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Huge Rolls Royce Cullinan sized Toyota Century 2024 gets 35 liter V6 like Huge Rolls Royce Cullinan sized Toyota Century 2024 gets 35 liter V6 like

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Huge Rolls-Royce Cullinan-sized Toyota Century 2024 gets 3.5-liter V6 like Lexus TX 550h+

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The new SUV Toyota Century will be presented in the near future. Although it was originally supposed to be released with a four-cylinder engine, new data from Japan indicate that it will receive a 3.5-liter V6 as part of a hybrid powertrain.

Toyota Branding Director Simon Humphreys announced the Century SUV during the unveiling of the new Alphard and Vellfire back in June. While only a blacked-out teaser of the car was shown to those attending the event, it was confirmed that the new model would have similar dimensions to the Rolls-Royce Cullinan.

Huge Rolls-Royce Cullinan-sized Toyota Century 2024 gets 3.5-liter V6 like Lexus TX 550h+

The new Century version is expected to be based on the Toyota TNHGA-K architecture used in vehicles such as the Toyota Alphard/Vellfire, Lexus LM, as well as the Toyota Highlander and Lexus TX. Bestcarweb suggests that the SUV will get the same powertrain as the flagship Lexus TX 550h+. That means a 3.5-liter V6 plug-in hybrid engine with 406 hp. in combination with an 8-speed automatic transmission and all-wheel drive.

The Century SUV will be sold exclusively with two rows of seats, and its wheelbase will be 50mm longer than the Lexus TX at 3,000mm. This long wheelbase, as well as the high roofline, will make the Century SUV more spacious.

Huge Rolls-Royce Cullinan-sized Toyota Century 2024 gets 3.5-liter V6 like Lexus TX 550h+

The Toyota Century can cost around $105,000. It is expected to be introduced before the end of this year and will be offered in various markets outside of Japan.

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Formally, there are no questions to Nvidia even after the raid. The European Commission denies the fact of conducting an antimonopoly investigation

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Formally there are no questions to Nvidia even after the

EU competition authorities are not conducting a formal investigation into chips used for artificial intelligence, the European Commission announced on Monday, October 2.

“The Commission is not conducting a formal investigation into the matter you refer to,” an EU executive spokesman said in an email to Reuters, which asked for comment on the rumors.

Formally, there are no questions to Nvidia even after the raid.  The European Commission denies the fact of conducting an antimonopoly investigation

Image by Midjourney

A few days earlier, the French antitrust authority raided Nvidia on suspicion of anti-competitive practices. Nvidia declined to comment on the situation after the French raid.

Last week, Bloomberg reported that the EU’s competition watchdog was informally gathering views on potentially unfair practices in the GPU market.

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Samsung will release the latest Quasar chips to compete with Nvidia

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Samsung will release the latest Quasar chips to compete with

Samsung’s contract chip manufacturing division has a new customer in the form of a Canadian startup called Tenstorrent, which develops chips with artificial intelligence technologies.

Tenstorrent is among a number of startups trying to compete with Nvidia, which dominates the AI ​​chip market. The company makes chips for data centers, but is also working to supply other markets, including automotive.

Samsung will release the latest Quasar chips to compete with Nvidia

Image by Midjourney

As part of the deal, Tenstorrent plans to use one of Samsung’s advanced manufacturing processes (4nm) to produce chips. Some of Tenstorrent’s chips are built using technology known as RISC-V, an open-source semiconductor architecture that competes with Arm and x86. However, the chip that Samsung will produce is called Quasar and is not based on RISC-V technology.

“Tenstorrent’s goal is to develop high-performance computing and deliver those solutions to customers around the world,” Tenstorrent CEO Jim Keller said in a statement.

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Chinese telescope FAST discovered 76 new faint pulsars

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Chinese telescope FAST discovered 76 new faint pulsars

These pulsars are special in the sense that they periodically emit a pulse as they spin, which is why they are known as periodic radio frequency emission sources (RRATs).

Pulsars, or rapidly rotating neutron stars, are formed from the remains of the cores of massive stars after supernova explosions. Their high density and rapid rotation make them an ideal laboratory for studying the laws of physics under extreme conditions.

Unlike most pulsars, which emit pulses continuously, RRAT is difficult to find in normal pulsar search mode. They are isolated pulse by pulse from a huge amount of data obtained using a highly sensitive radio telescope.

Chinese telescope FAST discovered 76 new faint pulsars

The 500-meter aperture spherical radio telescope FAST is located in Pingtang County, Guizhou Province, southwest China. Source: CFP

Since the discovery of the first RRAT in 2006, radio telescopes around the world have discovered more than 160 RRATs. Detailed studies of several faint pulsars indicate that they are pulsars with special physical properties in the magnetosphere, and constitute about 5% of the total number of pulsars.

The Beijing Astronomical Observatory (NAOC) research team developed a new system for searching for individual pulses and systematically searched for individual pulses in data obtained from the 2020 FAST Galactic Pulsar Snapshot Survey.

The 76 RRATs discovered by the new method account for about 12% of the total number of pulsars discovered in the FAST study, according to Han Jinglin, a leading researcher in the field. This suggests that there are more such periodically emitting pulsars than previously thought.

To better understand the physical properties of RRATs, scientists also used FAST to observe 59 known RRATs detected by international telescopes. The polarization signals of these periodically emitted pulses detected by FAST indicate that they are emitted from the same region of the neutron star’s magnetosphere as normal pulses, according to the study.

“The study has important implications for understanding the dense remnants of dead stars in the Milky Way and their emission characteristics,” Han said, adding that highly sensitive radio telescopes such as FAST are the best tools for detecting such amazing pulsars.

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