslow
  12. #09

    A caught ship flies again

    02/01/2027 · BAA est.

    proves: both stages reused, which is what makes dozens of tanker flights affordable. launches: 1

    show the math

    from today, 10/04/2026 ET, to 02/01/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: feb 1 is day 32 of the year
    3. total: 88 + 32 = 120 days

    on the calendar that is 3 months, 28 days: add 3 months to reach 01/04/2027, then 28 days more to 02/01/2027.

    3 months, 28 days120 dayslow
  13. #10

    Starship launching about weekly from Texas and Florida

    02/15/2027 · BAA est.

    proves: refilling needs many launches in a short span, so two coasts and fast pad turnaround matter. launches: about 4 a month

    show the math

    from today, 10/04/2026 ET, to 02/15/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: feb 15 is day 46 of the year
    3. total: 88 + 46 = 134 days

    on the calendar that is 4 months, 11 days: add 4 months to reach 02/04/2027, then 11 days more to 02/15/2027.

    4 months, 11 days134 dayslow
  14. #11

    Propellant kept cold in orbit for weeks

    03/10/2027 · BAA est.

    proves: boil-off (propellant warming up and escaping as gas) stays low, so fuel waits in orbit while the next tankers arrive. launches: 1 to 2

    show the math

    from today, 10/04/2026 ET, to 03/10/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: mar 10 is day 69 of the year
    3. total: 88 + 69 = 157 days

    on the calendar that is 5 months, 6 days: add 5 months to reach 03/04/2027, then 6 days more to 03/10/2027.

    5 months, 6 days157 dayslow
  15. #12

    Orbital depot (a fuel tank parked in orbit) filled by a string of tankers

    03/25/2027 · BAA est.

    proves: a gas station in orbit that can top off a Moon or Mars ship. launches: about 10 tankers in about 6 weeks, from both coasts

    show the math

    from today, 10/04/2026 ET, to 03/25/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: mar 25 is day 84 of the year
    3. total: 88 + 84 = 172 days

    on the calendar that is 5 months, 21 days: add 5 months to reach 03/04/2027, then 21 days more to 03/25/2027.

    5 months, 21 days172 dayslow
  16. #13

    First uncrewed Starship lands on the Moon

    04/15/2027 · BAA est. (spring 2027; SpaceX targeted 03/2027, per Reuters)

    proves: landing a Starship on another world after refilling in orbit. launches: 1 lander plus about 10+ tankers

    show the math

    from today, 10/04/2026 ET, to 04/15/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: apr 15 is day 105 of the year
    3. total: 88 + 105 = 193 days

    on the calendar that is 6 months, 11 days: add 6 months to reach 04/04/2027, then 11 days more to 04/15/2027.

    6 months, 11 days193 dayslow
  17. #14

    Artemis III: crewed Orion docks with one or both commercial landers in Earth orbit

    06/30/2027 · NASA target mid-2027

    proves: a crew in Orion can dock with a commercial lander in orbit. launches: 1 Starship plus NASA's SLS rocket

    show the math

    from today, 10/04/2026 ET, to 06/30/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: jun 30 is day 181 of the year
    3. total: 88 + 181 = 269 days

    on the calendar that is 8 months, 26 days: add 8 months to reach 06/04/2027, then 26 days more to 06/30/2027.

    8 months, 26 days269 daysmedium
  18. #15

    First Starship lands on Mars

    07/01/2027 · BAA est. (~7-month trip)

    proves: entry, descent, and landing in thin Martian air. launches: 0 (already on the way)

    show the math

    from today, 10/04/2026 ET, to 07/01/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: jul 1 is day 182 of the year
    3. total: 88 + 182 = 270 days

    on the calendar that is 8 months, 27 days: add 8 months to reach 06/04/2027, then 27 days more to 07/01/2027.

    8 months, 27 days270 dayslow
  19. ◇

    ESCAPADE twin orbiters reach Mars

    09/2027 · NASA target · NASA

    proves: two small orbiters can study how Mars loses its air.

    show the math

    from today, 10/04/2026 ET, to 09/01/2027, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. into 2027: sep 1 is day 244 of the year
    3. total: 88 + 244 = 332 days

    on the calendar that is 10 months, 28 days: add 10 months to reach 08/04/2027, then 28 days more to 09/01/2027.

    NASA gives no day; 09/01 is used for the math, so read it as about 332.

    about 10 months, 28 days≈ 332 dayslife beyond earth
  20. #16

    Crew lives aboard a Starship in Earth orbit for months

    05/01/2028 · BAA est., the end of a stay of about 3 months

    proves: life support, radiation shelter, and health hold up for a trip-length stay. launches: 1 to 2 plus tankers

    show the math

    from today, 10/04/2026 ET, to 05/01/2028, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) = 365
    3. into 2028: may 1 is day 122 of the year
    4. total: 88 + 365 + 122 = 575 days

    on the calendar that is 1 year, 6 months, 27 days: add 1 year to reach 10/04/2027, then 6 months to reach 04/04/2028, then 27 days more to 05/01/2028.

    1 year, 6 months, 27 days575 dayslow
  21. ◇

    Dragonfly launch window opens for Titan

    07/05/2028 · NASA target, window to 07/25 · NASA

    proves: a nuclear-powered rotorcraft leaves for Saturn’s moon Titan, arriving 2034.

    show the math

    from today, 10/04/2026 ET, to 07/05/2028, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) = 365
    3. into 2028: jul 5 is day 187 of the year
    4. total: 88 + 365 + 187 = 640 days

    on the calendar that is 1 year, 9 months, 1 day: add 1 year to reach 10/04/2027, then 9 months to reach 07/04/2028, then 1 day more to 07/05/2028.

    1 year, 9 months, 1 day640 dayslife beyond earth
  22. #17

    First crew lands on the Moon in a Starship

    09/15/2028 · BAA est. · Artemis IV, NASA target 2028

    proves: Starship can carry people down to another world and back up. launches: 1 lander, 1 crew rocket, about 10+ tankers

    show the math

    from today, 10/04/2026 ET, to 09/15/2028, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) = 365
    3. into 2028: sep 15 is day 259 of the year
    4. total: 88 + 365 + 259 = 712 days

    on the calendar that is 1 year, 11 months, 11 days: add 1 year to reach 10/04/2027, then 11 months to reach 09/04/2028, then 11 days more to 09/15/2028.

    1 year, 11 months, 11 days712 dayslow
  23. ◇

    SR-1 Freedom, the first fission-powered (a small nuclear reactor) interplanetary spacecraft, launches for Mars

    12/2028 · NASA target · NASA

    proves: nuclear electric propulsion can push a spacecraft between planets.

    show the math

    from today, 10/04/2026 ET, to 12/01/2028, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) = 365
    3. into 2028: dec 1 is day 336 of the year
    4. total: 88 + 365 + 336 = 789 days

    on the calendar that is 2 years, 1 month, 27 days: add 2 years to reach 10/04/2028, then 1 month to reach 11/04/2028, then 27 days more to 12/01/2028.

    NASA gives a month; 12/01 is used for the math, so read it as about 789.

    about 2 years, 1 month, 27 days≈ 789 dayslife beyond earth
  24. #18

    Cargo ships with power, a propellant plant and habitats launch for Mars

    12/01/2028 · BAA est. (late-2028 window, two weeks before the crew)

    proves: the plant that will make fuel for the trip home leaves in the same window as the crew. launches: about 4 ships and dozens of tankers

    show the math

    from today, 10/04/2026 ET, to 12/01/2028, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) = 365
    3. into 2028: dec 1 is day 336 of the year
    4. total: 88 + 365 + 336 = 789 days

    on the calendar that is 2 years, 1 month, 27 days: add 2 years to reach 10/04/2028, then 1 month to reach 11/04/2028, then 27 days more to 12/01/2028.

    2 years, 1 month, 27 days789 dayslow
  25. #19

    First crew launches for Mars

    12/15/2028 · BAA est. (late-2028 window)

    proves: people leave Earth on a fully refilled ship. launches: 1 crew ship plus dozens of tankers

    show the math

    from today, 10/04/2026 ET, to 12/15/2028, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) = 365
    3. into 2028: dec 15 is day 350 of the year
    4. total: 88 + 365 + 350 = 803 days

    on the calendar that is 2 years, 2 months, 11 days: add 2 years to reach 10/04/2028, then 2 months to reach 12/04/2028, then 11 days more to 12/15/2028.

    2 years, 2 months, 11 days803 dayslow
  26. #20

    Power, propellant plant and habitats land on Mars

    06/14/2029 · BAA est. (195-day trip, two weeks before the crew)

    proves: the hardware survives landing and is ready when the crew arrives. launches: 0 (already on the way)

    show the math

    from today, 10/04/2026 ET, to 06/14/2029, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) + 2028 (366, leap) = 731
    3. into 2029: jun 14 is day 165 of the year
    4. total: 88 + 731 + 165 = 984 days

    on the calendar that is 2 years, 8 months, 10 days: add 2 years to reach 10/04/2028, then 8 months to reach 06/04/2029, then 10 days more to 06/14/2029.

    2 years, 8 months, 10 days984 dayslow
  27. #21

    First human steps onto Mars

    06/28/2029 · BAA est. (~6-month trip) · Arcadia Planitia, our call

    proves: the whole chain works end to end. launches: 0 (already on the way)

    show the math

    from today, 10/04/2026 ET, to 06/28/2029, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) + 2028 (366, leap) = 731
    3. into 2029: jun 28 is day 179 of the year
    4. total: 88 + 731 + 179 = 998 days

    on the calendar that is 2 years, 8 months, 24 days: add 2 years to reach 10/04/2028, then 8 months to reach 06/04/2029, then 24 days more to 06/28/2029.

    on Mars that is about 971 sols (998 × 24 h ÷ 24.6597 h per sol; sol length from NASA GISS Mars24). the big clock counts to noon ET on 06/28/2029 (EDT, UTC−4), so it can read a few hours off the calendar count.

    2 years, 8 months, 24 days998 dayslow
  28. after the first crew
  29. #22

    First rocket propellant made on Mars

    03/01/2030 · BAA est. · after the first crew

    proves: methane and oxygen from Martian CO2 and ice, so a ship can fly home. launches: 0

    show the math

    from today, 10/04/2026 ET, to 03/01/2030, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) + 2028 (366, leap) + 2029 (365) = 1,096
    3. into 2030: mar 1 is day 60 of the year
    4. total: 88 + 1,096 + 60 = 1,244 days

    on the calendar that is 3 years, 4 months, 25 days: add 3 years to reach 10/04/2029, then 4 months to reach 02/04/2030, then 25 days more to 03/01/2030.

    3 years, 4 months, 25 days1,244 dayslow
  30. ◇

    Europa Clipper enters orbit around Jupiter

    04/11/2030 · NASA target · NASA

    proves: we can get a close look at an ocean world that may have what life needs. launches: 0 (already on the way)

    show the math

    from today, 10/04/2026 ET, to 04/11/2030, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) + 2028 (366, leap) + 2029 (365) = 1,096
    3. into 2030: apr 11 is day 101 of the year
    4. total: 88 + 1,096 + 101 = 1,285 days

    on the calendar that is 3 years, 6 months, 7 days: add 3 years to reach 10/04/2029, then 6 months to reach 04/04/2030, then 7 days more to 04/11/2030.

    the whole trip, step by step (BAA calc from NASA and JPL data)

    stepwhatmathresult
    1launch10/14/2024, 16:06 UTC, Falcon Heavy, KSC 39A (JPL Horizons)start
    2Mars gravity assist03/01/2025, about 550 mi (884 km) above Mars (NASA)done
    3Earth gravity assist12/03/2026, about 2,000 mi (3,200 km) above Earth (NASA target)60 days from today
    4total trip time10/14/2024 to 04/11/20302,005 days (5.49 yr; NASA says “about 5½ years”)
    5elapsed10/14/2024 to today720 days (35.9% of the time)
    6days remainingcalendar days, worked out above1,285 days
    7total path lengthsum of 2,004 daily straight-line steps along JPL’s heliocentric trajectory2.88 billion km (1.79 billion mi). NASA quotes 2.9 billion km, so the method checks out
    8distance flown, 10/04/2026same sum, launch to 10/04/20261.35 billion km (837 million mi), 46.7%
    9distance to go, 10/04/2026same sum, 10/04/2026 to 04/11/20301.54 billion km (954 million mi)
    10average speed needed for the rest1.535 billion km ÷ (1,285 days × 86,400 s)13.8 km/s (about 31,000 mph)
    11speed on 10/04/2026, relative to the SunJPL vectors38.4 km/s (85,800 mph), fast because it is falling back toward Earth for the flyby
    12speed at Jupiter, relative to the SunJPL vectors, 04/11/20307.6 km/s (16,900 mph); it slows as it climbs away from the Sun
    13distance from Earth, 10/04/2026JPL Horizons, 16:00 UTC0.439 AU = 65.7 million km; radio takes 3.7 minutes one way
    14signal delay at arrival4.553 AU × 499.0 s per AU37.9 minutes one way
    15then whatJPL Horizons header, NASAabout 49 Europa flybys, as low as 25 km, prime mission to 2034

    the curious bit: Clipper has flown almost half the distance in about a third of the time. it moves fastest near the Sun and coasts slower and slower on the long climb out to Jupiter.

    method: daily straight-line steps slightly under-count the curved path, most around the flybys; the match to NASA’s 2.9 billion km says the error is small. sources: NASA mission timeline · JPL press kit · JPL Horizons (−159).

    3 years, 6 months, 7 days1,285 dayslife beyond earth
  31. #23

    Second Mars wave: more crew, power and cargo launch

    02/20/2031 · BAA est. (early-2031 window) · after the first crew

    proves: back-to-back windows: ships can leave every 26 months. launches: about 4+ ships and dozens of tankers

    show the math

    from today, 10/04/2026 ET, to 02/20/2031, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) + 2028 (366, leap) + 2029 (365) + 2030 (365) = 1,461
    3. into 2031: feb 20 is day 51 of the year
    4. total: 88 + 1,461 + 51 = 1,600 days

    on the calendar that is 4 years, 4 months, 16 days: add 4 years to reach 10/04/2030, then 4 months to reach 02/04/2031, then 16 days more to 02/20/2031.

    4 years, 4 months, 16 days1,600 dayslow
  32. ◇

    ESA’s Juice arrives at Jupiter

    07/21/2031 · ESA nominal · ESA

    proves: Europe’s look at Ganymede, Callisto and Europa begins.

    show the math

    from today, 10/04/2026 ET, to 07/21/2031, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) + 2028 (366, leap) + 2029 (365) + 2030 (365) = 1,461
    3. into 2031: jul 21 is day 202 of the year
    4. total: 88 + 1,461 + 202 = 1,751 days

    on the calendar that is 4 years, 9 months, 17 days: add 4 years to reach 10/04/2030, then 9 months to reach 07/04/2031, then 17 days more to 07/21/2031.

    4 years, 9 months, 17 days1,751 dayslife beyond earth
  33. #24

    Third Mars wave: habitats, spare ships, and supplies launch

    04/20/2033 · BAA est. (spring-2033 window) · after the first crew

    proves: the base grows: more room, more spares and more people. launches: about 4+ ships and dozens of tankers

    show the math

    from today, 10/04/2026 ET, to 04/20/2033, counting calendar days:

    1. rest of 2026 after oct 4: oct 27 + nov 30 + dec 31 = 88
    2. full years: 2027 (365) + 2028 (366, leap) + 2029 (365) + 2030 (365) + 2031 (365) + 2032 (366, leap) = 2,192
    3. into 2033: apr 20 is day 110 of the year
    4. total: 88 + 2,192 + 110 = 2,390 days

    on the calendar that is 6 years, 6 months, 16 days: add 6 years to reach 10/04/2032, then 6 months to reach 04/04/2033, then 16 days more to 04/20/2033.

    6 years, 6 months, 16 days2,390 dayslow

what moved: we re-dated the whole chain to match our Mars call. one uncrewed Starship leaves for Mars in the window open now (12/01/2026) and lands 07/01/2027 (was 12/15/2028 and 07/15/2029). the first crew leaves 12/15/2028 and steps onto Mars 06/28/2029 (was 07/10/2035 and 01/20/2036), with power, a propellant plant and habitats on cargo ships in the same window. the Moon comes first: an uncrewed Starship lands there 04/15/2027 (was 10/15/2028) and a crew follows 09/15/2028 (was 11/15/2029). refilling, weekly launches and the months-long crew test moved into 2027 and early 2028 to fit. the ship catch moved earlier too: Flight 15, late 11/2026, not 03/20/2027.

the rule: calendar days from today in eastern time. the page recounts live in your browser at midnight ET; with scripts off it shows the numbers as of sunday 10/04/2026.

terms, in a few lines

  1. C3, launch energy. the extra speed a ship needs beyond escaping Earth, squared, in km²/s². a lower number means a lighter rocket or more cargo. Mars trips in good windows need about 8 to 20. ↩
  2. Lambert solve. given two positions and a travel time, it finds the one orbit around the sun that links them. we run it for many launch and arrival dates and keep the cheapest. "two-body" means only the sun pulls on the ship. ↩
  3. orbital elements, JPL Horizons. six numbers describe an orbit: its size, shape, tilt and where the planet is on it. JPL publishes a simple set good for centuries; Horizons is JPL’s precise service, which we use as the check. ↩

every number and its source, on one page →the edition on one printed page (pdf)

sourcesevery source in this edition

sources: NASA (administrator release 12/18/2025; Europa Clipper timeline, FAQ and JPL press kit; Voyager light-day; ESCAPADE; Dragonfly; SR-1 Freedom; Artemis II releases 04/10/2026; potential biosignature 09/10/2025) · JPL Horizons (Europa Clipper record, header revised 09/30/2026, tracking through 09/22/2026) · NASA GISS Mars24 · JAXA 08/20/2026 · ESA Juice calendar and 09/28/2026 flyby · House Appropriations testimony 04/27/2026 · pod force one and NY Post 08/05/2026 · CNN and The Guardian 04/05/2026 · CNN 12/17/2025 · WESH 10/01/2026 · Boeing 09/28/2026 · Space.com 01/2026 · Live Science · Ars Technica 09/2026 · Reuters 09/16/2026, 02/06/2026, 01/31/2026 · Xinhua 08/23/2026 · SpacePolicyOnline, Space.com, Spaceflight Now 09/2026 · PCMag 09/04/2026 · China in Space 08/31, 09/20/2026 · SpaceNews 05/07, 09/10/2026 · Payload 09/24/2026 · GeekWire 09/30/2026 · Business Standard 09/28/2026 · Tom’s Hardware 06/09, 09/23/2026 · Google and NPR 10/2026 · SpaceX Starmind page (fetched 10/04/2026) and Q2 release (SEC 08/04/2026) · Nvidia 08/24/2026 · MLQ 08/25/2026 · FCC · DCD 05/12/2026 · Stoke 09/08/2026 · Varda 09/30/2026 · ITU Facts and Figures 2025 · SatNews 06/07/2026 · Advanced Television 07/29/2026 · OpenVault 07/22/2026 · planet4589 10/02/2026. BAA estimates are labeled.

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