2001 Nissan Sentra Gxe on 2040-cars
4600 66th St N, Kenneth City, Florida, United States
Engine:1.8L I4 16V MPFI DOHC
Transmission:UNSPECIFIED
VIN (Vehicle Identification Number): 3N1CB51D01L460613
Stock Num: 460613
Make: Nissan
Model: Sentra GXE
Year: 2001
Exterior Color: Blue
Options: Drive Type: FWD
Number of Doors: 4 Doors
Looks new inside and out! Fully loaded including ICE COLD AIR!!! Nissan quality. CELEBRATING 15 YEARS OF INCREDIBLE DEALS!! A BIG THANK YOU, TO OUR THOUSANDS OF SATISFIED CUSTOMERS!! OUR PRICES ARE SO LOW THEY ARE CRAZY!!!! THEY HAVE BEEN DISCOUNTED TO ROCK BOTTOM IN ORDER TO MAKE ROOM FOR MORE INVENTORY THAT ARRIVES EVERY DAY! THAT IS WHY CUSTOMERS DRIVE FROM ALL OVER THE STATE OF FLORIDA TO GET OUR AMAZING DEALS!! BELIEVE US, IT IS WORTH THE DRIVE!! HURRY OUR CARS SELL FAST!! Call us at 888-736-6818...........We are located at.. 4600 66 street north Saint. Petersburg Fl. 33709. MON-FRI 10-7, SAT 10-6,....... 888-736-6818
Nissan Sentra for Sale
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Auto blog
Nissan Leaf Nismo RC Concept [w/video]
Fri, 20 Sep 2013Nissan took the wraps off its Leaf Nismo RC Concept at the New York Auto Show more than two years ago. As inferred, the vehicle shares many of its pure-EV components with the production Leaf currently sitting in your dealer's showroom. But don't assume the concept is a placid, family friendly, four-place, front-wheel-drive plug-in for grabbing groceries - the RC (as in "Racing Challenge") is a purpose-built, two-seat, rear-wheel-drive prototype race car tuned for the short track.
The RC Concept is fitted with an 80-kW AC synchronous motor driving the rear wheels and drawing power from a 48-module lithium-ion battery. While the motor and battery are nearly identical to the consumer-friendly Leaf, a sleek full carbon-fiber monocoque body shell and a slew of other enhancements mean the RC is 40-percent lighter, a foot shorter in overall height and nearly seven inches wider than its commuter namesake. Nissan says the RC Concept will hit 62 miles per hour in about 6.8 seconds, top out at 93 mph and run for about 20 minutes under race conditions (it will accept an 80-percent charge in 30 minutes with a quick-charger). Understandably, if a zero-emissions motorsport series comes to fruition, the races would be short and nearly silent.
We caught up with the Leaf Nismo RC concept in Southern California, where we were offered the opportunity to zip it around a tight autocross at the former Marine Corps Air Station, El Toro.
2013 Nissan GT-R and 2013 Alpina B6 mix it up on track and street
Fri, 24 May 2013
Here we have Autocar making an unforeseen comparison: the Nissan GT-R against the Alpina B6 at Brands Hatch and on public roads. Steve Sutcliffe clobbers the circuit in the 3,828-pound, all-wheel-drive sports car, then sees how well the 4,114-pound, rear-wheel drive grand tourer does against it.
Sutcliffe says there are quite a few similarities between the two cars, but that's really only on the spec sheet. The Nissan's got two turbos attached to its 3.8-liter V6, 542 horsepower and 465 pound-feet of torque. The Alpina's got two turbos attached to its 4.4-liter V8, 532 hp and 528 lb-ft. But one's brief is to be a monster on the track, the other on the boulevard, and if there's anything the video demonstrates, it's each car's focus.
DC fast charging not as damaging to EV batteries as expected
Mon, Mar 17 2014As 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.