Created
October 15, 2019 00:17
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import math | |
def f(x): # change this to the function of your choice | |
squared = math.pow(x, 2) | |
return math.sqrt(squared+1) | |
a = 0 # start | |
b = 2 # end | |
n = 6 # increase for more accuracy | |
dx = (b-a)/n | |
print(f"dx = {dx}") | |
result = 0 | |
xis = range(n+1) | |
for i in xis: | |
xi = a + (dx*i) | |
t = f(xi) | |
if i == 0 or i == n: | |
result += t | |
print(f"{i}: {t}") | |
elif i%2==1: | |
result += 4 * t | |
print(f"{i}: {t*4}") | |
else: | |
result += 2 * t | |
print(f"{i}: {t*2}") | |
print(f"result: {result}") | |
print(f"dx/3: {dx/3}") | |
result *= (dx/3) | |
print(f"result * (dx/3): {result}") |
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import math | |
def f(x): | |
squared = math.pow(x, 2) | |
return math.sqrt(squared + 1) | |
a = 0 | |
b = 2 | |
n = 26 | |
dx = (b-a)/n | |
xis = range(n+1) | |
print(f"dx = {dx}") | |
result = 0 | |
for i in xis: | |
xi = a+(dx*i) | |
if i == 0 or i == n: | |
t = f(xi) | |
print(f"{i}: {t}") | |
result += t | |
else: | |
t = f(xi) | |
print(f"{i}: {t*2}") | |
result += t | |
print(f"result: {result}") | |
print(f"dx/2: {dx/2}") | |
result *= (dx/2) | |
print(f"result * (dx/2): {result}") |
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