PYTHON/JUPYTER NOTEBOOKS Consider the following reaction mechanism: r0 : C3H8 <-> CH3* + C2H5* r1 : C3H8 + H* <-> H2 + C3H7* r2 : C3H7* <-> C3H6 + H* r3 : C2H5* <-> C2H4 + H* r4 : C3H7* <-> C2H4 + CH3* r5 : C2H5* + C3H8 <-> C2H6 + C3H7* r6 : CH3* + C3H8 <-> CH4 + C3H7* r7 : CH3* + C3H7* <-> C3H6 + CH4 n_reactions = 8 Build the stoichiometric matrix, ?, preserving the order of the reactions in the table, print the matrix elements, and show a plot as shown below. Print the list of species. Explain how you built your stoichiometric matrix. [[ 0. 1. 0. 0. 0. -1. 1. 0. 0. 0.] [ 0. 0. 0. 0. 1. -1. 0. 0. -1. 1.] [ 0. 0. 0. 1. -1. 0. 0. 0. 1. 0.] [ 1. -1. 0. 0. 0. 0. 0. 0. 1. 0.] [ 1. 0. 0. 0. -1. 0. 1. 0. 0. 0.] [ 0. -1. 1. 0. 1. -1. 0. 0. 0. 0.] [ 0. 0. 0. 0. 1. -1. -1. 1. 0. 0.] [ 0. 0. 0. 1. -1. 0. -1. 1. 0. 0.]] matrix shape = (8, 10) Note- the output should resemle the matrix above
PYTHON/JUPYTER NOTEBOOKS Consider the following reaction mechanism: r0 : C3H8 <-> CH3* + C2H5* r1 : C3H8 + H* <-> H2 + C3H7* r2 : C3H7* <-> C3H6 + H* r3 : C2H5* <-> C2H4 + H* r4 : C3H7* <-> C2H4 + CH3* r5 : C2H5* + C3H8 <-> C2H6 + C3H7* r6 : CH3* + C3H8 <-> CH4 + C3H7* r7 : CH3* + C3H7* <-> C3H6 + CH4 n_reactions = 8 Build the stoichiometric matrix, ?, preserving the order of the reactions in the table, print the matrix elements, and show a plot as shown below. Print the list of species. Explain how you built your stoichiometric matrix. [[ 0. 1. 0. 0. 0. -1. 1. 0. 0. 0.] [ 0. 0. 0. 0. 1. -1. 0. 0. -1. 1.] [ 0. 0. 0. 1. -1. 0. 0. 0. 1. 0.] [ 1. -1. 0. 0. 0. 0. 0. 0. 1. 0.] [ 1. 0. 0. 0. -1. 0. 1. 0. 0. 0.] [ 0. -1. 1. 0. 1. -1. 0. 0. 0. 0.] [ 0. 0. 0. 0. 1. -1. -1. 1. 0. 0.] [ 0. 0. 0. 1. -1. 0. -1. 1. 0. 0.]] matrix shape = (8, 10) Note- the output should resemle the matrix above
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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PYTHON/JUPYTER NOTEBOOKS
Consider the following reaction
r0 : C3H8 <-> CH3* + C2H5*
r1 : C3H8 + H* <-> H2 + C3H7*
r2 : C3H7* <-> C3H6 + H*
r3 : C2H5* <-> C2H4 + H*
r4 : C3H7* <-> C2H4 + CH3*
r5 : C2H5* + C3H8 <-> C2H6 + C3H7*
r6 : CH3* + C3H8 <-> CH4 + C3H7*
r7 : CH3* + C3H7* <-> C3H6 + CH4
n_reactions = 8
Build the stoichiometric matrix, ?, preserving the order of the reactions in the table, print the matrix elements, and show a plot as shown below. Print the list of species. Explain how you built your stoichiometric matrix.
[[ 0. 1. 0. 0. 0. -1. 1. 0. 0. 0.] [ 0. 0. 0. 0. 1. -1. 0. 0. -1. 1.] [ 0. 0. 0. 1. -1. 0. 0. 0. 1. 0.] [ 1. -1. 0. 0. 0. 0. 0. 0. 1. 0.] [ 1. 0. 0. 0. -1. 0. 1. 0. 0. 0.] [ 0. -1. 1. 0. 1. -1. 0. 0. 0. 0.] [ 0. 0. 0. 0. 1. -1. -1. 1. 0. 0.] [ 0. 0. 0. 1. -1. 0. -1. 1. 0. 0.]] matrix shape = (8, 10)
Note- the output should resemle the matrix above
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