Example: Implement the following multiple output function using a suitable Decoder. f,(A, B, C) =Em(0,4,7)+ d(2,3) f, (A, B, C) =Em (1,5,6) f3 (A, B, C) =Em (0,2,4,6)
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- Implement boolean function f(A, B, C, D) =( 0,2,5,8,10, 14) B part :(A, B, C, D) =(2, 6,11)Define a function calc_pyramid_volume with parameters base_length, base_width, and pyramid_height, that returns as a number the volume of a pyramid with a rectangular base.Sample output with inputs: 4.5 2.1 3.0Volume for 4.5 2.1 3.0 is: 9.45Relevant geometry equations:Volume = base area x height x 1/3Base area = base length x base widthDefine a function calc_pyramid_volume with parameters base_length, base_width, and pyramid_height, that returns as a number the volume of a pyramid with a rectangular base.Sample output with inputs: 4.5 2.1 3.0Volume for 4.5 2.1 3.0 is: 9.45Relevant geometry equations:Volume = base area x height x 1/3Base area = base length x base widthImplement the following Boolean function using a multiplexer. Use A, C and D as the select lines, where A is the MSB and D is the LSB. Answer the following questions. Include a systematic solution for you answer, if applicable. 1. Which of the following inputs are not connected to the ground? A. I0 B. I2C. I5D. More than one of the choicesE. None2. Which of the following inputs are connected to the complement of B?A. I0B. I4C. I7D. More than one of the choicesE. None 3. Which of the following inputs are connected to +5V or Vcc?A. I0B. I4C. I6D. More than one of the choicesE. None 4. What is the output when A=1, B=0, C=0 and D=1? A. +5VB. 0VC. B'D. More than one of the choicesE. None
- Implement the following Boolean function using a multiplexer. Use A, C and D as the select lines, where A is the MSB and D is the LSB. Answer the following questions. Include a systematic solution for you answer, if applicable.1. What is the output when A=0, B=1, C=1 and D=0?A. +5VB. 0VC. B’D. More than one of the choicesE. None 2. What is the output when A=0, B=1, C=0 and D=0?A. +5VB. 0VC. BD. More than one of the choicesE. NoneMake a k-map for each output segment (a, b, c, d, e, f, g) and write a Boolean function which describes each output as a function of inputs (and their complements). Fill in the resulting functions below. a:Consider a boolean function with input a, b, c, and d. The value of the inputs can be defined as V = 8*a + 4*b + 2*c + d. The output of this function is true if V mod 4 is 1 or 2 or 3.
- Implement the following Boolean function using a multiplexer. Use A, C and D as the select lines, where A is the MSB and D is the LSB. Answer the following questions. Include a systematic solution for you answer, if applicable.1. Which of the following inputs are not connected to the ground?A. I2B. I5C. I6D. More than one of the choicesE. None 2. Which of the following inputs are connected to B?A. I0B. I1C. I3D. More than one of the choicesE. None 3. Which of the following inputs are connected to +5V or Vcc?A. I3B. I4C. I7D. More than one of the choicesE. None 4. What is the output when A=1, B=0, C=1 and D=0?A. +5VB. 0VC. B’D. More than one of the choicesE. None2. Simplify the following Boolean expressions, using three variable K-maps: (a) F(x,y,z) = xy+x′y′z′+x′yz′ (b) F(x,y,z) = x′y′+yz+x′yz′ (c) F(x,y,z) = x′y+yz′+y′z′Define a function calc_pyramid_volume with parameters base_length, base_width, and pyramid_height, that returns as a number the volume of a pyramid with a rectangular base.Sample output with inputs: 4.5 2.1 3.0Volume for 4.5, 2.1, 3.0 is: 9.45Relevant geometry equations:Volume = base area x height x 1/3Base area = base length x base width.
- 4. Simplify the following Boolean expressions, using four-variable K-maps: (a) A′B′C′D′+AC′D′+B′CD′+A′BCD+BC′D (b) w′z+xz+x′y+wx′zImplement the following Boolean function F, together with the don’t-care conditions d, using no more than two NOR gates: F (A, B, C, D)=Σ(2, 4, 10, 12, 14,) d(A, B, C, D)=Σ(0, 1, 5, 8)Assume that both the normal and complement inputs are available.Computer Science Design a TM to check if the given inputs of two binary strings x and y have the same length. More specifically, q0#x#y|--q1#x#y if x and y have the same length and q0#x#y|--q2#x#y if x and y have different lengths.