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SpaceX Crew Dragon, Falcon 9 roll out to the pad for historic Inspiration4 launch

(Inspiration4)

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On the morning of September 12th, SpaceX rolled the Falcon 9 rocket and Crew Dragon spacecraft that will support the world’s first fully private orbital spaceflight to the launch pad they’ll soon lift off from.

Scheduled to launch no earlier than (NET) 8pm EDT on Wednesday, September 15th (02:00 UTC 16 Sept), the mission – deemed Inspiration4 by the billionaire funding it – will be both SpaceX and the world’s first crewed orbital spaceflight without a single professional astronaut aboard. Instead, billionaire Shift4 found Jared Isaacman, Ph.D. geologist and science communicator Sian Proctor, engineer Christopher Sembroski (standing in for a friend), and physician’s assistant and childhood cancer survivor Hayley Arceneaux will be along for the ride.

Soon-to-be-astronaut Dr. Sian Proctor stands in front of the Falcon 9 rocket that will carry her on the way to orbit. (Inspiration4)

While none of the four crew members are professional astronauts or have any direct spaceflight experience at all, Isaacman – Inspiration4’s commander – is an experienced private pilot and all four have spent the better part of 2021 training full-time to ensure some degree of competency. Of course, Crew Dragon (like its Cargo Dragon 2 variant) is a nominally autonomous spacecraft designed to fly itself to and from the International Space Station – a far more complex task than the three days Inspiration4 is planned to fly free in orbit.

Still, much like all professional NASA and international astronauts to fly on Dragon undergo extensive training, a crew that knows how to operate their spacecraft is far more likely to be able to intervene – and perhaps save the mission and their lives – in the event of a major anomaly. As such, Isaacman, Proctor, Arceneaux, and Sembroski may be far from professional astronauts when they lift off but they also won’t be amateurs.

For Inspiration4, SpaceX will be launching astronauts with a flight-proven Falcon 9 booster and an orbit-proven Dragon capsule for the second time ever. The mission will still mark the first time humans have launched on a twice-flown Falcon booster (B1062) and the once-flown Crew Dragon spacecraft is on pace to reach orbit for the second time in less than five months – smashing the previous orbital capsule turnaround record by more than 40%.

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Sembroski, Proctor, Isaacman, and Arceneaux stand in front of Dragon Resilience (C207) and, later, their combined Dragon and Falcon 9 vehicle.

Perhaps most significantly, at the earnest request of SpaceX’s Inspiration4 customer, the mission will also mark the highest orbit and altitude humans have reached – 575 km (357 mi) – in more than 13 years. It will be the seventh-highest Earth orbit ever reached by astronauts after five Space Shuttle missions to service the Hubble Space Telescope and two Gemini spacecraft test flights in the 1960s.

Stay tuned for updates on Inspiration4’s Wednesday launch and SpaceX’s webcast coverage of the historic private spaceflight.

Eric Ralph is Teslarati's senior spaceflight reporter and has been covering the industry in some capacity for almost half a decade, largely spurred in 2016 by a trip to Mexico to watch Elon Musk reveal SpaceX's plans for Mars in person. Aside from spreading interest and excitement about spaceflight far and wide, his primary goal is to cover humanity's ongoing efforts to expand beyond Earth to the Moon, Mars, and elsewhere.

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Tesla Cybercab display highlights interior wizardry in the small two-seater

Photos and videos of the production Cybercab were shared in posts on social media platform X.

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Credit: Tesla Robotaxi/X

The Tesla Cybercab is currently on display at the U.S. Department of Transportation in Washington, D.C., and observations of the production vehicle are highlighting some of its notable design details. 

Photos and videos of the production Cybercab were shared in posts on social media platform X.

Observers of the Cybercab display unit noted that the two-seat Robotaxi provides unusually generous legroom for a vehicle of its size. Based on the vehicle’s video, the compact two-seater appears to offer more legroom than Tesla’s larger vehicles such as the Model Y, Model X, and Cybertruck.

The Cybercab’s layout allows Tesla to dedicate nearly the entire cabin to passengers. The vehicle is designed without a steering wheel or pedals, which helps maximize interior space.

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Footage from the display also highlights the Cybercab’s large center screen, which is positioned prominently in front of the passenger bench. The display appears intended to provide entertainment and ride information while the vehicle operates autonomously.

Images of the vehicle also show an additional camera integrated into the Cybercab’s C-pillar. The extra camera appears to expand the vehicle’s field of view, which would be useful as Tesla works toward fully unsupervised Full Self-Driving.

Tesla engineers have previously explained that the Cybercab was designed to be highly efficient both in manufacturing and in operation. Cybercab Lead Engineer Eric E. stated in 2024 that the Robotaxi would be built with roughly half the number of parts used in a Model 3 sedan.

“Two seats unlocks a lot of opportunity aerodynamically. It also means we cut the part count of Cybercab down by a substantial margin. We’re gonna be delivering a car that has roughly half the parts of Model 3 today,” the Tesla engineer said.

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The Tesla engineer also noted that the Cybercab’s cargo area can accommodate multiple golf bags, two carry-on suitcases, and two full-size checked bags. The trunk can also fit certain bicycles and a foldable wheelchair depending on size, which is quite impressive for a small car like the Cybercab.

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Elon Musk’s xAI wins permit for power plant supporting AI data centers

The development was reported by CNBC, citing confirmation from the Mississippi Department of Environmental Quality (MDEQ).

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Mississippi regulators have approved a permit allowing Elon Musk’s artificial intelligence company xAI to construct a natural gas power plant in Southaven. The facility is expected to support the company’s expanding AI infrastructure tied to its Colossus data center operations near Memphis.

The development was reported by CNBC, citing confirmation from the Mississippi Department of Environmental Quality (MDEQ).

According to the report, regulators “voted to approve the permit” of xAI subsidiary MZX Tech LLC to construct a power plant featuring 41 natural gas-burning turbines “after careful consideration of all public comments and community concerns.”

The Mississippi Department of Environmental Quality stated that the permit followed a regulatory review process that included public comments and community input. Jaricus Whitlock, air division chief for the MDEQ, stated that the project met all applicable environmental standards.

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“The proposed PSD permit in front of the board today not only meets all state and federal permitting regulations, but goes above and beyond what is required by law. MDEQ and the EPA agree that not a single person around our facilities will be exposed to unhealthy levels of air pollution,” Whitlock stated.

The planned facility will help provide electricity for xAI’s AI computing infrastructure in the Memphis region.

The Southaven project forms part of xAI’s efforts to scale computing capacity for its artificial intelligence systems.

The company currently operates two major data centers in Memphis, known as Colossus 1 and Colossus 2, which provide computing power for xAI’s Grok AI models. xAI is also planning to build another large data center in Southaven called Macrohardrr, which would be located in a warehouse previously used by GXO Logistics.

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Large-scale AI training requires substantial computing power and electricity, prompting technology companies to develop dedicated energy infrastructure for their data centers.

SpaceX President Gwynne Shotwell previously stated that xAI plans to develop 1.2 gigawatts of power capacity for its Memphis-area AI supercomputer site as part of the federal government’s Ratepayer Protection Pledge. The commitment was announced during an event with United States President Donald Trump.

“As part of today’s commitment, we will take extensive additional steps to continue to reduce the costs of electricity for our neighbors. xAI will therefore commit to develop 1.2 GW of power as our supercomputer’s primary power source. That will be for every additional data center as well. We will expand what is already the largest global Megapack power installation in the world,” Shotwell said.

“The installation will provide enough backup power to power the city of Memphis, and more than sufficient energy to power the town of Southaven, Mississippi where the data center resides. We will build new substations and invest in electrical infrastructure to provide stability to the area’s grid.”

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Tesla China teases Optimus robot’s human-looking next-gen hands

The image was shared by Tesla AI’s account on Weibo and later reposted by Tesla community members on X.

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Credit: Tesla China

A new teaser shared by Tesla’s China team appears to show a pair of unusually human-like hands for Optimus. 

The image was shared by Tesla AI’s account on Weibo and later reposted by Tesla community members on X.

As could be seen in the teaser image, the new version of Optimus’ hands features proportions and finger structures that look strikingly similar to those of a human hand. Their appearance suggests that they might have dexterity approaching that of a human hand.

If the image reflects a new generation of Optimus’ hands, it could indicate Tesla is continuing to refine one of the most critical components of its humanoid robot.

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Hands are widely viewed as one of the most difficult engineering challenges in robotics. For Optimus to perform complex real-world work, from manufacturing tasks to household activities, its hands would need to be the best in the industry.

Elon Musk has repeatedly described Optimus as Tesla’s most important long-term product. In posts on social media platform X, Musk has stated that Optimus could eventually become the first real-world Von Neumann machine.

In theory, a Von Neumann machine is a self-replicating system capable of building copies of itself using available materials. The concept was originally proposed by mathematician John von Neumann in the mid-20th century.

“Optimus will be the first Von Neumann machine, capable of building civilization by itself on any viable planet,” Musk wrote in a post on X.

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If Optimus is expected to carry out complex work autonomously in the future, high levels of dexterity will likely be essential. This makes the development of advanced robotic hands a key step towards Musk’s long-term expectations for the product.

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