2. Use Huffman coding to encode these symbols with given frequencies : а: 14 b: 10 What is the average number of bits required to encode a character ? c: 4 d : 24 е:16 f: 32
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A: As per the answering guidelines solving Q1 completely. Q1. 75 = 1001011 A. Sign Magnitude The Most…
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A: The answer is given below:
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A: I have answered all four questions in step 2.
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Q: 1. Use Huffman coding to encode these symbols with given frequencies : a : 0.25 b : 0.12 What is the…
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Q: Question 2: Use Huffman coding to encode these symbols with given frequencies: (a) a : 0.35, b :…
A: The answer of this question is as follows:
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- A(n) __________ is an integer stored in double the normal number of bit positions.271. In Return to Zero (RZ), the signal changes not between bits but a. before the bit b. after the bit c. doesn d. during the bitAssume we wish to create a code using 3 information bits, 1parity bit (appended to the end of the information), and odd parity. List all legal code words in this code. What is the Hammingdistance of your code?
- 1) 0xBEAD (in hex) can be written in decimal (base 10) as: 2) 23.2578125 (decimal) is expressed in binary (base 2) as: Do no use any spaces within your representation. Use 8 bits to represent the integer part, and an additional 8 bits to represent the fractional parts (i.e., 8 bits before the radix point and after the radix point).Write down the bit pattern assuming that we are using base 15 numbers in the fraction instead of base 2. (Base 16 numbers use the symbols 0–9 and A–F. Base 15 numbers would use 0–9 and A–E.) Assume there are 24 bits, and you do not need to normalize. Is this representation exact?1) Using IEEE 754 representation for single precision floating point, give the 32-bit binary encoding for the numbers below.Show the sign, exponent, and mantissa (significand).a. -2.40625b. 11.2265625 2) Given the following binary number: 1101.0111, what will be its decimal numberequivalent?
- 1)Using IEEE 754 representation for single precision floating point, give the 32-bit binary encoding for the numbers below.Show the sign, exponent, and mantissa (significand).a. -2.40625b. 11.2265625 2) Given the following binary number: 1101.0111, what will be its decimal numberequivalent?Please answer parts a, b, and c of this question. Assume we are using the simple model for floating-point representation as given in the text (the representation uses a 14-bit format, 5 bits for the exponent with a bias of 15, a normalized mantissa of 8 bits, and a single sign bit for the number): a) Show how the computer would represent the numbers 100.0 and 0.25 using this floating-point format. b) Show how the computer would add the two floating-point numbers in Part a by changing one of the numbers so they are both expressed using the same power of 2. c) Show how the computer would represent the sum in Part b using the given floating-point representation. What decimal value for the sum is the computer actually storing? Explain.Calculate (3.41796875 *10-3 * 6.34765625 *10-3) by hand, assuming each of the values arestored in the 16-bit half precision format described in in the textbook. Assume 1 guard, 1 roundbit, and 1 sticky bit, and round to the nearest even. Show all the steps, and write your answer inthe 16-bit floating point format.
- Formulate a weighted binary code for the decimal digits, using the following weights: 6, 3, 1, 1Assume we are using the simple model for floating-pointrepresentation as given in the text (the representation uses a 14-bitformat, 5 bits for the exponent with a bias of 15, a normalizedmantissa of 8 bits, and a single sign bit for the number):1. a) Show how the computer would represent the numbers100.0 and 0.25 using this floating-point format.2. b) Show how the computer would add the two floating-pointnumbers in Part a by changing one of the numbers so theyare both expressed using the same power of 2. c) Show how the computer would represent the sum in Partb using the given floating-point representation. Whatdecimal value for the sum is the computer actually storing?Explain.A. How many bits are needed to represent 214(octal) in binary?B. Show the 2’s complement binary (10 bits) representation of (-246)(10)C. Convert the following 2’s complement binary number to decimalrepresentation:10010010