2011 Hyundai Gls Pzev on 2040-cars
Centereach, New York, United States
Vehicle Title:Clear
Fuel Type:Gas
Engine:4
For Sale By:Dealer
Transmission:Automatic
Certified pre-owned
Year: 2011
Make: Hyundai
Model: Tucson
Mileage: 76,339
Disability Equipped: No
Sub Model: GLS PZEV
Doors: 4
Exterior Color: Black
Drivetrain: Front Wheel Drive
Hyundai Tucson for Sale
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- Gls, white,(US $14,988.00)
- Fwd 4dr automatic gls low miles suv automatic gasoline 2.4l 4 cyl diamond silver
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Auto blog
Hyundai's Genesis G90 stretches out back home in Korea
Wed, Mar 16 2016Hyundai is getting serious about competing in the luxury market with the launch of its expanded Genesis line. And in the Far East it calls home, that means stretched limousines. Enter the new EQ900L. The Korean automaker's new luxury flagship stretches the wheelbase of the vehicle we now know as the Genesis G90 – or as the Equus in its previous iteration – by an extra 11.4 inches to give the top executives at Samsung and LG extra room to stretch out while in transit from the office to the Psy concert. The elongated cabin space also allows for first-class reclining rear seats, adjustable in 18 directions and upholstered in semi-aniline leather. A long center console runs the entire length of the cabin loaded with everything from ambient lighting to a Lexicon sound system. The same 5.0-liter Tau V8 still provides motivation, channeling 425 horsepower through an eight-speed automatic transmission to all four of the 19-inch wheels. That may not be enough to keep pace with the V12-powered Mercedes-Maybach S600 we get here, but it comes close to the S500 version sold overseas. Unfortunately for those of us living outside of Korea, the EQ900L is only being offered in its domestic market for the time being, where titans of industry can pick one up for 100 million won – equivalent to $84,000 at current exchange rates. Related Video:
Ford Mustang Mach-E fails Sweden's moose test
Wed, Sep 29 2021The infamous moose test has claimed another casualty. This time it's the Ford Mustang Mach-E AWD Long Range, which was tested in an electric four-way alongside the Tesla Model Y, Hyundai Ioniq 5 and Skoda Enyaq iV (an electric utility vehicle closely related to the Volkswagen ID.4 that is sold in the United States). According to the Swedish testers at Teknikens Varld, Ford's electric car not only failed to hit the speed necessary for a passing grade, it didn't perform well at slower speeds, either. To pass the outlet's moose test, a car has to complete a rapid left-right-straight S-shaped pattern marked by cones at a speed of at least 72 km/h (44.7 miles per hour). The test is designed to mimic the type of avoidance maneuver a driver would have to take in order to avoid hitting something that wandered into the road, which in Sweden may be a moose but could just as easily be a deer or some other member of the animal kingdom elsewhere in the world, or possibly a child or car backing into the motorway. Not only is the maneuver very aggressive, it's also performed with weights belted into each seat and more weight added to the cargo area to hit the vehicle's maximum allowable carrying capacity. The Mustang Mach-E only managed to complete the moose test at 68 km/h (42.3 mph), well below the passing-grade threshold. Even at much lower speeds, Teknikens Varld says the Mach-E (which boasts the highest carrying capacity and was therefore loaded with more weight than the rest of the vehicles tested in this quartet) is "too soft in the chassis" and suffers from "too slow steering." Proving that it is indeed possible to pass the test, the Hyundai and Skoda completed the maneuver at the 44.7-mph figure required for a passing grade and the Tesla did it at 46.6 mph, albeit with less weight in the cargo area. It's not clear whether other versions of the Mustang Mach-E would pass the test. It's also unknown if Ford will make any changes to its chassis tuning or electronic stability control software, as some other automakers have done after a poor performance from Teknikens Varld, to improve its performance in the moose test. Related video:
Recharge Wrap-up: Chevy Volt's new, improved powertrain; Inabikari wants to build Tesla Model X fighter
Thu, Nov 6 2014We knew the 2016 Chevrolet Volt's new powertrain would provide more range, but we didn't know how much. According to GM's Executive Director Larry Nitz, it is about 12 percent more, overall. "I can't think of a powertrain we've re-engineered more extensively within a five-year period than this one," he said. The battery, electric drive system and gasoline generator have all been reworked to allow for an overall driving range of up to 425 miles, with electric range speculated to reach 42 miles or more. The new Volt will also benefit from 20 percent quicker low-end acceleration, weight reductions and improvements in NVH. Read more at Hybrid Cars and at the SAE website. Hyundai's FCEV research and development boss, Dr. Sae-Hoon Kim, is optimistic about the future of hydrogen mobility in Japan. With the Tucson Fuel Cell already in production ahead of Toyota's FCV, Hyundai has a foothold in the hydrogen car scene. Kim believes that since the Fukushima disaster, Japan's attitudes toward energy make it friendly to a growing hydrogen economy. He also says that hydrogen won't be limited to Hyundai, with Kia getting all the battery EVs. "Both types are for both companies," Kim says. "For the moment, volumes are small and it is not wise to have Hyundai and Kia competing." Read more at Just Auto. The Latvian/German startup Inabikari is using crowdfunding to build an electric crossover for Europe. The Rev.01 EV hopes to compete with Tesla's upcoming Model X with a range of over 400 miles and a five-second 0-60 time. The group currently is trying to raise initial funds through an Indiegogo campaign, with hopes of more investment in the future and sales beginning in 2017. See the video below, and read more at Hybrid Cars and at the Inabikari website. Fuel economy and emissions regulations could lead to some interesting design changes to automobiles. The World Light Duty Test Procedure, set to replace the New European Driving Cycle in 2017, will push automakers to find new ways to reduce drag on their vehicles. For better aerodynamics, we could see traditional side-view mirrors replaced by cameras that display what they see on screens inside the vehicle. Another likely change will be the introduction of smaller, narrower wheels. Improving the average drag coefficient from 0.32 to 0.20 could reduce CO2 emissions by as much as 20 percent. Read more at Automotive News Europe.
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