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6-12 At A, locations of
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color-code bands on a resistor with axial leads. At B, locations of color code designators on a resistor with radial leads.
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Table 6-1.
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The color code for the first three bands that appear on fixed resistors. See text for discussion of the fourth and fifth bands.
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Numeral (first and second bands) 0 1 2 3 4 5 6 7 8 9 Multiplier (third band) 1 10 100 1000 (1 k) 104 (10 k) 105 (100 k) 106 (1 M) 107 (10 M) 108 (100 M) 109 (1000 M or 1 G)
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Color of band Black Brown Red Orange Yellow Green Blue Violet Gray White
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98 Resistors
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A competent engineer or technician always tests a resistor with an ohmmeter before installing it in a circuit. If the component happens to be labeled wrong, or if it is defective, it s easy to catch this problem while assembling or servicing a circuit. But once the circuit is all together, and it won t work because some resistor is labeled wrong or is bad, it s difficult to troubleshoot.
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Refer to the text in this chapter if necessary. A good score is at least 18 correct. Answers are in the back of the book. 1. Proper biasing in an amplifier circuit (a) causes it to oscillate. (b) prevents an impedance match. (c) can be obtained using a voltage divider network. (d) maximizes current flow. 2. A transistor can be protected from needless overheating by (a) a current-limiting resistor. (b) bleeder resistors. (c) maximizing the drive. (d) shorting out the power supply when the circuit is off. 3. A bleeder resistor (a) is connected across the capacitor in a power supply. (b) keeps a transistor from drawing too much current. (c) prevents an amplifier from being overdriven. (d) optimizes the efficiency of an amplifier. 4. Carbon-composition resistors (a) can handle gigantic levels of power. (b) have capacitance or inductance along with resistance. (c) have essentially no capacitance or inductance. (d) work better for ac than for dc. 5. A logical place for a wirewound resistor is (a) in a radio-frequency amplifier. (b) in a circuit where a noninductive resistor is called for. (c) in a low-power radio-frequency circuit. (d) in a high-power dc circuit. 6. A metal-film resistor (a) is made using a carbon-based paste. (b) does not have much inductance.
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(c) can dissipate large amounts of power. (d) has considerable inductance. 7. What type of resistor, or combination of resistors, would you use as the meter-sensitivity control in a test instrument, when continuous adjustment is desired (a) A set of switchable, fixed resistors (b) A linear-taper potentiometer (c) An audio-taper potentiometer (d) A wirewound resistor 8. What type of resistor, or combination of resistors, would you use as the volume control in a stereo compact-disc (CD) player (a) A set of switchable, fixed resistors (b) A linear-taper potentiometer (c) An audio-taper potentiometer (d) A wirewound resistor 9. If a sound triples in actual power level, approximately what is this, expressed in decibels (a) +3 dB (b) +5 dB (c) +6 dB (d) +9 dB 10. Suppose a sound changes in volume by 13 dB. If the original sound power is 1.0 W, what is the final sound power (a) 13 W (b) 77 mW (c) 50 mW (d) There is not enough information given here to answer this question. 11. The sound from a portable radio is at a level of 50 dB. How many times the threshold of hearing is this, in terms of actual sound power (a) 50 (b) 169 (c) 5000 (d) 100,000 12. An advantage of a rheostat over a potentiometer is the fact that (a) a rheostat can handle higher frequencies. (b) a rheostat is more precise. (c) a rheostat can handle more current. (d) a rheostat works better with dc.
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