18. Write the function f2c (t) designed to return the integer value of the nearest degree Celsius for given temperature in Fahrenheit. (hint: you may want to make use of the built-in function, round. Try printing round._doc__ in a Python shell or looking up help for the round function, and experimenting with it until you are comfortable with how it works.) test (f2c(212) 100) # Boiling point of water # Freezing point of water == test (f2c(32) 0) == test (f2c(-40) -40) # Wow, what an interesting case! == test (f2c(36) 2) == test (f2c(37) 3) test (f2c(38) 3) == test (f2c(39) 4) 19. Now do the opposite: write the function c2f which converts Celsius to Fahrenheit: test (c2f(0) 32) 212) == test (c2f(100) == test (c2f(-40) -40) == test (c2f(12) 54) == test (c2f(18) 64) == test (c2f(-48) -54) ==
18. Write the function f2c (t) designed to return the integer value of the nearest degree Celsius for given temperature in Fahrenheit. (hint: you may want to make use of the built-in function, round. Try printing round._doc__ in a Python shell or looking up help for the round function, and experimenting with it until you are comfortable with how it works.) test (f2c(212) 100) # Boiling point of water # Freezing point of water == test (f2c(32) 0) == test (f2c(-40) -40) # Wow, what an interesting case! == test (f2c(36) 2) == test (f2c(37) 3) test (f2c(38) 3) == test (f2c(39) 4) 19. Now do the opposite: write the function c2f which converts Celsius to Fahrenheit: test (c2f(0) 32) 212) == test (c2f(100) == test (c2f(-40) -40) == test (c2f(12) 54) == test (c2f(18) 64) == test (c2f(-48) -54) ==
Chapter8: Advanced Method Concepts
Section: Chapter Questions
Problem 8RQ
Related questions
Question
How to Think Like a Computer Scientist: Learning Python 3.
Chapter 6, Question 18 & 19.
Write the function f2c(t) designed to return the integer value of the nearest degree Celsius for given temperature in Fahrenheit. (hint: you may want to make use of the built-in function, round. Try printing round.__doc__ in a Python shell or looking up help for the round function, and experimenting with it until you are comfortable with how it works.)
Now do the opposite: write the function c2f which converts Celsius to Fahrenheit.

Transcribed Image Text:18. Write the function f2c (t) designed to return the integer value of the nearest degree
Celsius for given temperature in Fahrenheit. (hint: you may want to make use of the
built-in function, round. Try printing round._doc__ in a Python shell or looking
up help for the round function, and experimenting with it until you are comfortable with
how it works.)
# Boiling point of water
# Freezing point of water
test (f2c(212)
100)
==
test (f2c(32)
0)
==
test (f2c(-40)
-40)
# Wow,
what an interesting case!
==
test (f2c(36)
2)
test (f2c(37)
3)
==
test (f2c(38)
3)
test (f2c(39)
4)
19. Now do the opposite: write the function c2f which converts Celsius to Fahrenheit:
test (c2f(0)
32)
test (c2f(100)
212)
test (c2f(-40)
-40)
==
test (c2f(12)
54)
==
test (c2f(18)
64)
==
test (c2f(-48)
-54)
==
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