2014 Toyota Camry Se on 2040-cars
3860 Danbrook Rd, Burlington, North Carolina, United States
Engine:2.5L I4 16V MPFI DOHC
Transmission:6-Speed Automatic
VIN (Vehicle Identification Number): 4T1BF1FK7EU348900
Stock Num: 11503
Make: Toyota
Model: Camry SE
Year: 2014
Exterior Color: Magnetic Gray
Interior Color: Black
Options: Drive Type: FWD
Number of Doors: 4 Doors
How about this 2014 Camry SE? This is a sedan you can trust - it has a crash test rating of 5 out of 5 stars! Customize the steering wheel to fit your needs with the telescoping steering wheel. According to a review from CarsDirect, It's smooth, comfortable, and quiet, and otherwise unremarkable. Call and schedule your test drive today! Contact Information: Cox Toyota, 3860 Danbrook Rd., Burlington, NC, 27215, Phone: 877-228-1032, E-mail: coxtoyota@eleadtrack.net.
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Auto Services in North Carolina
Winr Auto Repair ★★★★★
Universal Motors ★★★★★
Universal Automotive 4 x 4 & Drive Shaft Shop, Inc. ★★★★★
Turner Towing & Recovery ★★★★★
Triad Sun Control Inc ★★★★★
Tom`s Automotive ★★★★★
Auto blog
Toyota will introduce several new battery EVs by 2025
Fri, Jun 7 2019Toyota has been a champion of hybrids and hydrogen fuel cell vehicles, but in the near future it will bet heavily on battery EVs as well. The most recent statement from the Japanese manufacturer details there are several new BEVs in the pipeline. Toyota has stated its intent for half of its global 2025 sales to consist of electrified vehicles. Plans include selling 4.5 million hybrids, which perform well in Toyota sales metrics already ͗ Reuters says 80% of global hybrid vehicle sales are Toyotas. But 1 million vehicles will be EVs with either battery or hydrogen fuel cell power. From 2020 on, the carmaker will introduce at least 10 new BEVs, six of which will be based on the electrified version of its TNGA platform, dubbed e-TNGA, and sold globally. There will be a host of electric SUVs and crossovers in different sizes, along with a sedan and an MPV. Toyota says its EV plans must include a stable supply of batteries, as well as improved battery life and durability and proper reuse. It has found partners in China's CATL and electric carmaker BYD to help with battery availability. Earlier this week, Toyota announced that it is planning a jointly developed, all-wheel-drive battery electric crossover together with Subaru, and the resulting vehicle will probably be one of the six new models mentioned above. Subaru is also likely to benefit from the joint development deal, as it is a bit player in large parts of the world, and a partner like Toyota will come in handy when coming up with completely new vehicles.
Submit your questions for Autoblog Podcast #329 LIVE!
Mon, 15 Apr 2013We're set to record Autoblog Podcast #329 tonight, and you can drop us your questions and comments via our Q&A module below. Subscribe to the Autoblog Podcast in iTunes if you haven't already done so, and if you want to take it all in live, tune in to our UStream (audio only) channel at 10:00 PM Eastern tonight.
Discussion Topics for Autoblog Podcast Episode #329
Subcompact sales slump, yet again
The tumultuous history of the diesel engine
Tue, Oct 6 2015Volkswagen, diesel's most enthusiastic patron, deceived everyone about the amount of emissions its cars were putting out. We have covered this latest massive automotive scandal in great detail, and there are surely more fascinating revelations to come. It turns out that this is just the latest episode in the epic story of the controversy and intrigue surrounding the diesel engine, and its inventor. This is the story of the tumultuous birth and interesting evolution of the compression-ignition engine at the center of the VW scandal. Napoleon III Got Rudolf Diesel Deported Rudolf Diesel was born in Paris in 1858. His Bavarian parents had settled in France where his father, Theodor, was a leather goods manufacturer. When the French Parliament declared war on Prussia, kicking off the Franco-Prussian war, the Diesels fled to London. When he was 12, Rudolf went to live with his aunt and uncle in the Bavarian university town of Augsburg. It was his parents' hometown, and importantly, it's where Rudolf began studying at the Royal County Trade School. His time in Augsburg, graduating at the top of his class from trade school that laid the groundwork for all that was to come. Diesel Nearly Blew Himself Up An early career in refrigeration saw Diesel running R&D in Berlin for Linde, a company started by refrigeration pioneer Carl Von Linde, one of Diesel's professors. His ambition to branch out beyond refrigeration, and his deep understanding of thermodynamics, led to efficiency experiments with steam engines. Diesel was trying to create an engine that didn't waste heat from the combustion process, therefore getting the most work out of the fuel. Instead, he was nearly killed when an experimental ammonia vapor steam engine exploded. Recovery took many months, and during some of that time, he was no doubt planning his next experimental engine, based on the theoretical Carnot cycle. His Engine Was An Attempt To Stick It To The Man Steam engines were expensive to run and wasteful. Diesel thought the efficiency of his design would be a way for the small business to compete with the dominant industrial giants. It was, and it did, but big business is equally passionate about chasing efficiency. Diesel engines quickly proliferated in industries both grand and cottage. Rudolf Didn't Really Invent The Diesel As We Know It Instead, he improved an existing one to a significant degree. The Diesel engine could be considered an evolution of the "hot-bulb" engine.































