I recently spent the day at the New York International Auto Show, held at the Jacob Javits Center in New York City. I’ve heard that upward of a million people attend this event. I was there on Media Day, which is the day before the show opens to the public, so I had pretty good access to all the cars. Here you’ll see some of the highlights and other interesting things I came across. The wackiest of the photos, the last one, was taken outside the convention center.
Click on the photo to start the slideshow.
This photo by itself isn’t all that interesting, as it shows the 2015 (yes, 2015) Volkswagen Golf under a cover. What’s cool about this is that they projected images onto the cover, and you’d think you were looking at the real thing, as you can see in the next image.
Charles, I do not understand the need for this technology. If mirrors are set correctly, there is no blind spot. If one can see the sides of your own vehicle, then they aren't set properly.
Properly set mirrors show a car approaching in the center rear view mirror. As it disappears from the rear view mirror, it is just appearing in the side view mirror. As it disappears from that mirror, the nose of the car is in your peripheral vision. Where's the blind spot? The car was in continuous view.
I'd like to try the LaneWatch camera, Rich. I, too, wonder about its intuitiveness. In terms of intutiveness, I hope it's better than Cadillac's old night vision technology from a few years back, which was not easy to use and bombed in the market.
Some humanoid walking robots are also good at running, balancing, and coordinated movements in group settings. Several of our sports robots have won regional or worldwide acclaim in the RoboCup soccer World Cup, or FIRST Robotics competitions. Others include the world's first hockey-playing robot and a trash-talking Scrabble player.
A recent example of a major CAE revamp is MSC Apex, released last month by MSC Software Corp. In a discussion with Design News, MSC executives noted that its next-generation platform is designed to substantially reduce CAE modeling and process time, “in some cases from weeks down to hours.”
The Thames Deckway would run for eight miles close to the river’s edge, rising and falling slightly with the tidal cycle. It will generate its own energy from a series of devices that will line the pathway and use a combination of sources to make the path self-sustaining.
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