程序代做CS代考 python Sequences – cscodehelp代写

Sequences

Announcements

Box-and-Pointer Notation

The Closure Property of Data Types
•A method for combining data values satisfies the closure property if: The result of combination can itself be combined using the same method
•Closure is powerful because it permits us to create hierarchical structures
•Hierarchical structures are made up of parts, which themselves are made up of parts, and so on
Lists can contain lists as elements (in addition to anything else)
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Box-and-Pointer Notation in Environment Diagrams
Lists are represented as a row of index-labeled adjacent boxes, one per element
Each box either contains a primitive value or points to a compound value
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Box-and-Pointer Notation in Environment Diagrams
Lists are represented as a row of index-labeled adjacent boxes, one per element
Each box either contains a primitive value or points to a compound value
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Slicing
(Demo)

Slicing Creates
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Processing Container Values

Sequence Aggregation
Several built-in functions take iterable arguments and aggregate them into a value
• sum(iterable[, start]) -> value
Return the sum of an iterable (not of strings) plus the value
of parameter ‘start’ (which defaults to 0). When the iterable is
empty, return start.
• max(iterable[, key=func]) -> value max(a, b, c, …[, key=func]) -> value
With a single iterable argument, return its largest item.
With two or more arguments, return the largest argument.
• all(iterable) -> bool
Return True if bool(x) is True for all values x in the iterable.
If the iterable is empty, return True.
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Recursive Sums

Sum (recursively)
def mysum(L): if (L == []): return 0
else:
return L[0] + mysum( L[1:] )
mysum( [2, 4, 1, 5] )
2 + mysum( [4, 1, 5] )
4 + mysum( [1, 5] )
1 + mysum( [5] )
5 + mysum( [] )
0

# ——— DRILL ———
# Write an iterative function that takes as input
# integer “n” and returns the sum of the first “n”
# integers: sum(5) returns 1+2+3+4+5

# ——— DRILL ———
# Write an iterative function that takes as input
# integer “n” and returns the sum of the first “n”
# integers: sum(5) returns 1+2+3+4+5
def sum_iter(n):
sum = 0
for i in range(0,n+1):
sum = sum + i
return( sum )

# ——— DRILL ———
# Write a recursive function that takes as input
# integer “n” and returns the sum of the first “n”
# integers: sum(5) returns 1+2+3+4+5

# ——— DRILL ———
# Write a recursive function that takes as input
# integer “n” and returns the sum of the first “n”
# integers: sum(5) returns 1+2+3+4+5
def sum_rec(n):
if( n == 0 ):
return(0)
else:
return n + sum_rec(n-1)

Reversing a String

Reversing a List (recursively)
reverse(“ward”) = “draw”
reverse(“ward”) = reverse(“ard”) + “w”
reverse(“ard”) = reverse(“rd”) + “a”
reverse(“rd”) = reverse(“d”) + “r”
reverse(“d”) = “d”

Reversing a List (recursively)
reverse(“ward”) = “draw”
reverse(“ward”) = reverse(“ard”) + “w”
reverse(“ard”) = “d” + “r” + “a”

Reversing a List (recursively)
def reverse(s):
if len(s) == 1:
return s
else:
return reverse(s[1:]) + s[0]

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