1998 Jaguar Xj8l Car (without Motor/ Has Transmission) on 2040-cars
Baton Rouge, Louisiana, United States
Body Type:Sedan
Vehicle Title:Clear
Engine:NO MOTOR
Fuel Type:GAS
For Sale By:Private Seller
Number of Cylinders: 8
Make: Jaguar
Model: XJ8
Trim: L Sedan 4-Door
Options: Sunroof, Leather Seats
Drive Type: RWD
Mileage: 200,000
Sub Model: XJLS
Disability Equipped: No
Exterior Color: Black
Warranty: Unspecified
Interior Color: Tan
Number of Doors: 4 Generic Unit (Plural)
WE ARE SELL A BLACK 1998 JAGUAR XJ8 CAR WITH OUT THE MOTOR BUT HAS THE TRANSMISSON THE BODY IS IN GREAT SHAPE AND HAS VERY FEW SCRACHES THE INTERIOR OF THE CARE IS GREAT SHAPE. WE ARE CURRENT TRY TO GET BACK THE ORIGNAL MOTOR BUT AS NOW WE ARE JUST SELLING THE CAR HOW IT LISTED.
QUESTION PLEASE GIVE ME A CALL AT 225 436-2050 LEROY
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Auto blog
Jaguar wants to make real-life driving just like a video game
Thu, 10 Jul 2014Jaguar Land Rover is on a bit of a tech bent today. It's announced its new family of four-cylinder engines and a "self-learning" vehicle Range Rover prototype, and now it's announced what it calls the Jaguar Virtual Windscreen.
The technology is similar to other head-up displays and telematics recorders already on the market, the Jaguar Virtual Windscreen concept takes things to the next level to turn real-life driving into a video game-like experience. It's being demonstrated with data like lap times, grid positions, virtual racing line and brake guidance... even "ghost" cars from previous laps and virtual cones for simulated autocrossing. Just like you'd find in the latest version of Forza or Gran Turismo, but you know... in an actual car - in this case a Jaguar F-Type. It's similar to the Transparent Bonnet system Land Rover revealed a couple of months ago, but instead of rock-crawling, it's for the race track.
The system also incorporates gesture controls and could be configured to display instrument data, a video feed from a rear-view camera to replace the mirror. Check out the details and the video below for a closer look at what JLR has got in store for the near future.
Jaguar may join the FWD, small-car parade
Tue, 13 Aug 2013Was it right for Chevrolet to detune the 1975 Corvette's base engine to 165 horsepower? Was Aston Martin wrong to make the Toyota iQ-based Cygnet? Is BMW crazy to be testing the new 1 Series with three-cylinder engines and front-wheel drive? It seems now, just as in the 1970s and 1980s, that emissions regulations and social considerations are driving some automakers to adopt unbefitting practices to maintain acceptance in the eyes of governments and consumers. Jaguar has jumped on the bandwagon, and is considering development of small, frugal, front-wheel-drive cars to help lower Jaguar Land Rover's average vehicle CO2 levels in light of tightening European emissions regulations, Autocar reports.
By 2020, the European Union expects the model range of every manufacturer to average 95 grams per kilometer, which is a new law passed by the European Parliament in April. Manufacturers who make more than 300,000 vehicles per year must meet these targets, and JLR is expected to be producing up to 700,000 vehicles per year by then. CO2 regulations after 2020 will only get stricter, as EU politicians already are talking about lowering CO2 levels to between 68 g/km and 78 g/km. (To put that in perspective, Autocar posits that driving a fully charged electric vehicle in Europe produces about 75 g/km when factoring in the power-generation infrastructure.)
Jaguar has some choices here, but so far they all have drawbacks. It could develop a new, compact chassis architecture for a line of compact vehicles, but the investment required for such a project could be prohibitively expensive. Jaguar has been looking into using the Land Rover Evoque platform for a small SUV, Autocar reports, but Land Rover brand manager John Edwards raises issue with such a plan, saying it may not be financially feasible.
Bloodhound SSC makes its speed-ready debut in London
Fri, Sep 25 2015Bloodhound SSC, the 1,000-mph land speed record contender, broke cover this week in Canary Wharf, London, in the heart of the Docklands financial district. "This is the best of British engineering meets the best of British banking," quipped Philip Dunne, MP, minister of state for defense procurement, which has provided backing for the team in terms of Army and Royal Air Force personnel and equipment. The team announced that Bloodhound will do its first test runs in Newquay, Cornwall, next spring before traveling to Hakskeen Pan in northwest South Africa in the fall. There, on October 15, 2016, it will make its first attempt on the land speed record, which currently stands at 763.035 miles per hour. That speed was set by Thrust SSC in the Black Rock desert on October 15, 1997 by Bloodhound's driver, Andy Green. Nineteen years later to the day, Green will be shooting for a speed over 800 mph. Over 8,000 people will come to Canary Wharf to see this extraordinary jet- and rocket-powered car over the next couple of days. This is the first-ever viewing of the machine in assembled form. The right-hand side is fully dressed in desert spec, complete with forged aluminum wheels and aerodynamics. The left-hand side is in 'naked' Newquay test spec, with panels removed for easy access and the whole thing riding on rubber tires that can run on tarmac. First impressions are of a big yet muscular car simply crammed with engines, jets, and rockets. The most recognizable thing, apart from the seven fire extinguishers, is the Jaguar AJ133 5.0-liter V8, lifted from an F-Type, which will run the fuel pumps that deliver over 211 gallons of high-test peroxide over the rocket motor's 20-second burn time. The EJ200 Typhoon military jet engine occupies the top floor and provides nine tons of thrust, and underneath is the single Nammo rocket motor providing an additional four tons. "When we go for 1,000 mph, we'll need another two rocket motors," says Mark Chapman, Bloodhound's chief engineer. "That total additional eight tons of thrust is what we'll need to get from 800 to 1,000 mph." He explains that the rear of the car will have to be redesigned to accommodate the two additional rocket motors, and the suspension might have to be adapted with longitudinal rear spring units like the fronts. There are still unknowns in the project, such as the area of vacuum that will follow the car several meters behind.