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Connecting the jumper cables1. Connect the positive (+) booster cable to the positive (+) terminal of the discharged battery.
Note: In the illustrations, lightning boltsare used to designate the
assisting (boosting) battery.
2. Connect the other end of the positive (+) cable to the positive (+) terminal of the assisting battery.
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3. Connect the negative (-) cable to the negative (-) terminal of theassisting battery.
4. Make the final connection of the negative (-) cable to an exposed metal part of the disabled vehicle's engine, away from the battery
and the fuel injection system. NOTE: Do notuse fuel lines, engine
rocker covers or the intake manifold as groundingpoints.
WARNING: Do not connect the end of the second cable to the
negative (-) terminal of the battery to be jumped. A spark may
cause an explosion of the gases that surround the battery.
5. Ensure that the cables are clear of fan blades, belts, moving parts of both engines, or any fuel delivery system parts.
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Jump starting1. Start the engine of the booster vehicle and run the engine at moderately increased speed.
2. Start the engine of the disabled vehicle.
3. Once the disabled vehicle has been started, run both engines for an additional three minutes before disconnecting the jumper cables.
Removing the jumper cables
Remove the jumper cables in the reverse order that they were
connected. 1. Remove the jumper cable from the groundmetal surface.
Note: In the illustrations, lightning boltsare used to designate the
assisting (boosting) battery.
2. Remove the jumper cable on the negative (-) connection of the booster vehicle's battery.
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3. Remove the jumper cable from the positive (+) terminal of thebooster vehicle's battery.
4. Remove the jumper cable from the positive (+) terminal of the disabled vehicle's battery.
After the disabled vehicle has been started and the jumper cables
removed, allow it to idle for several minutes so the engine computer can
relearn its idle conditions.
When the battery is disconnected or a new battery is installed, the
transmission must relearn its adaptive strategy. As a result of this, the
transmission may shift firmly. This operation is considered normal and
will not effect function or durability of the transmission. Over time, the
adaptive learning process will fully update transmission operation to its
optimum shift feel.
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