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Anonymous

Danielfeacy

22 Oct 2024 - 04:49 am

The WNBA is having a real moment - Caitlin Clark and the league’s historic season by the numbers
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When many of us hear the “Fall Classic,” we automatically think of baseball’s World Series. I’m not sure that will be the case for future generations.

Yes, I’m being somewhat provocative with that line, but the WNBA Finals have arrived on the heels of what can only be described as a historic season for the league. Across a metric of statistics, it’s clear that America’s interest in the WNBA is at the highest point this century in large part because of Indiana Fever star Caitlin Clark.

Let’s start simple: Google searches. They’ve been higher this WNBA season, starting with the draft in April, than at any point since we’ve had data (2004). Searches for the WNBA are up over 300% compared to last season, up over 850% compared to five seasons ago, and have risen nearly 1,400% from a decade ago.

That is, the WNBA has been rising, and this year it really took off.
This interest has translated into revenue for the league. Attendance is up a staggering 48% from 2023. There wasn’t a single team with an average regular season home attendance of five figures (10,000+) in 2023. This season, there were six.

Leading the charge was Clark’s Fever. A little more than 4,000 people attended their average game in 2023, which ranked them second to last. This season, more than 17,000 did, a 319% rise that put them far and away ahead of any other WNBA team and ahead of five NBA teams, including the hometown Indiana Pacers.

We see the same pattern in merchandise. Sales are up 600% from last year. This includes the boost from rookie sensations Clark, who had the best-selling jersey, and Angel Reese of the Chicago Sky, who had the second-best-selling jersey.

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22 Oct 2024 - 03:50 am

Automatic takeoffs are coming for passenger jets and they’re going to redraw the map of the sky
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In late 1965, at what’s now London Heathrow airport, a commercial flight coming from Paris made history by being the first to land automatically.

The plane – A Trident 1C operated by BEA, which would later become British Airways – was equipped with a newly developed extension of the autopilot (a system to help guide the plane’s path without manual control) known as “autoland.”

Today, automatic landing systems are installed on most commercial aircraft and improve the safety of landings in difficult weather or poor visibility.

Now, nearly 60 years later, the world’s third largest aircraft manufacturer, Brazil’s Embraer, is introducing a similar technology, but for takeoffs.

Called “E2 Enhanced Take Off System,” after the family of aircraft it’s designed for, the technology would not only improve safety by reducing pilot workload, but it would also improve range and takeoff weight, allowing the planes that use it to travel farther, according to Embraer.

“The system is better than the pilots,” says Patrice London, principal performance engineer at Embraer, who has worked on the project for over a decade. ”That’s because it performs in the same way all the time. If you do 1,000 takeoffs, you will get 1,000 of exactly the same takeoff.”

Embraer, London adds, has already started flight testing, with the aim to get it approved by aviation authorities in 2025, before introducing it from select airports.

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22 Oct 2024 - 01:13 am

Automatic takeoffs are coming for passenger jets and they’re going to redraw the map of the sky
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In late 1965, at what’s now London Heathrow airport, a commercial flight coming from Paris made history by being the first to land automatically.

The plane – A Trident 1C operated by BEA, which would later become British Airways – was equipped with a newly developed extension of the autopilot (a system to help guide the plane’s path without manual control) known as “autoland.”

Today, automatic landing systems are installed on most commercial aircraft and improve the safety of landings in difficult weather or poor visibility.

Now, nearly 60 years later, the world’s third largest aircraft manufacturer, Brazil’s Embraer, is introducing a similar technology, but for takeoffs.

Called “E2 Enhanced Take Off System,” after the family of aircraft it’s designed for, the technology would not only improve safety by reducing pilot workload, but it would also improve range and takeoff weight, allowing the planes that use it to travel farther, according to Embraer.

“The system is better than the pilots,” says Patrice London, principal performance engineer at Embraer, who has worked on the project for over a decade. ”That’s because it performs in the same way all the time. If you do 1,000 takeoffs, you will get 1,000 of exactly the same takeoff.”

Embraer, London adds, has already started flight testing, with the aim to get it approved by aviation authorities in 2025, before introducing it from select airports.

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Louiskak

21 Oct 2024 - 06:49 pm

SpaceX Polaris Dawn crew returns home after history-making mission
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SpaceX’s Polaris Dawn crew is home, capping off a five-day mission to orbit — which included the world’s first commercial spacewalk — by splashing down in the Gulf of Mexico.

The Crew Dragon capsule carrying four astronauts landed off the coast of Dry Tortugas, Florida, at 3:37 a.m. ET Sunday.
The Polaris Dawn mission made history as it reached a higher altitude than any human has traveled in five decades. A spacewalk conducted early Thursday morning also marked the first time such an endeavor has been completed by a privately funded and operated mission.

But returning to Earth is among the most dangerous stretches of any space mission.

To safely reach home, the Crew Dragon capsule carried out what’s called a “de-orbit burn,” orienting itself as it prepared to slice through the thickest part of Earth’s atmosphere.
The spacecraft then reached extremely hot temperatures — up to 3,500 degrees Fahrenheit (1,900 degrees Celsius) — because of the pressure and friction caused by hitting the air while still traveling around 17,000 miles per hour (27,000 kilometers per hour). The crew, however, should have remained at comfortable temperatures, protected by the Crew Dragon’s heat shield, which is located on the bottom of the 13-foot-wide (4-meter-wide) capsule.

Dragging against the air began to slow the vehicle down before the Crew Dragon deployed parachutes that further decelerated its descent.

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