How to Calculate Uncertainty Errors in Derived Quantities?

AI Thread Summary
The discussion focuses on calculating the derived quantities Z from given measurements of x and y, along with their uncertainties. The user attempts various calculations for Z using operations like addition, subtraction, multiplication, and division, but expresses frustration over incorrect results. They seek assistance in understanding the correct methodology for these calculations, particularly in the context of uncertainty propagation. A resource is shared for further reading on the theory behind uncertainty calculations. The conversation highlights the challenges faced when revisiting physics concepts after a hiatus.
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After measurements, the following values and their uncertainties were recorded:

x = 8.3 ± 0.1 and y = 2.72 ± 0.07

Find the following values of Z

a) Z = x + y

b) Z = x - y

c) Z = xy

d) Z = x/y

e) Z = y/[(x)^0.5] (this is y divided by the square root of x)

f) Z = exp(y)

g) Z = ln(x + y)

h) tan(x/y)

My attempts: a) 11.02 ± 0.17 ; b) 5.4 ± 0.2 ; c) 22.576 ± 0.007 ; d) 3.1 ± 1.4 ; e) 0.94 ± 0.22 ; f) exp(2.72 ± 0.07) ; g) ln(11.02 ± 0.17) ; h) tan(3.1 ± 1.4)

Any help would be appreciative, I'm a bit rusty, having not done any physics in two years, and apparently, my attempts are all incorrect!
 
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Thank you, I'll have a read of that, I have a recommended textbook entitled measurements and their uncertainties, but it doesn't have any of this fundamental stuff in, I'm finding it really annoying! :(
 
No more help guys?
 
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