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Pulse code modulation (PCM) is used to encode live music as an uncompressed digital audio file - AQA - A-Level Physics - Question 3 - 2020 - Paper 8

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Pulse code modulation (PCM) is used to encode live music as an uncompressed digital audio file. Sampling of the analogue signal is carried out at 44.1 kHz. A 16-bit ... show full transcript

Worked Solution & Example Answer:Pulse code modulation (PCM) is used to encode live music as an uncompressed digital audio file - AQA - A-Level Physics - Question 3 - 2020 - Paper 8

Step 1

Explain why the sampling frequency used is suitable for this task.

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Answer

The sampling frequency of 44.1 kHz is suitable because it is greater than twice the maximum frequency of human hearing (20 kHz), according to the Nyquist theorem. This ensures that the audio is sampled adequately to preserve the quality of the sound.

Step 2

Calculate the number of quantisation levels available on a 16-bit encoding system.

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Answer

The number of quantisation levels in a 16-bit encoding system is calculated using the formula 2n2^{n}, where nn is the number of bits. Therefore, for 16 bits, the number of quantisation levels is 216=65,5362^{16} = 65,536.

Step 3

Calculate the size, in megabytes, of the digital file needed to store this recording.

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To calculate the size of the digital file, we use the formula:

File Size=Duration (in seconds)×Sampling Rate (Hz)×Bit Depth×Number of Channels\text{File Size} = \text{Duration (in seconds)} \times \text{Sampling Rate (Hz)} \times \text{Bit Depth} \times \text{Number of Channels}

In this case:

  • Duration: 3.5 minutes = 210 seconds
  • Sampling rate: 44,100 Hz
  • Bit depth: 16 bits
  • Number of channels: 2 (stereo)

Thus, the file size in bits is:

210×44,100×16×2=2,943,000,000 bits210 \times 44,100 \times 16 \times 2 = 2,943,000,000 \text{ bits}

To convert this to megabytes:

File Size (MB)=2,943,000,0008×1,024×1,024348.93 MB\text{File Size (MB)} = \frac{2,943,000,000}{8 \times 1,024 \times 1,024} \approx 348.93 \text{ MB}

Step 4

Compare the quality of the music heard by the telephone caller with that of the original file heard when played directly from a compact disc.

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Answer

The music heard by the telephone caller will have lower quality compared to that of the original audio file from a compact disc. This is due to the limited bandwidth of 0.3 kHz – 3.4 kHz used for telephone calls, which cuts off higher frequencies, resulting in a loss of audio fidelity. In contrast, compact discs can reproduce a full audio range up to 20 kHz, allowing for richer sound and clarity.

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