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Each image has a certain number of pixels depending on the size (ex: 5mp camera takes shots that contain 5,000,000 pixels of color). The conversion begins from left to right, top to bottom, similar to reading words on a page. The first pixel is first converted into it's color code (a six digit code that all colors on a chart are organized by), and then that six digit code is converted into a binary string. So if the first pixel is medium gray, the color code is 646464, that code is then converted to binary using the binary numbering system. So 6=110 and 4=100, so the first medium gray pixel is 110100110100110100, then the next pixel is translated in the same manner and the string is continued. So if you had a 5mp medium gray image, the binary string would contain 80 million digits of 1s and 0s. Different color images would create larger strings
Just under 30 seconds. The speed of sound in air is 1100 feet per second. To cover 10K (which is 6.2 miles), you could multiply 6.2 by 5,280 (the number of feet in a mile), which gives you 32,736 ft. Then divide the number of feet by the speed of sound, and you get 29.76 seconds. Roughly converted the speed of sound is 330 meters per second so it takes 3 second per kilometer, so 30 seconds
Because our brains lack the capability to de-code digital signals. Therefore, any digital sound must be converted to analogue (and be within a specific frequency range) for us to hear it.
It is simply a coincidence. The number 6 is from Indo-Arabic system, whereas the letter b is or Roman origin. The symbol for that sound in other alphabets is quite different.
In China it's an unlucky number, cause the sound of 4 resembles the sound of death. You will not find Chinese phone numbers containing the digit 4.
Binary
Sound is converted to digital through a process called quantizing. This converts sound energy into a basic musical format (such as .WAV as in the case of Windows Sound Recorder). MP3 is a form of compression that makes huge sound files much smaller with minimal loss of sound quality. A separate encoder is required to convert a basic sound file to an MP3.
A sound system works by converting sound waves into electrical energy. The electrical energy is then converted back into solid energy that results in sound.
Each image has a certain number of pixels depending on the size (ex: 5mp camera takes shots that contain 5,000,000 pixels of color). The conversion begins from left to right, top to bottom, similar to reading words on a page. The first pixel is first converted into it's color code (a six digit code that all colors on a chart are organized by), and then that six digit code is converted into a binary string. So if the first pixel is medium gray, the color code is 646464, that code is then converted to binary using the binary numbering system. So 6=110 and 4=100, so the first medium gray pixel is 110100110100110100, then the next pixel is translated in the same manner and the string is continued. So if you had a 5mp medium gray image, the binary string would contain 80 million digits of 1s and 0s. Different color images would create larger strings
A computer only reads information in digital coding (binary) a truly analog signal would not register in a computer.
no
Electrical energy gets converted to sound energy. When we speak into the speaker, our sound waves get converted into electrical signals. These signals get amplified and emitted as louder sound. Thus, electrical energy (electrical signals) gets converted into sound energy (amplified/louder sound).
Killamanjaro
i don't know the correct answer but i think that the electrical enegy is converted into sound energy through vibrations.
In electric bell, electrical energy is converted int sound energy.
Voice being analog signal will be converted by an ADC whereby the output is a logic representation of the analog input
No. Sound has to be converted from analog to digital for use by a computer, not the other way around. It is converted to analog so amplifiers and other analog equipment can use it and so you can hear it.