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

2002 Nissan Pathfinder Se Sport Utility 4-door 3.5l $3000 on 2040-cars

US $3,000.00
Year:2002 Mileage:170000
Location:

Staten Island, New York, United States

Staten Island, New York, United States
Advertising:
Fuel Type:GAS
Vehicle Title:Clear
Engine:3.5L 3498CC V6 GAS DOHC Naturally Aspirated
Body Type:Sport Utility
For Sale By:Private Seller
VIN: JN8DR09YX2W709491 Year: 2002
Make: Nissan
Mileage: 170,000
Model: Pathfinder
Trim: SE Sport Utility 4-Door
Options: Sunroof, 4-Wheel Drive, CD Player
Safety Features: Anti-Lock Brakes, Passenger Airbag
Drive Type: 4WD
Power Options: Air Conditioning, Cruise Control, Power Windows
Number of Cylinders: 6
Disability Equipped: No
Condition: UsedA vehicle is considered used if it has been registered and issued a title. Used vehicles have had at least one previous owner. The condition of the exterior, interior and engine can vary depending on the vehicle's history. See the seller's listing for full details and description of any imperfections.Seller Notes:"Very Bad transmission. Need some TLC"

Very clean 2002 Nissan Pathfinder SE
170K miles and very bad transmission.
Only 2 Owners. Brand New Tires.
Bose Audio system. Sunroof.
Clean Interior. Except for bad transmission car is in excellent shape.
Price is negotiable.

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Auto blog

Nissan and NASA team up on autonomous zero-emissions test fleet

Fri, Jan 9 2015

Nissan and NASA have announced a collaboration on autonomous vehicles that, if we're honest, makes more sense to us than Infiniti partnering with Red Bull. The two are commencing a five-year R&D program to explore autonomous drive systems, human-machine interfaces, network-enabled applications, and software analysis and verification. What's more: the test fleet will be zero emissions and rolling around NASA's Ames Research Center by the end of this year. We will assume that means autonomous Leafs, but Nissan could be working on a new vehicle for the purpose. Nissan CEO Carlos Ghosn said the company will begin offering autonomous features "beginning in 2016," and wants to have commercially available self-piloting vehicles that can "navigate in nearly all situations," including urban environments, by 2020. Who better to assist than the people who put a self-driving rover on a planet that never gets closer than 34 million miles away? What does NASA get out of it? Access to Nissan's materials and component developments, prototyping systems, and robotic software test beds. Sounds like everybody wins. The press release below has more information. Nissan and NASA partner to jointly develop and deploy autonomous drive vehicles by end of year SUNNYVALE, Calif. Jan. 8, 2015 - Nissan Motor Co., through its North American-based organization, and NASA today announced the formation of a five-year research and development partnership to advance autonomous vehicle systems and prepare for commercial application of the technology. Researchers from Nissan's U.S. Silicon Valley Research Center and NASA's Ames Research Center at Moffett Field, Calif., will focus on autonomous drive systems, human-machine interface solutions, network-enabled applications, and software analysis and verification, all involving sophisticated hardware and software used in road and space applications. Researchers from the two organizations will test a fleet of zero-emission autonomous vehicles at Ames to demonstrate proof-of-concept remote operation of autonomous vehicles for the transport of materials, goods, payloads and people. For NASA, these tests parallel the way it operates planetary rovers from a mission control center. The first vehicle of that fleet should be testing at the facility by the end of 2015. "The work of NASA and Nissan – with one directed to space and the other directed to earth, is connected by similar challenges," said Carlos Ghosn, president and CEO of Nissan Motor Co.

Recharge Wrap-up: Nissan earns Energy Star award, ethanol production forecasts adjusted

Fri, Apr 10 2015

The US Energy Information Administration has adjusted its ethanol production forecasts. It predicts an average of 944,000 barrels per day for 2015. That number is up from 2014 production levels of 935,000 barrels per day, but it is lower than last month's projection for 2015, which was 947,000 barrels per day. The EIA forecasts 937,000 barrels per day in 2016, down from its prior forecast of 942,000 barrels. Biodiesel production averaged 83,000 barrels per day last year, with projections of 82,000 for 2015, and 84,000 for 2016. Read more from Ethanol Producer Magazine. Boston Mayor Martin J. Walsh supports the proposed Diesel and Vehicular Emissions Ordinance. The ordinance, filed by City Councilor Stephen Murphy, would require emissions control retrofitting of all pre-2007 vehicles belonging to the City of Boston, as well as those of any contractors it hires. The ordinance also seeks to create a simple city-level standard of enforcing the state's anti-idling laws. "The asthma rate in Boston's neighborhoods continues to climb," says Councilor Murphy. "By further tightening air quality standards, as this ordinance does, we will make Boston's neighborhoods healthier." Read more at DieselNet. The Michigan Blue Economy report profiles Ford for its water-saving sustainability efforts. The report notes that Ford reduced its water use by 61 percent, or 10 billion gallons, from 2000 to 2013 by "cutting the water used in everything from cooling towers to paint operations." As part of its Global Water Management Initiative, Ford has decreased its total water use at its facilities worldwide from 64 million cubic meters per year to 25 million cubic meters. Read more from Ford, or at the Michigan Blue Economy website. The EPA has named Nissan an Energy Star Partner of the Year for the fourth year in a row. The automaker received the Sustained Excellence Award for its efforts to reduce energy use and greenhouse gas emissions in its operations. Nissan reduced the amount of energy used to build vehicles by 13 percent in 2014. Energy reduction efforts include switching to LED lighting and developing an environmentally friendly paint process. Nissan also works with schools in Tennessee and Mississippi to help them reduce energy usage. "Since this initiative began in 2012, we've helped about 30 schools make the esteemed Energy Star certification list," says Nissan's John Martin. Read more in the press release below.

Why it's difficult to accurately test the efficiency of a plug-in car

Thu, Feb 5 2015

When it comes to electric vehicles and plug-ins in general, the Environmental Protection Agency-certified range is a hugely important number. While actual range anxiety is largely psychological, the magic number does provide a point of comparison of buyers considering one EV over another. The driving distance is also often touted by automakers when marketing their models. Unfortunately, as Green Car Reports finds in a recent deep dive, the way the EPA calculates the figure is a convoluted mess, and discovering the reasons why is definitely worth the read. The issue isn't about bad science but instead comes down to vague wording. The EPA's accepted range test is sourced from an evaluation called J-1634 from the Society of Automotive Engineers, and it seems to provide balanced results for vehicles that automatically reach a single state of charge when plugged in. However for models with multiple charge settings, the situation gets complicated very quickly. Of course, these modes are often created in the software, meaning that a car's certified driving distance can change with just a few taps of the keyboard without the real world results owners might experience actually changing. By showing the test's effects on the certified range for the Tesla Model S, Nissan Leaf and Mercedes-Benz B-Class Electric Drive over the last few years, Green Car Reports makes a compelling argument that it's the evaluation that needs to change. Thankfully, it appears that the solution is a very simple one. Get the details here.