def foo(man): INF Ξ1000000 def boom(ma, lax, lay, na): if na == 1: return ma[lax][lay] if na == 0: return -INF h = na // 2 ual = boom(ma, lax, lay, na - = boom (ma, lax + h, lay, na - h) bal = boom ( ma, lax, lay + h, na - h) bar = boom(ma, lax + h, lay + h, na - h) return max(ual, uar, bal, bar) return boom(man, 0, 0, len (man)) ·h) uar Currently foo(man) creates 4 partitions. How would increasing the number of partitions affect the runtime and space needed? How about decreasing the partitions?

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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I definitely want to learn. Please explain briefly. 

def foo(man):
INF = 1000000
def boom(ma, lax, lay, na):
if na == 1:
return ma[lax][lay]
if na
== 0:
return -INF
na // 2
ual = boom (ma, lax, lay, na - h)
uar = boom ( ma, lax + h, lay, na - h)
bal =
h
%D
boom (ma, lax, lay + h, na - h)
bar = boom (ma, lax + h, lay + h, na - h)
return max (ual, uar, bal, bar)
return boom (man, 0, 0, len (man))
Currently foo(man) creates 4 partitions. How would increasing the
number of partitions affect the runtime and space needed? How
about decreasing the partitions?
Transcribed Image Text:def foo(man): INF = 1000000 def boom(ma, lax, lay, na): if na == 1: return ma[lax][lay] if na == 0: return -INF na // 2 ual = boom (ma, lax, lay, na - h) uar = boom ( ma, lax + h, lay, na - h) bal = h %D boom (ma, lax, lay + h, na - h) bar = boom (ma, lax + h, lay + h, na - h) return max (ual, uar, bal, bar) return boom (man, 0, 0, len (man)) Currently foo(man) creates 4 partitions. How would increasing the number of partitions affect the runtime and space needed? How about decreasing the partitions?
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