2002 Toyota Celica Gt Hatchback 2-door 1.8l on 2040-cars
Virginia Beach, Virginia, United States
Engine:1.8L 1794CC l4 GAS DOHC Naturally Aspirated
Vehicle Title:Clear
Body Type:Hatchback
Fuel Type:GAS
For Sale By:Private Seller
Sub Model: gt
Make: Toyota
Exterior Color: red black
Model: Celica
Interior Color: grey
Trim: GT Hatchback 2-Door
Warranty: n/a
Drive Type: FWD
Number of Cylinders: 4
Options: Sunroof, CD Player, dvd/camera/tv/bluetooth
Safety Features: Anti-Lock Brakes, Driver Airbag, Passenger Airbag
Power Options: Air Conditioning, Cruise Control, Power Locks, Power Windows, Power Seats, shaved door kit
Number of Doors: 2
Disability Equipped: No
Mileage: 141,000
02 Toyota celica It has a shaved door kit. All electric. Everything is working. About 141000 Miles. Recently painted. Very reliable
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Auto Services in Virginia
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Auto blog
Toyota spending $168 million to make more Mirai fuel cell vehicles
Tue, Dec 9 2014The last semi-official number we had for pre-orders for the 2016 Toyota Mirai fuel cell vehicle was around 200. But demand is strong enough that Toyota is saying that it will spend 20 billion yen ($168 million US) to expand annual production capacity at the "secretive workshop" where the Mirai will be built from 700 in the first year (2015) to around 2,000 after that. Japanese newspaper Nikkei reported the increase and also breaks down where Toyota expects to sell the small number of Mirai vehicles it will make in the first few years: 400 in Japan by the end of 2015, 200 or 300 In the US in 2015 (and then 3,000 by the end of 2017) and between 50 and 100 in Europe annually starting around 2016. To make all of these hydrogen cars, Toyota will add two lines to the factory where the fuel cell stacks and tanks are built and it will also upgrade the assembly location. In the US, the Mirai will initially only be sold in California next year and will start at $57,500 or lease for $499 a month for 36 months (with $3,649 due at signing). The Japanese automaker is including hydrogen fuel for "up to three years" at that price, mostly because no one knows how to accurately measure and sell H2 for cars quite yet.
Autocar pits McLaren MP4-12C against turbo Toyota GT86
Thu, 29 Aug 2013The Toyota GT86, in all of its forms, is one of the best-handling cars money can buy, a trait that can put a smile on the faces of all but the most jaded car enthusiasts. But if good handling isn't what they're looking for, then what is? Our first guess would have to be more power, something the 200-horsepower Toyota would benefit from. Autocar tries out that theory by driving two turbocharged GT86s on track, then pitting the more powerful one against the 616-hp McLaren MP4-12C in a track battle.
The first GT86 turbo Autocar's Steve Sutcliffe drives makes around 255 rear-wheel horsepower and a bucket-load more torque than the stock car. That's plenty of power to either have a lot of fun or get into a lot of trouble. But the GT86 that Sutcliffe tails in the McLaren is race-prepped, stripped to the bone and wears slicks to harness a heavy-hitting 335 hp at the wheel. Weighing in at under 2,500 pounds, the Toyota can't overcome the MP4-12C's power-to-weight ratio of 5.3 pounds per horsepower, but it comes pretty close.
Enjoy a lot of chasing and drifting fun in the video below!
This map reveals the cleanest vehicles based on location
Thu, Apr 28 2016Naysayers love to point out how dirty the electricity grid mix is when it comes to charging electric vehicles. Curmudgeons are eager to jump into any conversation about EVs to enlighten the lucky listeners about how plug-in cars contribute to pollution, sometimes even throwing in a dash of climate-change denial for good measure. (Thanks, buddy. Pray, tell me more about the plight of oppressed SUV owners.) Unless someone buys an EV just because they think they're cool (which, yeah, they often are), they probably have at least a passable understanding of their environmental pros and cons. As many EV owners are already aware, location has a lot to do with any particular plug-in car's carbon footprint. Still, there's always more to know, and knowledge is not a bad thing, especially if one uses it to do the right thing. That's why this handy-dandy map from Carnegie Mellon University is so interesting. CMU researchers have compiled information about the lifecycle greenhouse gas emissions of various EVs based on where they're charged, as compared to gasoline-powered vehicles. The researchers looked at the Nissan Leaf, Chevrolet Volt, and Prius Plug-In Hybrid versus the gasoline-dependent Toyota Prius hybrid and the stop-start-equipped Mazda3 with i-ELOOP and compared grams of CO2 emitted per mile. CMU takes into account the grid mix, ambient temperature, and driving patterns. CMU takes into account the grid mix based on county, as well as ambient temperature and driving patterns in terms of miles traveled on the highway or in the city. For instance, if you drive a Nissan Leaf in urban areas of California, Texas, or Florida, your carbon footprint is lower than it would be if you were driving a standard Toyota Prius. However, if you charge your Leaf in the Midwest or the South, for the most part, you've got a larger carbon footprint than the Prius. If you live in the rural Midwest, you'd probably even be better off driving a Mazda3. Throughout the country, the Chevrolet Volt has a larger carbon footprint than the Toyota Prius, but a smaller one than the Mazda3 in a lot of urban counties in the US. The Prius and Prius Plug-In are relatively equal across the US. Having trouble keeping it straight? That's not surprising. The comparisons between plug-in and gasoline vehicles are much more nuanced than the loudest voices usually let on.





