Lesson 4.5.6.4
4.5.6.4 Bitmapped graphics Quiz: AQA Computer Science, Unit 5
20 questions
In partnership with Revision Ninja
Lesson 4.5.6.4, Bitmapped graphics: 20 multiple choice questions for the AQA Computer Science (7517), Unit 5: Fundamentals of data representation, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
-
What is a pixel?
- A unit that measures the volume of sound in a recording, held as a level in decibels
- The smallest element of a bitmap image, holding a colour value
- A geometric shape stored as a set of coordinates that define its outline and fill colour
- A compressed block of image data, grouped so that a whole region is stored as one value
-
What is colour depth in a bitmap?
- The number of bits stored for each pixel
- The number of pixels across the image
- The number of dots per inch
- The total file size in bytes
-
How does the specification define resolution for a bitmap?
- The size of the file in kilobytes after compression has been applied to the bitmap data
- The number of colours available in the palette used by an indexed colour bitmap image
- The number of dots per inch, where a dot is a pixel
- The number of bits stored for each pixel, which sets how many colours each pixel can show
-
How is the size of an image in pixels calculated?
- Width in pixels multiplied by height in pixels
- Resolution divided by height
- Width in pixels plus height in pixels
- Colour depth multiplied by width
-
Which metadata is typically stored in a bitmap image file?
- The width, height and colour depth
- A list of the sound samples
- The compression ratio of an audio track
- The vector coordinates of every shape
-
What changes when the number of bits per pixel increases?
- The width of the image
- The resolution in dots per inch
- The number of pixels in the image
- The number of colours each pixel can show
-
How many colours can one pixel show with 8 bits of colour depth?
- 128
- 8
- 64
- 256
-
An image is 800 x 600 pixels at 24 bits per pixel. How many bytes does it need, ignoring metadata?
- 1,440,000 bytes
- 11,520,000 bytes
- 1,152,000 bytes
- 480,000 bytes
-
A 1920 x 1080 image has 8 bits per pixel. How many bytes does it need, ignoring metadata?
- 2,073,600 bytes
- 1,036,800 bytes
- 2,073,600 bits
- 16,588,800 bytes
-
A 100 x 100 image has 1 bit per pixel. How many bits does it need?
- 20,000 bits
- 1,000 bits
- 10,000 bits
- 100 bits
-
An image is 3 inches wide at 300 dpi. How many pixels wide is it?
- 100 pixels
- 900 pixels
- 3,000 pixels
- 300 pixels
-
An image's resolution doubles from 150 dpi to 300 dpi at the same physical size, with the same colour depth. How does the file size change?
- It becomes eight times larger, because both dimensions double and the colour depth doubles as well
- It becomes four times larger, since both width and height in pixels double
- It becomes twice as large, because the extra resolution only increases one dimension of the picture
- It stays the same size, since dpi describes how the image prints and does not change the pixel count
-
Halving the colour depth from 24 bits to 12 bits, with the same pixel count, does what to storage?
- It has no effect, since colour depth does not affect storage
- It reduces storage by a quarter
- It halves storage only in JPEG files
- It halves the storage, since storage equals pixels times colour depth
-
A 4 x 4 pixel image has 8 bits per pixel. How many bytes does it need, ignoring metadata?
- 16 bytes
- 4 bytes
- 128 bytes
- 8 bytes
-
How many pixels are in a 640 x 480 image?
- 307,200
- 1,228,800
- 64,000
- 120,480
-
A 1024 x 768 image has 16 bits per pixel. How large is it in KiB, ignoring metadata?
- 768 KiB
- 1536 KiB
- 3072 KiB
- 1024 KiB
-
Why might an image file be larger than the simple storage calculation predicts?
- Pixels are always stored with extra bits for a sign, so every pixel needs one more bit than shown
- Resolution in dpi adds a fixed number of bytes to each pixel that is stored in the file
- It may include metadata such as width, height and colour depth, which the calculation ignores
- Bitmaps are stored as text, which doubles the size of the file compared with binary storage
-
Why does the pixel count, rather than dpi, determine the stored size of a bitmap?
- Dpi is used to calculate the file size in bytes directly, without any reference to the pixels
- Dpi determines the number of bits per pixel, so a higher dpi value always needs more storage
- Storage depends on the number of pixels and bits per pixel, and dpi only describes how the image prints
- Pixel counts never affect the storage size, because the file size depends only on the printer
-
What happens to the pixels when a bitmap is scaled up a great deal?
- The image is converted into vector graphics
- The colour depth doubles for each enlargement
- New detail is added automatically, so the image stays sharp
- Each pixel becomes a visibly larger block, so the image looks pixelated
-
An image has 2^20 pixels at 4 bits per pixel. How many bytes does it need, ignoring metadata?
- 1,048,576 bytes
- 524,288 bytes
- 4,194,304 bytes
- 2,097,152 bytes
Related quizzes
- Natural, rational, irrational and real numbers Quiz · 4.5.1.1 · 20 questions
- Ordinal numbers, counting and measurement Quiz · 4.5.1.6 · 20 questions
- Number bases Quiz · 4.5.2.1 · 20 questions
- Bits and bytes Quiz · 4.5.3.1 · 20 questions
- Unsigned binary Quiz · 4.5.4.1 · 20 questions
- Unsigned binary arithmetic Quiz · 4.5.4.2 · 20 questions
- Signed binary using two's complement Quiz · 4.5.4.3 · 20 questions
- Numbers with a fractional part Quiz · 4.5.4.4 · 20 questions
- Rounding errors Quiz · 4.5.4.5 · 20 questions
- Range, precision and normalisation of floating point Quiz · 4.5.4.7 · 20 questions