| Your Results | Global Average | |
|---|---|---|
| Questions | 5 | 5 |
| Correct | 0 | 3.34 |
| Score | 0% | 67% |
Gases from combustion are pushed out through the exhaust valve as the piston travels up the cylinder to top dead center. This describes which engine stroke?
power |
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intake |
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compression |
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exhaust |
During the exhaust stroke, just before the piston reaches bottom dead center the exhaust valve opens. The resulting gases from combustion are then pushed out through the exhaust valve as the piston travels up the cylinder to top dead center, completing stroke four of the four-stroke piston cycle.
Which of the following is the correct order for the engine stroke cycle?
power, intake, compression, exhaust |
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compression, intake, power, exhaust |
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intake, compression, power, exhaust |
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intake, power, compression, exhaust |
The stroke cycle order is intake stroke, compression stroke, power stroke, exhaust stroke.
The spark plugs fire a few extra degrees before top dead center when the engine is running faster. In this case the engine's timing is:
synchronous |
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retarded |
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advanced |
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asynchronous |
Ignition timing defines the point in time at the end of the compression stroke that the spark plug fires. Measured in number of degrees before top dead center (BTDC), the exact point that the spark plugs initiate combustion varies depending on the speed of the engine. The timing is advanced (the spark plugs fire a few more degrees BTDC) when the engine is running faster and retarded when it's running slower.
Control arms connect a vehicle's suspension to the frame. The connection to the wheels is through:
ball joints |
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bushings |
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knuckles |
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pins |
Control arms (upper and lower) connect a vehicle's suspension to the frame. The connection to the wheels is through ball joints which allow the control arms to turn and move up and down simultaneously. The frame connection uses bushings.
A constant velocity (CV) joint is closely related to which of the following?
master cylinder |
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sprint joint |
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universal joint |
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ball joint |
Like CV joints, universal joints (U-joints) are located at each end of a drive shaft and allow the shaft to operate at a variable angle with the item it is driving. Universal joints perform the same basic function as CV joints but CV joints have a wider range of operation.