1931 Model A Truck Hot Rod Rat Rod Model A on 2040-cars
Peyton, Colorado, United States
Engine:350
Vehicle Title:Clear
For Sale By:Private Seller
Mileage: 999,999
Make: Ford
Number of Cylinders: 8
Model: Model A
Trim: truck
Warranty: Vehicle does NOT have an existing warranty
Drive Type: RWD
Ford Model A for Sale
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Auto Services in Colorado
Wreckmasters Body and Frame ★★★★★
Wizard Transmissions ★★★★★
Tire Warehouse ★★★★★
Tapp`s Garage ★★★★★
T & R Towing & Auto Repair ★★★★★
Stu Ritter Mercedes-Benz ★★★★★
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1969 Ford GT40 Mk III found roaming the halls in Geneva
Wed, Mar 4 2015The halls of the 2015 Geneva Motor Show are filled with all manner of exotic racing machinery, from the likes Scuderia Cameron Glickenhaus to McLaren. But there's one peculiar bit of history tucked away that we thought you'd be equally interested to see: a 1969 Ford GT40 Mk III. One of only seven known to be built, this Mk III coupe was intended as a road-going alternative to earlier racing-bred GT40 models, like the original Mk I and 427-cubic-inch, Le Mans-dominating Mk II. Due to its street-legal intentions, the Ford GT40 Mk III boasted revised bodywork that allowed for some luggage and new headlights, along with a redesigned interior with left-hand-drive and a shifter in the normal, center position. The Mk III wasn't very popular when it was new in the 1960s, in part because it looked different from other GT40 models and because it was pretty expensive, but that just means it's an awfully rare gem today. Take a look at the piece of history in our high-res image gallery above. Related Video: Featured Gallery 1969 Ford GT40 Mk III: Geneva 2015 View 18 Photos Image Credit: Live photos copyright 2015 Drew Phillips / AOL Geneva Motor Show Ford Automotive History Coupe Racing Vehicles Special and Limited Editions Performance Classics 2015 Geneva Motor Show ford gt40 autoblog black
Ford F-150, Chevy Silverado, Toyota Tundra flunk IIHS headlight test
Tue, Oct 25 2016The Insurance Institute for Highway Safety put pickup truck headlights to the test and found that the majority of them were equipped with subpar units. The 2017 Honda Ridgeline was the only truck to earn a rating of "good." The large pickup truck test was comprised of the: 2016 to 2017 GMC Sierra, 2017 Nissan Titan, 2016 Ram 1500, 2016 to 2017 Chevrolet Silverado, 2016 to 2017 Ford F-150, and 2016 to 2017 Toyota Tundra. The Sierra's headlights earned a rating of "acceptable," the headlights found on the Titan and Ram 1500 were found to be "marginal," and the ones on the Silverado, F-150, and Tundra were rated as "poor." IIHS claims the F-150 was the most disappointing out of the large pickup trucks as both its halogen and optional LED headlights failed to provide adequate visibility during testing. The Ridgeline (which earned a "good rating"), is usually considered a midsize or small truck, though IIHS included it in the field of large pickups. The headlights on the 2016 Chevrolet Colorado, 2016 GMC Canyon, 2016 Nissan Frontier, and 2016 to 2017 Toyota Tacoma, which made up the small pickup truck group, all earned a rating of "poor." The IIHS claimed the Colorado had the worst headlights of any truck that was tested, as the base vehicle's units were only able to illuminate up to 123 feet in front of the car. The Ridgeline's headlights, for reference, were able to illuminate up to 358 feet in front of the vehicle. To conduct its test, the IIHS utilizes a special tool to measure how far light is projected out of the headlights in different driving situations. The trucks' headlights were tested in a straight line and in corners, while vehicles with high-beam assist were given extra praise. The headlights on the pickup trucks also mimic the testing that was done on small SUVs and cars earlier this year. Next year, automakers will need to fit their vehicles with headlights that earn a rating of either good or acceptable to earn the IIHS Top Safety Pick+. Related Video:
Translogic 174: Ford envisions the future of parking
Tue, Apr 14 2015Translogic visits Georgia Tech for a glimpse at the future of parking. First, we demo the Ford remote parking program by driving a golf cart around campus from the comfort of an off-site lab; think of remote parking as a virtual valet. Then we see how Ford's "parking spotter" works, a crowd-sourced way of finding an open space. Along the way, Translogic host Jonathon Buckley chats with Ford's global director of vehicle electrification and infrastructure, who explains how these innovative parking concepts could help us get around more efficiently. Have an RSS feed? Click here to add Translogic. Follow Translogic on Twitter and Facebook. Click here to learn more about our host, Jonathon Buckley. VIDEO TRANSCRIPT Jonathon: You turn the wheel and the cart turns the wheel because we've got to remember that the carts 150 meters down that way. I should use yards because I'm not in Australia any more. Welcome to Translogic. I'm Jonathon Buckley. Every year in this country we spend over 70 million hours looking for parking. We think that's a pretty miserable way to spend that time but Ford Motor Company and Georgia Tech have taken this problem head on by developing a parking spotter experiment and some pretty cool remote driving functions to go with it. When it comes to remote vehicle repositioning, you guys have been so far using golf carts?Mike: That's right.Jonathon: What's the goal with this type of technology?Mike: As you probably know, car sharing is becoming one of the emerging trends in mobility. With that, any type of sharing program that we looked at around the world, one of the common challenges it has is that during the end of the day, or the nighttime hours, there's something that has to happen to get all the assets back to where they need to be for the next day. Cell phone technology and broadband technologies have advanced so far that we can remotely control a vehicle from anywhere it the world. For example, we could actually take this and create a virtual valet. You and your significant other pull up to, say, a restaurant. You could potentially get out of the vehicle and then the call center could take your vehicle and park it for you. You wouldn't need to do anything [00:02:00] else other than arrive at the restaurant.Jonathon: The whole thing's pretty intuitive. It works exactly as you imagine a golf cart would work. The only difference that there really is is there's just a little bit of latency that you have to account for.


















