Foreword |
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Amateur's Code |
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Schematic Symbols |
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What is Amateur (Ham) Radio? |
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2 | (1) |
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3 | (1) |
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4 | (1) |
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5 | (2) |
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7 | (4) |
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11 | (4) |
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15 | (1) |
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16 | |
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Activities in Amateur Radio |
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1 | (1) |
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2 | (1) |
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3 | (1) |
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4 | (1) |
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4 | (2) |
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Specialized Communications |
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6 | |
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1 | (1) |
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2 | (1) |
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Electrical Wiring around the Shack |
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3 | (2) |
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Lightning/Transient Protection |
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5 | (2) |
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7 | (2) |
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Project: An Earth-Continuity Tester |
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9 | (2) |
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11 | (1) |
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FCC RF-Exposure Regulations |
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12 | (2) |
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14 | (1) |
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RF Radiation and EMF Safety |
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15 | (4) |
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Other Hazards in the Ham Shack |
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19 | |
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DC Circuits and Resistance |
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1 | (2) |
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Series and Parallel Resistances |
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3 | (3) |
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6 | (2) |
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8 | (3) |
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11 | (2) |
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13 | (5) |
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Capacitance and Capacitors |
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18 | (7) |
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25 | (7) |
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Quality Factor (Q) of Components |
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32 | (1) |
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Calculating Practical Inductors |
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32 | (5) |
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37 | (5) |
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42 | (5) |
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47 | (7) |
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54 | |
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Electrical Signals and Components |
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1 | (1) |
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2 | (4) |
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6 | (11) |
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17 | (9) |
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Transistor Amplifier Design |
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26 | (12) |
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38 | (1) |
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39 | (2) |
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Physical Rep. of Binary States |
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41 | (1) |
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42 | (3) |
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45 | (6) |
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Digital Integrated Circuits |
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51 | (7) |
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58 | |
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Real-World Component Characteristics |
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Lumped vs Distributed Elements |
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1 | (1) |
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Low-Frequency Component Models |
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2 | (8) |
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10 | (6) |
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16 | (4) |
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The Thermistor in Homebrew Projects |
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20 | (3) |
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Low-Frequency Transistor Models |
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23 | |
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Component Data and References |
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1 | (1) |
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1 | (4) |
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Inductors and Core Materials |
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5 | (6) |
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Other Sources of Component Data |
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11 | (4) |
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15 | (13) |
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28 | (4) |
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32 | (4) |
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36 | (2) |
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38 | (1) |
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General/Electronics/Computers |
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38 | (7) |
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45 | (1) |
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Antennas/Transmission Lines |
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46 | (4) |
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50 | (2) |
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Operating and Interference |
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52 | (11) |
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63 | |
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1 | (1) |
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1 | (5) |
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Project: A Deluxe Soldering Station |
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6 | (1) |
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Project: Soldering-Iron Temperature Control |
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7 | (1) |
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7 | (5) |
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Surface Mount Construction Techniques |
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12 | (6) |
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From Schematic to Working Circuit |
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18 | (4) |
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Microwave Construction Techniques |
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22 | (1) |
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23 | (2) |
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25 | |
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Modes and Modulation Sources |
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Issues Common to all Transmission Modes |
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1 | (2) |
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Emission, Modulation & Transmission Characteristics |
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3 | (2) |
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5 | (2) |
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7 | (3) |
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10 | (11) |
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21 | (1) |
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22 | (4) |
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26 | (6) |
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32 | (2) |
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Slow-Scan Television (SSTV) |
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34 | (9) |
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43 | (4) |
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High Speed Multimedia (HSMM) Radio |
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47 | |
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Oscillators and Synthesizers |
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2 | (3) |
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5 | (7) |
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Oscillator Circuits and Construction |
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12 | (16) |
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28 | (4) |
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32 | (1) |
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33 | (16) |
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Synthesizer in an MF/HF Transceiver |
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49 | (3) |
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Trends in Oscillator Applications |
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52 | |
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Mixers, Modulators and Demodulators |
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The Mechanism of Mixers and Mixing |
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1 | (12) |
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Practical Building Blocks |
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13 | (7) |
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Testing and Calculating IMD in Receivers |
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20 | |
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1 | (4) |
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5 | (3) |
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Designs using Software/SVC Tables |
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8 | (3) |
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11 | (5) |
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16 | (2) |
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Monolithic Crystal Filters |
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18 | (1) |
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18 | (1) |
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Transmission-Line Filters |
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19 | (4) |
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23 | (4) |
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27 | (1) |
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Project: Crystal Filter Evaluation |
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27 | (3) |
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Project: Band-Pass Filters for 144 or 222 MHz |
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30 | (1) |
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Project: High-Performance Passive CW Filter |
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31 | (4) |
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Project: Broadcast Band Rejection Filter |
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35 | (1) |
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Project: A Wave Trap for Broadcast Stations |
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36 | (1) |
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Project: Second-Harmonic-Optimized LP Filters |
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37 | (2) |
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Project: The Diplexer Filter |
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39 | |
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1 | (1) |
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2 | (1) |
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3 | (2) |
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5 | (3) |
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TVI Troubleshooting Chart |
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8 | (2) |
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Amateur Harmonics/CATV Chart |
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10 | (5) |
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Project: Finding Shack Noise Sources |
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15 | (2) |
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17 | (11) |
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Project: The Simple Seeker |
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28 | (2) |
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Project: Active Attenuator for VHF-FM |
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30 | |
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Receivers and Transmitters |
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A Single-Stage Building Block |
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1 | (3) |
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Negative Feedback in RF Design |
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4 | (10) |
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Receiver Design Techniques |
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14 | (6) |
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The Superheterodyne Receiver |
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20 | (14) |
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34 | (2) |
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Project: GaAsFET Preamp for 430 MHz |
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36 | (5) |
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Project: Microwave Receiver for 10 GHz |
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41 | (1) |
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42 | (19) |
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Project: A Rock-Bending Receiver for 7 MHz |
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61 | (3) |
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Project: A Wideband MMIC Preamp |
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64 | (2) |
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Project: A Binaural I-Q Receiver |
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66 | (6) |
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Project: A Superregenerative Receiver with Squelch |
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72 | (2) |
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Project: A Broadband HF Amp using MOSFETS |
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74 | (7) |
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Project: A Drift-Free VFO |
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81 | (4) |
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Project: A Simple Regenerative HF Receiver |
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85 | |
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Transceivers, Transverters and Repeaters |
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1 | (8) |
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Project: The Norcal Sierra---An 80-15 M CW Transceiver |
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9 | (6) |
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Project: A 10-Watt SSB Transceiver for 60-M Band |
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15 | (4) |
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19 | (1) |
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20 | |
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DSP and Software Radio Design |
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1 | (4) |
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5 | (4) |
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Analytic Signals and Modulation |
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9 | (7) |
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Digital Speech Processing |
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16 | (1) |
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Interference-Reduction Techniques |
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17 | (2) |
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19 | (7) |
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Radio Architectures for DSP |
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26 | (5) |
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31 | (1) |
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Hardware for Embedded DSP Systems |
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32 | (2) |
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34 | (2) |
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36 | (1) |
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36 | (1) |
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Project B: FIR Filter Design Variations |
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36 | (3) |
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Project C: Analytic Filter Pair Generation |
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39 | (1) |
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Project D: Newton's Method for Square Roots |
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39 | (1) |
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Project E: A Fast Square-Root Algorithm |
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39 | (2) |
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Project F: A High-Performance DDS |
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41 | (1) |
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Project G: Fast Binary Multiplier in High-Speed CMOS Logic |
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42 | |
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1 | (1) |
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Alternating-Current Power |
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2 | (2) |
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4 | (1) |
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5 | (6) |
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11 | (1) |
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12 | (8) |
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20 | (1) |
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20 | (4) |
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24 | (1) |
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24 | (1) |
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Project: Series-Regulated 4.5- to 25-V Supply |
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25 | (3) |
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Project: 13.8-V, 40-A Switching Supply |
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28 | (9) |
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Project: 28-V, High-Current Supply |
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37 | (3) |
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Project: Commercial-Quality, High-Voltage Supply |
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40 | (1) |
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Project: Micro M+ Charge Controller |
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41 | (3) |
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Project: The UPS---A Universal Supply |
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44 | (2) |
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Project: A Portable Power Supply |
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46 | |
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Types of Power Amplifiers |
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1 | (18) |
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19 | (10) |
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Project: 3CX1500D7 kW HF Amplifier |
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29 | (8) |
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Project: A 6-Meter kW Amplifier |
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37 | (3) |
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Project: A 144-MHz Amplifier |
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40 | |
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Station Layout and Accessories |
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1 | (12) |
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Mobile and Portable Installations |
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13 | (4) |
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Project: Tick-2---A Tiny CMOS Keyer 2 |
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17 | (3) |
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Project: Vintage Radio T/R Adapter |
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20 | (2) |
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Project: Quick and Easy CW with your PC |
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22 | (3) |
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Project: An Expandable Headphone Mixer |
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25 | (1) |
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Project: A Simple 10-Minute ID Timer |
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26 | (1) |
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Project: Audio Break-Out Box |
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26 | (2) |
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Project: An SWR Detector Audio Adapter |
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28 | (1) |
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Project: PC Voltmeter and SWR Bridge |
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29 | (2) |
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Project: Tandem Match---An Accurate Directional Wattmeter |
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31 | (6) |
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Project: Automatic Antenna Switch for Yaesu or ICOM |
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37 | (4) |
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Project: A Trio of Transceiver/Computer Interfaces |
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41 | (3) |
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Project: Computer-Controlled Two-Radio Switchbox |
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44 | (4) |
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Project: TR Time-Delay Generator |
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48 | (4) |
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Project: A Switched Attenuator |
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52 | (1) |
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Project: Simple QRP TR Changeover |
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53 | (1) |
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54 | (2) |
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56 | (1) |
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Project: An Ugly Transformer for Heavy-Load Stations |
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57 | |
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Propagation of RF Signals |
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Fundamentals of Radio Waves |
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1 | (3) |
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Propagation Summary by Band |
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4 | (13) |
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17 | (2) |
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Propagation in the Troposphere |
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19 | (5) |
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Extraterrestrial Propagation |
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24 | |
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1 | (2) |
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3 | (1) |
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Reflections on the Smith Chart |
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4 | (6) |
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Matching the Antenna to the Line |
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10 | (3) |
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Matching the Line to the Transmitter |
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13 | (1) |
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Loads and Balancing Devices |
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14 | (3) |
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17 | |
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1 | (3) |
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Dipoles and the Half-Wave Antenna |
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4 | (7) |
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Project: 135-FT Multiband Dipole |
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11 | (1) |
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Antenna Modeling by Computer |
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12 | (1) |
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Project: A 40/15-M Dual-Band Dipole |
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13 | (1) |
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Project: K8SYL 75/10-M Dual-Band Dipole |
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14 | (1) |
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Project: W4RNL Inverted-U Antenna |
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14 | (5) |
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Project: Two W8NX Multiband, Coax-Trap Dipoles |
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19 | (4) |
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23 | (1) |
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Optimum Ground Systems for Vertical Antennas |
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23 | (4) |
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Project: Dual-Band Verticals for 17/40M or 12/30M |
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27 | (1) |
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Inverted L and Sloper Antennas |
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28 | (1) |
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Project: 1.8-MHz Inverted L |
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29 | (1) |
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Project: Half-Wave Vertical Dipole (HVD) |
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30 | (1) |
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Project: The Compact Vertical Dipole (CVD) |
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31 | (1) |
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Project: All Wire 30-M CVD |
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32 | (1) |
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Yagi and Quad Directive Antennas |
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33 | (5) |
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38 | (1) |
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Project: Five-Band, Two-Element HF Quad |
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39 | (3) |
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Project: Simple Quad for 40 M |
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42 | (3) |
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Project: Simple Loop for 28 MHz |
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45 | (1) |
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45 | (8) |
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53 | (3) |
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Project: Simple Portable Groundplane Antenna |
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56 | (1) |
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Project: Dual-Band Antenna for 146/446 MHz |
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57 | (1) |
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Project: A Quick Antenna for 223 MHz |
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58 | (1) |
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Project: An All-Copper 2-M J-Pole |
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58 | (2) |
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60 | (1) |
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Project: 3- and 5-Element Yagis for 6 M |
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60 | (1) |
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Project: A Medium Gain 2-M Yagi |
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61 | |
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An Amateur Satellite Primer |
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1 | (3) |
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Amateur Satellite History |
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4 | (6) |
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Phase 3E---The Next Generation |
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10 | (3) |
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Project: Single Brick L-Band Amplifier |
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13 | (1) |
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Project: Double Brick L-Band Amplifier |
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13 | (10) |
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Project: Parabolic Dish Construction |
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23 | (1) |
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Project: Helix Feed for an Offset Dish |
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24 | (2) |
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Project: Integrated Dual-Band Antenna System |
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26 | (2) |
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Glossary of Satellite Terminology |
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28 | (4) |
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32 | |
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Web, Wi-Fi, Wireless and PC Technology |
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The World Wide Web (www)---The Internet |
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1 | (1) |
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Ham's Guide to Useful Internet Sites |
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2 | (1) |
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Glossary/Wireless Fidelity (Wi-Fi) |
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3 | (1) |
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Glossary of Wireless Technology |
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4 | (2) |
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6 | (4) |
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Personal Computers in the Shack |
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10 | (2) |
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12 | |
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Test and Measurement Basics |
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1 | (2) |
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DC Instruments and Circuits |
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3 | (5) |
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AC Instruments and Circuits |
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8 | (3) |
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11 | (3) |
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14 | (1) |
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Project: Marker Generator with Selectable Output |
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15 | (2) |
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Project: A Dip Meter with Digital Display |
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17 | (3) |
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Other Instruments and Measurements |
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20 | (1) |
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Project: A Wide-Range Audio Oscillator |
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20 | (1) |
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Project: Measure Inductance and Capacitance with a DVM |
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21 | (1) |
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22 | (5) |
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Project: HF Adapter for Narrow Bandwidth Scopes |
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27 | (1) |
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Project: A Calibrated Noise Source |
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27 | (4) |
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Project: Signal Generator for Receiver Testing |
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31 | (3) |
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Project: Hybrid Combiners for Signal Generators |
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34 | (1) |
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Project: Compensated Modular RF Voltmeter |
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35 | (6) |
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Receiver Performance Tests |
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41 | (8) |
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Transmitter Performance Tests |
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49 | |
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Troubleshooting and Repair |
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1 | (4) |
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5 | (4) |
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9 | (2) |
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11 | (1) |
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Typical Symptoms and Faults |
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12 | (5) |
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17 | (10) |
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27 | (1) |
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28 | |
Advertisers Index |
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ARRL Membership Form |
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Index |
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About the ARRL |
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About the Included CD-ROM |
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