Find or Sell Used Cars, Trucks, and SUVs in USA

Citadel New Suv 5.7l Nav Cd Awd 6-speed Automatic Transmission Bright White Abs on 2040-cars

US $42,996.00
Year:2013 Mileage:4 Color: White /
 Black
Location:

Greenville, South Carolina, United States

Greenville, South Carolina, United States
Advertising:
Transmission:Automatic
Body Type:SUV
Vehicle Title:Clear
Fuel Type:Gasoline
For Sale By:Dealer
VIN: 1C4SDJET9DC668681 Year: 2013
Make: Dodge
Model: Durango
Warranty: Vehicle has an existing warranty
Mileage: 4
Sub Model: Citadel
Options: Leather Seats
Exterior Color: White
Power Options: Power Windows
Interior Color: Black
Number of Cylinders: 8
Condition: New: A vehicle is considered new if it is purchased directly from a new car franchise dealer and has not yet been registered and issued a title. New vehicles are covered by a manufacturer's new car warranty and are sold with a window sticker (also known as a “Monroney Sticker”) and a Manufacturer's Statement of Origin. These vehicles have been driven only for demonstration purposes and should be in excellent running condition with a pristine interior and exterior. See the seller's listing for full details.  ... 

Auto Services in South Carolina

X-Treme Audio Inc ★★★★★

Automobile Parts & Supplies, Stereo, Audio & Video Equipment-Dealers, Automobile Radios & Stereo Systems
Address: 848 Aiken Mall Dr, Montmorenci
Phone: (803) 644-8777

Window Tinting by David Fields Tires And Brakes ★★★★★

Auto Repair & Service, Tire Dealers, Brake Repair
Address: 1628 Gordon Highway, North-Augusta
Phone: (706) 733-3434

Whetzels Automotive, Inc ★★★★★

Auto Repair & Service, Auto Oil & Lube, Truck Service & Repair
Address: 2017 Augusta Rd, Cayce
Phone: (803) 739-2999

Volkswagen Of South Charlotte ★★★★★

Auto Repair & Service, New Car Dealers, Used Car Dealers
Address: 9900 South Blvd, Tega-Cay
Phone: (704) 552-6500

T & W Motors ★★★★★

Used Car Dealers, Automobile Leasing
Address: 664-B York Street, Warrenville
Phone: (803) 642-6567

T & W Motors ★★★★★

Used Car Dealers, Automobile Leasing
Address: 664-B York Street, Windsor
Phone: (803) 642-6530

Auto blog

FCA, Ford idle plants due to semiconductor shortage

Fri, Jan 8 2021

DETROIT (Reuters) - Ford and FCA will become the latest automakers to idle production facilities due to a semiconductor shortage. Ford's Louisville Assembly Plant in Kentucky will idle for a week, borrowing a down period from later in the year to compensate. Per Automotive News, FCA is idling its Brampton facility in Ontario, Canada, and one other site which has not yet been identified.  Louisville Assembly is the production site for the Ford Escape and Lincoln Corsair SUVs; Brampton Assembly produces the Chrysler 300, Dodge Charger and Dodge Challenger for FCA.  A Ford spokeswoman, who declined to identify the semiconductor supplier, confirmed the temporary shutdown to Reuters. In this, FCA and Ford join Nissan and potentially Honda in idling production in the wake of the shortage, which also hit Volkswagen late last year. The shortages are being blamed on consumer demand for silicon after production slowdowns resulting from the coronavirus pandemic. Volkswagen said it had to adjust production schedules in China, Europe and North America to compensate.  Nissan said it planned to reduce production of the Note, a hybrid electric car, at its Oppama Plant in Kanagawa prefecture, Japan, but did not give details of the scale of the output cut. The Nikkei newspaper reported that Nissan would slash its Note production at Oppama to about 5,000 units in January, from an initially planned 15,000 units. "A global shortage of semiconductors has affected parts procurement in the auto sector. As a result of this shortage, the Oppama Plant in Japan will adjust production in January, reducing production of the Nissan NOTE," Nissan said in a statement. (This article contains reporting from Reuters.)     Auto News Plants/Manufacturing UAW/Unions Chrysler Dodge Ford

Cars.com runs 11-second quarter with Dodge Charger Hellcat

Mon, Jun 1 2015

The Dodge Charger SRT Hellcat and its Challenger sibling are two of the heroes of the modern performance world. With a headline-grabbing 707 horsepower from a supercharged 6.2-liter V8, their output even shames many supercars. But how quick can one really cover a quarter mile? Cars.com recently decided to find out by taking a Charger Hellcat to the drag strip to see if the sedan lived up to Dodge's 11-second claims. The results were quite impressive. After 13 quarter-mile runs of adjusting variables like the tire pressures and the car's various electronic aids, the Charger Hellcat managed a pass in 11.03 seconds at 126.61 mph – the pinnacle result of the day. This car was mechanically stock and wore the optional Pirelli P Zero tires. According to Cars.com, other quick sprints reached 11.09 seconds and 11.1 seconds, which even beat the site's 11.41-second best from a Challenger Hellcat last year. Getting the Hellcat's prodigious power down without losing traction was a challenge, even on the summer tires. Cars.com thought it had a run that could have dropped below 11 seconds, but then the wheels spun. Using the factory-recommended pressures, the Charger Hellcat was no still slouch with an 11.27-second time recorded, but taking things down to 25 psi proved the quickest at the strip. We already knew that the Charger Hellcat was a wonderful vehicle for eating up huge gulps of asphalt at high speeds and could verify its 204-mile-per-hour top speed (quite a bit faster, incidentally, than the Ferrari California T's 196 mph top-speed). Apparently, the 11-second quarter-mile claim is just as accurate. Also, for any curious owners, the Cars.com story divulges many of the tweaks required to reach this seriously quick time. Related Video:

Could self-driving cars stop terrorist attacks?

Mon, Nov 13 2017

Terrorists have taken to using a weapon that's easy to obtain and can do a lot of damage: ordinary vehicles, driven into crowds. A Department of Homeland Security-FBI bulletin from 2012 warned that "vehicle-ramming offers terrorists with limited access to explosives or weapons an opportunity to conduct a homeland attack with minimal prior training or experience." CNN recently listed nine vehicle-based terrorist attacks that have occurred within the past year, and in just in the past three months incidents in New York, Edmonton and Barcelona have claimed more than 20 lives and injured dozens after ISIS-affiliated drivers plowed into pedestrians. The deadliest so far was a Bastille Day attack in Nice, France that killed 86 people after a terrorist drove a truck into a crowd following a fireworks display. CNN also reported that "Al Qaeda's Yemeni branch encouraged its recruits in the West to use trucks as weapons," and noted that a 2010 article in the terrorist group's webzine called for deploying a truck as a "mowing machine, not to mow grass but mow down the enemies of Allah." Such attacks have been more common in Europe and other places where guns are harder to get, making vehicles violent and readily available weapons. But it's not only ISIS and Al Qaeda terrorists that have turned cars into weapons. A man with white nationalist ties drove a Dodge Challenger into a crowd of counter-protesters at the Unite the Right rally in Charlottesville, Va., in August, killing a 32-year-old woman and injuring dozens more. Some believe that autonomous vehicle technology could help stop these tragedies. "Terrorist attacks like the one in New York are a good example of why we need AVs more quickly," Caleb Watney, technology policy associate at the R Street Institute, a D.C.-based think tank, recently told the website Inverse. Dr. Junfeng Jiao, director of the Urban Information Lab at the University of Texas, told Inverse that "these tragedies may be taken into account by the makers such as Tesla and Google" when developing autonomous technology. "This is a huge opportunity for the next generation to de-weaponize cars," he added. Many vehicles already have forward collision warning with emergency autonomous braking, and a few combine it with pedestrian detection, although the latter technology typically works at speeds below 20 mph.