2014 Toyota Rav4 Limited on 2040-cars
8055 US 31 S., Indianapolis, Indiana, United States
Engine:2.5L I4 16V MPFI DOHC
Transmission:6-Speed Automatic
VIN (Vehicle Identification Number): 2T3DFREV6EW183898
Stock Num: 26653
Make: Toyota
Model: RAV4 Limited
Year: 2014
Exterior Color: Barcelona Red Metallic
Interior Color: Black
Options: Drive Type: AWD
Number of Doors: 4 Doors
Mileage: 5
Gets Great Gas Mileage: 29 MPG Hwy** All Wheel Drive*** Your lucky day! I'm what you call a smooth operator and you'll love every minute with me! I promise to show you off everywhere we go... Oh, and did you notice that it's generously equipped with options: Radio: Premium Display Audio w/Nav/Entune/JBL, Technology Package, Carpet Floor Mats & Carpet Cargo Mat (C8), Mudguards...We are on a mission to making your online or personal visit a great one at Beck Toyota Scion. Please check out this vehicle and send us an email or call us 866-470-2647) with any questions or to make an appointment. ** Going on NOW >> 2 year or 25,000 mile Maintenance and Roadside assistance included at no cost with every New Toyota at Beck Toyota!! Have questions? Call us Now! *Disclaimer:While every reasonable effort is made to ensure the accuracy of this data, we are not responsible for any errors or omissions contained on these pages. Please verify any and all information. *Pricing reflects any applicable Toyota rebates being retained by dealer. Toyota rebates cannot be used in conjunction with any special APR incentives advertised by Toyota. Military or College Graduates offered by Toyota Financial Services, may apply to those who qualify and purchase or lease a qualifying vehicle. We do reserve the right to make changes without notice. Beck Toyota is a Premier Toyota Dealership and we do have a commitment to customer service and Sales Satifaction.
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Auto blog
Toyota drops detail about 414-hp Hybrid-R concept powertrain
Fri, 30 Aug 2013The Toyota Yaris Hybrid-R Concept has been teased already, offering up little glimpses and details of the Frankfurt-bound vehicle. And while those few, shadowy shots have been great, we've really wanted to know how this hatchback would deliver its promised 400-plus horsepower. Under hood sits a 1.6-liter, race-derived, direct-injection, turbocharged four-cylinder that powers the front wheels. Sounds peachy, but with 414 horsepower splashed across the page, we're going to need something more than a 1.6-liter, turbo four.
A supercapacitor, developed from the Toyota TS030 Hybrid Le Mans racer sits in place of a hybrid's traditional battery packs. The benefit, according to Toyota, is that power can be more rapidly absorbed and discharged than in a traditional battery system, like nickel metal-hydride.
The gas engine is joined by a trio of 60-horsepower electric motors. Two of the them power the rear wheels, while the third sits between the engine and the six-speed, sequential gearbox. Developing the same amount of power as the rear-axle motors, this centrally located motor channels power to the race-derived supercapacitor during braking, and ships extra grunt to the rear wheels under acceleration when the front wheels start to lose grip. Besides the distributive power of the central motor, the rear electric motors can adjust the amount of torque flowing to each wheel, much like a differential.
Recharge Wrap-up: Mirai earns Toyota "Most Innovative" honor, Tesla cold-weather range
Tue, Feb 10 2015A Tesla driver has graphed the effect of cold weather on the driving range of his Model S. Rob at Teslarati kept track of the amount of miles driven and energy used and mapped that against temperature readings to find how the colder temperatures affect efficiency. The results were an average of 10 miles of range lost for every 10-degree drop in temperature. Also, he calculated that drivers will lose about 25 percent more range when the roads are slippery. Read more at Teslarati. Albany Engineered Composites (AEC) is teaming with automotive engineering and consulting company Ricardo to provide lightweight components to the automotive industry. AEC produces composites for the aerospace industry, and having proven themselves in that field, they show promise for helping automakers make their cars lighter and more efficient without sacrificing structural integrity. "The agreement announced today is excellent news for our global automotive customers as we work to find further weight reductions in vehicles to meet future CO2 reductions," says Ricardo CEO Mark Garrett. With carbon composite prices expected to drop, Garrett believes this is an "attractive solution" for structural components. Read more at Ricardo's website. Toyota Motor Europe (TME) wants to recover all of its hybrid batteries for remanufacturing. TME currently recovers 91 percent of Toyota and Lexus batteries at the end of the vehicles' lives through dealerships, and is now working with independent end-of-life vehicle treatment operators to recover the rest. Beyond just being recycled, Toyota is looking into remanufacturing batteries for other vehicles or for stationary energy storage systems. Read more in the press release below. Fast Company Magazine has recognized Toyota as one of the 50 Most Innovative Companies for 2015 for its Mirai fuel cell sedan. "Toyota plans to do for fuel cells what its Prius did for hybrids: make them ubiquitous and top of mind for environmentally conscious consumers," says Fast Company. The article also notes that Toyota has also made its fuel cell patent public and invested in hydrogen fueling infrastructure. Toyota is ranked number 18 in the Most Innovative list, just below Tesla. Read more at Fast Company.
Bibendum 2014: Former EU President says Toyota could lose 100,000 euros per hydrogen FCV sedan
Thu, Nov 13 2014Pat Cox does not work for Toyota and we don't think he has any secret inside information. Still, he's the former President of the European Parliament and the current high level coordinator for TransEuropean Network, so when he says Toyota is likely going to lose between 50,000 and 100,000 euros ($66,000 and $133,000) on each of the hydrogen-powered FCV sedans it will sell next year, it's worth noting. That was just one highlight of Cox's presentation at the 2014 Michelin Challenge Bibendum in Chengdu, China today, which addressed the main problem of using more H2 in transportation: cost. The EU has a tremendous incentive to find an alternative to fossil fuels, since Europe today is 94 percent dependent on oil for its transportation sector and 84 percent of that 94 percent dependency is imported oil. The tab for that costs the EU a billion euros a day, Cox said, on top of the environmental costs. To encourage a shift away from petroleum, European Directive 2014/94 requires each member state to develop national policy frameworks for the market development of alternative fuels and their infrastructure. For the member states that choose to fulfill 2014/94 by developing a hydrogen market – and to be clear, Cox said, it's not an EU diktat that they do so, since a number of other alternatives are also allowed – the aim is to have things in place by the end of 2025. The plans don't even have to be submitted until the end of 2016. The long lead time is due to a quirk in a hydrogen economy. In hydrogen infrastructure, "the first-mover cost is not the first-mover advantage, but the firstmover disadvantage." – Pat Cox In deploying a hydrogen infrastructure, Cox said, "the first-mover cost is not the first-mover advantage, but the first-mover disadvantage, and high risk." That's why the EU and member states will financially support the early stages, but everyone agrees that "if this is to work, it will have to be ultimately and essentially a commercially viable and commercially driven infrastructure roll-out." Since 1986, European Union research programs have spent 550 million euros on hydrogen-related and fuel-cell-related research, including methods of hydrogen storage and distribution as well as improved fuel cells vehicles, Cox said. Expensive problems remain to be solved. At a conference in Berlin, Germany this past summer, Cox said, the unit cost of the refueling stations was identified as the main problem.














