Find or Sell Used Cars, Trucks, and SUVs in USA

2014 Nissan Altima 2.5 Sl on 2040-cars

Year:2014 Mileage:0 Color: Pearl White /
 Camel
Location:

2600 S Woodland Blvd, Deland, Florida, United States

2600 S Woodland Blvd, Deland, Florida, United States
Advertising:
Fuel Type:Gasoline
Engine:2.5L I4 16V MPFI DOHC
Transmission:Automatic CVT
Condition: New
VIN (Vehicle Identification Number): 1N4AL3AP1EC326670
Stock Num: C326670
Make: Nissan
Model: Altima 2.5 SL
Year: 2014
Exterior Color: Pearl White
Interior Color: Camel
Options:
  • 1st and 2nd row curtain head airbags
  • 4-wheel ABS Brakes
  • ABS and Driveline Traction Control
  • Anti-theft alarm system
  • Audio controls on steering wheel
  • Black grille w/chrome surround
  • Bluetooth wireless phone connectivity
  • Braking Assist
  • Bucket front seats
  • Cargo area light
  • Center Console: Full with covered storage
  • Clock: In-radio display
  • Coil front spring
  • Coil rear spring
  • Digital Audio Input
  • External temperature display
  • Fold forward seatback rear seats
  • Four-wheel Independent Suspension
  • Front and rear reading lights
  • Front and rear suspension stabilizer bars
  • Front Head Room: 40.0"
  • Front Hip Room
  • Front Leg Room: 45.0"
  • Front Shoulder Room: 56.4"
  • Front Ventilated disc brakes
  • Fuel Capacity: 18.0 gal.
  • Fuel Consumption: City: 27 mpg
  • Fuel Consumption: Highway: 38 mpg
  • Fuel Type: Regular unleaded
  • Gross vehicle weight: 4,211 lbs.
  • Headlights off auto delay
  • In-Dash single CD player
  • Independent front suspension classification
  • Independent rear suspension
  • Instrumentation: Low fuel level
  • Manufacturer's 0-60mph acceleration time (seconds): 7.9 s
  • Max cargo capacity: 15 cu.ft.
  • MP3 player
  • Multi-link rear suspension
  • Overall height: 57.9"
  • Overall Length: 191.5"
  • Overall Width: 72.0"
  • Overhead console: Mini with storage
  • Passenger Airbag
  • Power remote driver mirror adjustment
  • Power remote passenger mirror adjustment
  • Power remote trunk release
  • Power windows
  • Privacy glass: Light
  • Radio Data System
  • Rear bench
  • Rear Head Room: 37.1"
  • Rear Leg Room: 36.1"
  • Rear seats center armrest
  • Rear Shoulder Room: 56.4"
  • Rear Stabilizer Bar: Regular
  • Regular front stabilizer bar
  • Remote power door locks
  • Side airbag
  • Spare Tire Mount Location: Inside under cargo
  • Speed-proportional electric power steering
  • Stability control
  • Steel spare wheel rim
  • Strut front suspension
  • Suspension class: Regular
  • Tachometer
  • Tilt and telescopic steering wheel
  • Trip computer
  • Variable intermittent front wipers
  • Vehicle Emissions: LEV II
  • Video Monitor Location: Front
  • Wheelbase: 109.3"
Drive Type: FWD
Number of Doors: 4 Doors

Deland Nissan is Central Florida's #1 E-Dealer Nissan franchise in the South East. We have Internet Professionals ready to assist you anytime. Visit our website for actual photos of our New inventory that gets updated Daily. If you can see the photo , it is available. Call today and experience the DeLand Nissan difference.

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Auto blog

Here are your 2016 North American Car and Truck/Utility of the Year finalists [w/polls]

Tue, Dec 8 2015

The 2016 Detroit Auto Show will kick off with the announcement of the annual North American Car and Truck/Utility of the Year awards, and the three finalists in each category have just been revealed. Following this announcement, the jury – which includes Autoblog editor-in-chief Mike Austin – will re-evaluate each candidate before casting a final vote for the winner. This year's finalists are: Car of the Year Chevrolet Malibu Honda Civic Mazda MX-5 Miata Truck/Utility of the Year Honda Pilot Nissan Titan XD Volvo XC90 The 23rd annual awards will be announced on the morning of Monday, January 11. For now, we want to know where you stand. Let us know which vehicles you think should win, by voting in the polls below. Chevrolet Honda Mazda Nissan Volvo north american car of the year NACTOY

Infiniti's new VC-T changes the rules of small turbocharged engines

Sun, Aug 14 2016

The upcoming Infiniti QX50 crossover does not get our pulse racing, no matter how shapely the QX Sport Inspiration concept that previews it may be. No midsize SUV does, to be fair. But it has something special under the hood – the world's first production variable-compression-ratio engine. That means the QX50's 2.0-liter turbo four, which makes 268 horsepower and 288 pound-feet of torque, will have up to 27 percent better fuel economy. Here's how it works. The trend of moving to smaller, turbocharged engines carries with it one big falsehood. Under low load when the turbo isn't needed, these engines are less efficient than an equivalent engine without a turbo because of the low compression ratio the turbo requires. That is, if you never need the extra power, you're wasting fuel. Turbocharged (and supercharged) engines use a lower compression ratio to prevent detonation. When you force extra air in a cylinder and mix it with fuel, it's more likely to prematurely go boom. Lowering the compression ratio prevents this problem, but it's less efficient. Infiniti's VC-T promises the best of both worlds, with a compression ratio that ranges from 8.0:1 for high-power turbo needs to a 14.0:1 ratio for fuel-sipping efficiency. At its heart the VC-T engine is a simple idea, but it's complicated to explain. Consider yourself warned. The photo below from Infiniti serves as a good visual overview. For the truly nerdy, this patent application covers the mechanical concept. Instead of having the pistons connected to the crankshaft, Infiniti's engine has a pivot arm with a connection on each end. One end connects to the piston, the other connects to a second lower shaft, which is controlled by an actuator arm. At any given time the engine's pistons move up and down according to the lobes on the crankshaft. But the actuator arm can change the angle of the pivot arm up and down. That is, the pistons still move in the same motion with the same stroke, but phase the entire stroke up or down. Move the pivot up and there's less room at the top, which means a higher compression ratio. Move the pivot down and the compression ratio goes down, too. As an added bonus, the lower shaft eliminates the need for counter-rotating balance shafts. Infiniti says this system works constantly and can vary the compression ratio to any number between 8:1 and 14:1. It also uses electronic variable valve timing on the intake valves to switch into Atkinson-cycle combustion for greater efficiency.

DC fast charging not as damaging to EV batteries as expected

Mon, Mar 17 2014

As convenient as DC fast charging is, there have been lots of warnings that repeated dumping of so many electrons into an electric vehicle's battery pack in such a short time would reduce the battery's life. While everyone agrees that DC fast charging does have some effect on battery life, it may not be as bad as previously expected. Over on SimanaitisSays, Dennis Simanaitis, writes about a recent presentation by Matt Shirk of the Idaho National Laboratory (INL) called DC Fast, Wireless, And Conductive Charging Evaluation Projects (PDF) that describes an ongoing test of four 2012 Nissan Leaf EVs that are being charged in two pairs of two. One pair only recharges from 50-kW DC fast chargers, which the other two sip from 3.3-kW Level 2 chargers exclusively. Otherwise, the cars are operated pretty much the same: climate is automatically set to 72 degrees, are driven on public roads around Phoenix, AZ and have the same set of dedicated drivers is rotated through the four cars. "Degradation depends more on the miles traveled than on the nature of recharging." What's most interesting are the charts on page seven of Shirk's presentation (click the image above to enlarge), which show the energy capacity of each of the four vehicles. When they were new, the four batteries were each tested to measure their energy capacity and given a 0 capacity loss baseline. They were then tested at 10,000, 20,000, 30,000 and 40,000 miles, and at each point, the DC-only EVs had roughly the same amount of battery loss as the Level 2 test subjects. The DC cars did lose a bit more at each test, but only around a 25-percent overall loss after 40k, compared to 23 percent for the Level 2 cars. Simanaitis' takeaway is that, "INL data suggest that the amount of degradation depends more on the miles traveled than on the nature of recharging." The tests are part of the INLs' Advanced Vehicle Testing Activity work and a final report is forthcoming. These initial numbers from IPL do mesh with other research into DC fast charging, though. Mitsubishi said daily fast charging wouldn't really hurt the battery in the i-MiEV and MIT tests of a Fisker Karma battery showed just 10-percent loss over 1,500 rapid charge-discharge cycles.