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

2.5 Sl 4dr S 2-stage Unlocking - Remote Abs - 4-wheel Active Head Restraint on 2040-cars

US $17,950.00
Year:2012 Mileage:32301 Color: Gray
Location:

Mount Juliet, Tennessee, United States

Mount Juliet, Tennessee, United States

Auto Services in Tennessee

Sunset Towing ★★★★★

Auto Repair & Service, Towing, Locks & Locksmiths
Address: 1040 Buffalo Trl, Morristown
Phone: (423) 587-5665

Solar Pros Window Tinting ★★★★★

Auto Repair & Service, Glass Coating & Tinting
Address: 2721 N Wright Rd, Alcoa
Phone: (865) 379-0510

Rod`s Tire Company ★★★★★

Automobile Parts & Supplies, Tire Dealers, Auto Oil & Lube
Address: 608 Highway 76, White-House
Phone: (615) 581-0430

Rocky Top Chrysler Jeep Dodge Ram ★★★★★

New Car Dealers
Address: 3269 Winfield Dunn Pkwy, Sevierville
Phone: (865) 932-4144

RCS Automotive ★★★★★

Auto Repair & Service
Address: 1610 Verona Caney Rd, Belfast
Phone: (931) 422-5075

Raleigh Tire Service Inc ★★★★★

Auto Repair & Service, Wheel Alignment-Frame & Axle Servicing-Automotive, Brake Repair
Address: 653 W Poplar Ave, Collierville
Phone: (901) 457-5326

Auto blog

Syrena Sport returns as rebodied Nissan 370Z

Tue, 23 Apr 2013

We wouldn't hold it against you if you'd never heard of the FSO Syrena Sport. FSO built the long-enduring Syrena for some 17 years nonstop, and while the machines were mostly plodding family sedans, engineers at FSO did create one version with a bit more zest. The Syrena Sport was a two-door coupe that borrowed design cues from Ferrari and was powered by a two-cylinder, air-cooled boxer engine. While originally intended for production, economic woes kept the machine from ever seeing the light of day.
Now, the Syrena Sport is back, though in a slightly different configuration. Entrepreneur Rafal Czubaj has resurrected the name for a special one-off creation designed by Pavlo Burkatskyy. This time around, there is no oddball boxer under the hood, however. Czubaj chose to use the underpinnings from the Nissan 370Z, complete with its 3.7-liter V6 engine. Buyers can choose between a 330-horsepower tune or a 450-hp iteration, and with a curb weight of 2,865 pounds, the car should be plenty quick. Expect acceleration to 60 miles per hour in around 4.5 seconds and a top speed of 180 mph.

Infiniti puts EV plans on hold again

Thu, Jan 22 2015

Think of it as the green-automotive industry's version of Groundhog Day. Nissan's Infiniti division is putting plans for its first mass-production electric vehicle on hold. Again. The Infiniti LE, whose concept version was unveiled 2012's New York Auto Show, is again being put up on the proverbial blocks, USA Today says, citing a presentation by Infiniti executive Michael Bartsch at a recent company event in Detroit. Essentially, the Nissan division has bigger fish to fry, in the form of boosting overall Infiniti sales, and doesn't yet want to put the effort into introducing the Infiniti LE. The Infiniti EV plans were first postponed by then-Infiniti President Johan de Nysschen during the summer of 2013, as de Nysschen wasn't quite buying into Nissan boss Carlos Ghosn's ambitious electric vehicle sales projections. De Nysschen resigned last summer to join General Motors' Cadillac division. One issue may be the fact that the Infiniti wouldn't be all that different from the Nissan Leaf. Despite the fact that US sales of that EV surged 34 percent last year compared to 2013, to 30,200 vehicles, an Infiniti version was apparently not enough of a selling point within the company. While the Infiniti is sportier looking than the Leaf and would boast inductive, wireless charging, it would have a similar power output and single-charge range as the Leaf.

Mitsubishi cheated on Japanese fuel economy test since 1991

Tue, Apr 26 2016

Mitsubishi now says that its cheating on Japanese fuel economy tests stretches as far back as 1991. The automaker has hired an independent panel of investigators to get to the bottom of what happened, and the company will give them three months to prepare a report about the deception. Mitsubishi's cheat involves how the company calculated driving resistance to determine fuel economy. In 1991, Japan's Road Transport Vehicle Act established a coasting test to establish the driving resistance, but Mitsubishi's engineers used their own "high-speed coasting test," according to its statement. In 2007, the company decided to only use the country's mandated evaluation, but the employees kept utilizing the high-speed test in the field. In the most recent scandal, workers selected low values for driving resistance from the results, which made the fuel economy look better. Mitsubishi's presented these details in a report to the Ministry of Land, Infrastructure, Transport, and Tourism. "We are currently investigating the reasoning behind each of the decisions," the company said in a statement. It also hired three former prosecutors to figure out why this happened for so long. At this time, Mitsubishi only confirms the incorrect figures for some of the company's minicars, but this investigation could discover more transgressions. This fiasco started when Nissan discovered fuel economy discrepancies in some of its Mitsubishi-made tiny kei-class cars in Japan. Mitsubishi came clean and admitted the problem affected about 625,000 vehicles in the country. Japanese media have alleged more vehicles have incorrect mileage, including the Outlander. The National Highway Traffic Safety Administration in the US has also requested data from the Japanese automaker to confirm similar deceptions didn't happen for vehicles here. Related Video: Regarding the Report to MLIT Concerning Improper Conduct in Fuel Consumption Testing of Vehicles Manufactured by Mitsubishi Motors Corporation Tokyo, April 26, 2016 The following is a summary of the report submitted by Mitsubishi Motors Corporation (MMC) to the Ministry of Land, Infrastructure, Transport and Tourism (MLIT) today, pursuant to instructions received from MLIT on April 20 to investigate improper conduct in fuel consumption testing of vehicles manufactured by MMC. Report Summary 1.