| Your Results | Global Average | |
|---|---|---|
| Questions | 5 | 5 |
| Correct | 0 | 3.52 |
| Score | 0% | 70% |
Which engine component converts the reciprocating motion of the piston into the rotational motion that's used to power the vehicle and its components?
camshaft |
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crankshaft |
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driveshaft |
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halfshaft |
The crankshaft converts the reciprocating motion of the piston into the rotational motion that's used to power the vehicle and its components.
Which of the following is the correct order for the engine stroke cycle?
intake, compression, power, exhaust |
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intake, power, compression, exhaust |
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compression, intake, power, exhaust |
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power, intake, compression, exhaust |
The stroke cycle order is intake stroke, compression stroke, power stroke, exhaust stroke.
The two major types of vehicle braking systems are:
disc and shoe |
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drum and shoe |
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drum and disc |
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hydraulic and shoe |
Brakes utlize friction to slow vehicle tires. Drum brakes employ a cast iron drum that roates with the vehicle axle. When hydraulic pressure is applied to the brake assemblies at the wheels, internal pistons expand and push brake shoes outward into contact with the brake drum slowing the rotation of the axle. More powerful disc brakes operate by pinching a rotating disc betweeen two brake pads and allow for a larger surface area to contact the disc, provide more force, and are more easily cooled.
Which of the following maintains pressure in the cooling system?
radiator cap |
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water pump |
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water jacket |
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thermostat |
The radiator is responsible for tranferring heat from the coolant to the outside air. Radiator hoses transfer coolant to and from the engine to the radiator and a radiator cap maintains pressure in the cooling system to increase the boiling point of the coolant mixture and thus allow it to absorb more heat.
The stoichiometric ratio is approximately:
1:1 |
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14.7:1 |
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1:14.7 |
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14.7 |
The stoichiometric ratio defines the proper ratio of air to fuel necessary so that an engine burns all fuel with no excess air. For gasoline fuel, the stoichiometric ratio is about 14.7:1 or for every one gram of fuel, 14.7 grams of air are required. Too much air results in a lean air-fuel mixture that burns more slowly and hotter while too much fuel results in a rich mixture that burns quicker and cooler.