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London | 25-SDC-July | Priscilla Emebo | Sprint 1 | Number systems #93
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| Original file line number | Diff line number | Diff line change |
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@@ -5,61 +5,126 @@ Do not convert any binary numbers to decimal when solving a question unless the | |
| The goal of these exercises is for you to gain an intuition for binary numbers. Using tools to solve the problems defeats the point. | ||
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| Convert the decimal number 14 to binary. | ||
| Answer: | ||
| Answer: Divide by 2 and record the remainders, then write the remainders in reverse order | ||
| 14 / 2 = 7 R 0 | ||
| 7 / 2 = 3 R 1 | ||
| 3 / 2 = 1 R 1 | ||
| 1 / 2 = 0 R 1 | ||
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| 1110 | ||
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| Convert the binary number 101101 to decimal: | ||
| Answer: | ||
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| 2^0 x 1 = 1 | ||
| 2^1 x 0 = 0 | ||
| 2^2 x 1 = 4 | ||
| 2^3 x 1 = 8 | ||
| 2^4 x 0 = 0 | ||
| 2^5 x 1 = 32 | ||
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| 1 + 0 + 4 + 8 + 0 + 32 = 45 | ||
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| Which is larger: 1000 or 0111? | ||
| Answer: | ||
| Answer: 1000 is larger than 111 | ||
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| Which is larger: 00100 or 01011? | ||
| Answer: | ||
| Answer: 01011 is larger because 1011 is larger than 100 | ||
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| What is 10101 + 01010? | ||
| Answer: | ||
| Answer: | ||
| 1 0 1 0 1 | ||
| + 0 1 0 1 0 | ||
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| Adding from right to left | ||
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| 1 + 0 = 1 | ||
| 0 + 1 = 1 | ||
| 1 + 0 = 1 | ||
| 0 + 1 = 1 | ||
| 1 + 0 = 1 | ||
| 11111 | ||
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| What is 10001 + 10001? | ||
| Answer: | ||
| 1 0 0 0 1 | ||
| + 1 0 0 0 1 | ||
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| Adding from right to left | ||
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| 1 + 1 = 10 = 0 carry 1 | ||
| 0 + 0 + carry 1 = 1 | ||
| 0 + 0 = 0 | ||
| 0 + 0 = 0 | ||
| 1 + 1 = 10 | ||
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| 100010 | ||
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| What's the largest number you can store with 4 bits, if you want to be able to represent the number 0? | ||
| Answer: | ||
| Answer: 1111 | ||
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| How many bits would you need in order to store the numbers between 0 and 255 inclusive? | ||
| Answer: | ||
| Answer: 8 | ||
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| How many bits would you need in order to store the numbers between 0 and 3 inclusive? | ||
| Answer: | ||
| Answer: 2 | ||
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| How many bits would you need in order to store the numbers between 0 and 1000 inclusive? | ||
| Answer: | ||
| Answer: 10 | ||
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| How can you test if a binary number is a power of two (e.g. 1, 2, 4, 8, 16, ...)? | ||
| Answer: | ||
| Answer: | ||
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| Convert the decimal number 14 to hex. | ||
| Answer: | ||
| Answer: E | ||
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| Convert the decimal number 386 to hex. | ||
| Answer: | ||
| Answer: 386 / 16 = 24 R 2 | ||
| 24 / 16 = 1 R 8 | ||
| 1 / 16 = 0 R 1 | ||
| = 0x182 | ||
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| Convert the hex number 386 to decimal. | ||
| Answer: | ||
| Going from right to left | ||
| 16^0 x 6 = 1 x 6 = 6 | ||
| 16^1 x 8 = 16 x 8 = 128 | ||
| 16^2 x 3 = 256 x 3 = 768 | ||
| 768 + 128 + 6 = 902 | ||
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| Convert the hex number B to decimal. | ||
| Answer: | ||
| Answer: 11 | ||
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| If reading the byte 0x21 as a number, what decimal number would it mean? | ||
| Answer: | ||
| Answer: | ||
| 16^0 x 1 = 1 x 1 = 1 | ||
| 16^1 x 2 = 16 x 2 = 32 | ||
| 32 + 1 = 33 | ||
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| If reading the byte 0x21 as an ASCII character, what character would it mean? | ||
| Answer: | ||
| Answer: ! | ||
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| If reading the byte 0x21 as a greyscale colour, as described in "Approaches for Representing Colors and Images", what colour would it mean? | ||
| Answer: | ||
| Answer: 0x21 = 33 | ||
| The value of 33 out of 255 will be dark grey | ||
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| If reading the bytes 0xAA00FF as an RGB colour, as described in "Approaches for Representing Colors and Images", what colour would it mean? | ||
| Answer: | ||
| Answer: There's more blue, less red and no green = Bluish-purple | ||
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| If reading the bytes 0xAA00FF as a sequence of three one-byte decimal numbers, what decimal numbers would they be? | ||
| Answer: | ||
| Answer: 170, 0, 255 | ||
| 0xAA | ||
| A = 10 | ||
| 16^0 x 10 = 1 x 10 = 10 | ||
| 16^1 x 10 = 16 x 10 = 160 | ||
| 160 + 10 = 170 | ||
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| 0x00 | ||
| = 0 | ||
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| 0xFF | ||
| F = 15 | ||
| 16^0 x 15 = 1 x 15 = 15 | ||
| 16^1 x 15 = 16 x 15 = 240 | ||
| 240 + 15 = 255 | ||
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What would this be in the decimal number format?
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15