One place where the usage of tuples is convenient is in the representation of matrices. The values in a 2x2 matrix are labeled as follows: [1] Write code that asks the user for a text string including the four numbers, a, b, c, and d, separated by spaces. You can use the split() method on the string to create a list of the four values in order. Create a tuple that represents each row, then create a tuple that contains those two tuples. It should have the form ((a, b), (c, d)). Print this representation. The inverse of the matrix above is given by the formula: d 1 ad-bc-c Recall that multiplying a matrix by a number effectively multiplies each element of the matrix by that number. Compute the inverse of the given matrix, again represented as nested tuples and print this out. Answer format: • The numbers below are fomatted to 4 decimal places but you do not need to do this • The outputted numbers do need to be floats Please enter four numbers separated by spaces: 1 2 3 4 matrix: ((1.0000, 2.0000), (3.0000, 4.0000)) inverse: ((-2.0000, 1.0000), (1.5000, -0.5000))
One place where the usage of tuples is convenient is in the representation of matrices. The values in a 2x2 matrix are labeled as follows: [1] Write code that asks the user for a text string including the four numbers, a, b, c, and d, separated by spaces. You can use the split() method on the string to create a list of the four values in order. Create a tuple that represents each row, then create a tuple that contains those two tuples. It should have the form ((a, b), (c, d)). Print this representation. The inverse of the matrix above is given by the formula: d 1 ad-bc-c Recall that multiplying a matrix by a number effectively multiplies each element of the matrix by that number. Compute the inverse of the given matrix, again represented as nested tuples and print this out. Answer format: • The numbers below are fomatted to 4 decimal places but you do not need to do this • The outputted numbers do need to be floats Please enter four numbers separated by spaces: 1 2 3 4 matrix: ((1.0000, 2.0000), (3.0000, 4.0000)) inverse: ((-2.0000, 1.0000), (1.5000, -0.5000))
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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