Lesson 4.5.6.7
4.5.6.7 Digital representation of sound Quiz: AQA Computer Science, Unit 5
20 questions
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Lesson 4.5.6.7, Digital representation of sound: 20 multiple choice questions for the AQA Computer Science (7517), Unit 5: Fundamentals of data representation, written with Revision Ninja.
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The 20 questions
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What is sample resolution in digital sound?
- The length of the recording in seconds, which determines how much audio the file can hold
- The number of samples taken per second, which sets how often the sound is measured in time
- The number of channels in the recording, such as mono or stereo, used for playback
- The number of bits used to store each sound sample, which sets how finely its level is recorded
-
What is the sampling rate of a digital recording?
- The number of bits in each sample
- The total number of bytes in a file
- The highest frequency a microphone can detect, in decibels
- The number of samples taken per second, measured in hertz
-
What does the Nyquist theorem state?
- The sampling rate must be half the highest frequency in the signal to avoid any distortion
- Sampling must use at least sixteen bits per sample, whatever the frequency of the signal
- A sampling rate of at least twice the highest frequency in the signal is needed to capture it accurately
- The sampling rate must be exactly equal to the highest frequency in the signal being recorded
-
What is the commonly quoted range of human hearing?
- About 0 Hz to 44.1 kHz
- About 200 Hz to 200 kHz
- About 2 Hz to 2 kHz
- About 20 Hz to 20 kHz
-
Which sampling rate is standard for CD-quality audio?
- 8 kHz
- 22.05 kHz
- 96 kHz
- 44.1 kHz
-
Which bit depth is standard for CD-quality audio?
- 16 bits
- 24 bits
- 8 bits
- 4 bits
-
Why does a higher sample resolution improve a recorded sound?
- It increases the sampling rate automatically, so more samples are taken each second of sound
- It allows more amplitude levels, so the waveform is represented more accurately
- It makes the file compressed, so the samples take less space without losing any detail
- It removes the need for a DAC, because the stored samples can drive a speaker directly
-
A 10 second mono recording is made at 44.1 kHz with 16-bit samples. How many bytes does it need?
- 1,764,000 bytes
- 441,000 bytes
- 882,000 bytes
- 8,820,000 bytes
-
A 5 second mono recording is made at 8 kHz with 8-bit samples. How many bytes does it need?
- 80,000 bytes
- 400 bytes
- 40,000 bytes
- 5,000 bytes
-
A 1 minute mono recording is made at 22.05 kHz with 8-bit samples. How many bytes does it need?
- 132,300 bytes
- 1,323,000 bytes
- 13,230 bytes
- 2,646,000 bytes
-
A signal's highest frequency is 4 kHz. What is the lowest sampling rate that Nyquist allows?
- 8 kHz
- 4 kHz
- 16 kHz
- 2 kHz
-
What is the minimum sampling rate for a sound containing 15 kHz?
- 15 kHz
- 45 kHz
- 7.5 kHz
- 30 kHz
-
A sample resolution of 12 bits gives how many amplitude levels?
- 12
- 8192
- 1024
- 4096
-
If the sampling rate doubles for the same duration and bit depth, what happens to the file size?
- It stays the same, since file size depends only on the bit depth and not on the sampling rate
- It doubles only when the file is compressed, because compression is the only factor that adds data
- It doubles, since storage equals samples per second times duration times bytes per sample
- It halves, since each sample becomes larger when the number of samples per second is increased
-
A 2 second mono recording is made at 16 kHz with 8-bit samples. How many bits does it need?
- 256,000 bits
- 32,000 bits
- 128,000 bits
- 512,000 bits
-
A 9 kHz tone is sampled at 12 kHz. Which frequency appears in the samples?
- 12 kHz, because the sampling rate is always captured
- 3 kHz, because the tone aliases below the 6 kHz Nyquist limit
- 9 kHz, because sampling always captures tones exactly
- 6 kHz, because the Nyquist limit is always captured
-
Why does a higher bit depth reduce quantisation noise?
- More levels mean each sample is rounded by a smaller amount, so the rounding error is smaller
- More bits increase the sampling rate, which removes the noise because more samples are taken
- Noise is caused only by the DAC, so bit depth in the recording has no effect on noise
- Bits reduce the noise by removing part of the signal, so the quieter parts are cut out
-
A 30 second stereo recording is made at 48 kHz with 24-bit samples. Which size is closest?
- About 0.9 MB
- About 2.9 MB
- About 17.3 MB
- About 8.6 MB
-
Which is the most likely effect of sampling a signal below the Nyquist rate?
- The file becomes longer in duration
- The sound becomes louder without distortion
- The recording gains frequency content above the original
- Frequencies are misrepresented, appearing as lower false frequencies
-
Why is 44.1 kHz chosen as the sampling rate for CD audio?
- It equals exactly twice 20 Hz, the lower limit of human hearing, so the range is covered
- It is above twice the 20 kHz upper limit of human hearing, so audible frequencies can be captured
- It is the lowest rate that a DAC can output, so every recording is made at that rate
- It is the rate at which 8-bit samples fit exactly onto a single standard disk in one pass
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