A fixed beam is subjected to a uniformly-distributed load with an intensity of f = 10 N/mm length of L = 200 mm. Now determine th support reaction forces, internal shear forces and moments, then plot its internal shear force and moment diagram. f[N/m] y X

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1. Define the paramters, use L and f as the variables ¶
: #Program to compute and graph a cantilever beam
#subject to Uniformly Distributed Load
import numpy as np
import matplotlib.pyplot as plt
L
'You must use the variables name L and f'
L: Beam length (mm)
'f: Load intensity (N/mm) '
#YOUR CODE HERE
Transcribed Image Text:1. Define the paramters, use L and f as the variables ¶ : #Program to compute and graph a cantilever beam #subject to Uniformly Distributed Load import numpy as np import matplotlib.pyplot as plt L 'You must use the variables name L and f' L: Beam length (mm) 'f: Load intensity (N/mm) ' #YOUR CODE HERE
A fixed beam is subjected to a uniformly-distributed load with an intensity of f = 10 N/mm length of L = 200 mm. Now determine the
support reaction forces, internal shear forces and moments, then plot its internal shear force and moment diagram.
f[N/m]
L
1. Define the paramters, use L and f as the variables
y
X
Transcribed Image Text:A fixed beam is subjected to a uniformly-distributed load with an intensity of f = 10 N/mm length of L = 200 mm. Now determine the support reaction forces, internal shear forces and moments, then plot its internal shear force and moment diagram. f[N/m] L 1. Define the paramters, use L and f as the variables y X
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