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Final Project Proposal In lieu of the recent budget cuts, I would like to wire an electret microphone comment on the rising cost of education. To do this, I would like to install a motor speaker in a small toy cartextbook that will emit an S.O.S. signal, and have signifying the analog input mapped distress that public education is currently in. This will require wiring up a speaker to one of the digital output, such that out pins on the louder Arduino. Musical notes can be specified with code. I will hollow out a portion of the audio signal, inside of the higher textbook to house the voltage, electronic components and somehow install a switch on the faster outside of the car would drivebook to trigger the sound. Hopefully Final Project Write-Up In lieu of the recent budget cuts and increase in tuition costs, this will give I've decided to comment on the feeling that current peril of public higher education. I've installed a speaker in a textbook and programmed my Arduino to perform an S.O.S. signal a number of times, which turns into the car is either scared sound ofa cardiac monitor, or excited followed bya simple rendition of the Funeral March. [[Image: Book.jpg]] [[Image: Bookswitch.jpg]] [[Image: Openbook.jpg]] [[Image: Bookpage.jpg]] The Circuit: [[Image: CIRCUIT_500A.jpg]] The Code: #include "pitches.h" // notes int SOS[] = { NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_0 }; // note durations: 4 = quarter note, 8 = eighth note, etc.: int toneDurations[] = { 4,4,4,2,2,2,4,4,4,4 }; int cardiacBeep[] = { NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4 }; int cardiacBeepDurations[] = { 4,4,4,4,4 }; int melody[] = { NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_C5,NOTE_B4,NOTE_B4,NOTE_A4,NOTE_A4,NOTE_A4,NOTE_A4}; int noteDurations[] = { 2, 2, 4, 1,2,4,2,4,2,4,1 }; void setup() { //run SOS 3 times for (int runSOS = 0; runSOS < 3; runSOS++) { // SOS for (int thisTone = 0; thisTone < 10; thisTone++) { // to calculate the soundtone duration, take one second, divided by note type int toneDuration = 1000/toneDurations[thisTone]; // call tone tone(8,SOS[thisTone],toneDuration); // silence to distinguish between notes int pauseBetweenTones = toneDuration*2; delay(pauseBetweenTones); } } // begin cardiac beep for (int thisCardiacBeep = 0; thisCardiacBeep < 5; thisCardiacBeep++) { int cardiacBeepDuration = 1000/cardiacBeepDurations[thisCardiacBeep]; tone(8,cardiacBeep[thisCardiacBeep],cardiacBeepDuration); int pauseBetweenBeeps = cardiacBeepDuration*5.3; delay(pauseBetweenBeeps); } // cardiac arrest tone(8,NOTE_A4,5000); // pause before funeral march delay(6000); // begin Funeral March for (int thisNote = 0; thisNote < 11; thisNote++) { int noteDuration = 1000/noteDurations[thisNote]; tone(8,melody[thisNote], depending noteDuration); int pauseBetweenNotes = noteDuration*1.1; delay(pauseBetweenNotes); } } void loop() { // no need to repeat the melody. } Include this on a second tab within the situation (exArduino sketch: shouting at it vs #define NOTE_0 0 #define NOTE_B0 31 #define NOTE_C1 33 #define NOTE_CS1 35 #define NOTE_D1 37 #define NOTE_DS1 39 #define NOTE_E1 41 #define NOTE_F1 44 #define NOTE_FS1 46 #define NOTE_G1 49 #define NOTE_GS1 52 #define NOTE_A1 55 #define NOTE_AS1 58 #define NOTE_B1 62 #define NOTE_C2 65 #define NOTE_CS2 69 #define NOTE_D2 73 #define NOTE_DS2 78 #define NOTE_E2 82 #define NOTE_F2 87 #define NOTE_FS2 93 #define NOTE_G2 98 #define NOTE_GS2 104 #define NOTE_A2 110 #define NOTE_AS2 117 #define NOTE_B2 123 #define NOTE_C3 131 #define NOTE_CS3 139 #define NOTE_D3 147 #define NOTE_DS3 156 #define NOTE_E3 165 #define NOTE_F3 175 #define NOTE_FS3 185 #define NOTE_G3 196 #define NOTE_GS3 208 #define NOTE_A3 220 #define NOTE_AS3 233 #define NOTE_B3 247 #define NOTE_C4 262 #define NOTE_CS4 277 #define NOTE_D4 294 #define NOTE_DS4 311 #define NOTE_E4 330 #define NOTE_F4 349 #define NOTE_FS4 370 #define NOTE_G4 392 #define NOTE_GS4 415 #define NOTE_A4 440 #define NOTE_AS4 466 #define NOTE_B4 494 #define NOTE_C5 523 #define NOTE_CS5 554 #define NOTE_D5 587 #define NOTE_DS5 622 #define NOTE_E5 659 #define NOTE_F5 698 #define NOTE_FS5 740 #define NOTE_G5 784 #define NOTE_GS5 831 #define NOTE_A5 880 #define NOTE_AS5 932 #define NOTE_B5 988 #define NOTE_C6 1047 #define NOTE_CS6 1109 #define NOTE_D6 1175 #define NOTE_DS6 1245 #define NOTE_E6 1319 #define NOTE_F6 1397 #define NOTE_FS6 1480 #define NOTE_G6 1568 #define NOTE_GS6 1661 #define NOTE_A6 1760 #define NOTE_AS6 1865 #define NOTE_B6 1976 #define NOTE_C7 2093 #define NOTE_CS7 2217 #define NOTE_D7 2349 #define NOTE_DS7 2489 #define NOTE_E7 2637 #define NOTE_F7 2794 #define NOTE_FS7 2960 #define NOTE_G7 3136 #define NOTE_GS7 3322 #define NOTE_A7 3520 #define NOTE_AS7 3729 #define NOTE_B7 3951 #define NOTE_C8 4186 #define NOTE_CS8 4435 #define NOTE_D8 4699 #define NOTE_DS8 4978 When I first wired the speaker up with the Arduino and the breadboard, the signal was very weak and produced a very quiet tone. letting it go at a concert)I decided to add the TIP120 and the diode to increase the volume of the signal. It might also be beneficial I wanted to introduce make the piece self-contained and not require a range finding sensorlaptop for power, so it doesnI powered the Arduino with a 9V battery. In doing so, I discovered that my DC in on my Arduino didn't just run straight into work, so I clipped a wall. Maybe if micro USB plug from and old cell phone charger and soldered it senses something ahead it could just turn right or left some amountto the wires from the battery. Wouldn't solve I then cut out a section of a textbook to house the problem entirelyelectronics. Finally, but might help I added a bitpush-to-break switch so that the program could be triggered without having to open the book. The erratic turning may also help in crafting a frenzied appearanceswitch shuts the Arduino off momentarily, causing it to restart the program.