figure (1) plot (n,p) random_month = randi ([1 12], 1,1); % genarat a random month 1 to 12 month = random_month (1,1); if (month == 4 || month day = randi ([1 30],1,1); % there are 30 days elseif month == 2 6 || month == 9 || month == 11) == day = randi ([1 28], 1,1); % there are 28 days else day = randi ([1 31], 1,1); % there are 31 days dates = [dates; [month, day]]; end function bnatch module_2b (data) % loop over "data" array for eachvalueindataarray % if count of current element in data array is grater than 1 = data
figure (1) plot (n,p) random_month = randi ([1 12], 1,1); % genarat a random month 1 to 12 month = random_month (1,1); if (month == 4 || month day = randi ([1 30],1,1); % there are 30 days elseif month == 2 6 || month == 9 || month == 11) == day = randi ([1 28], 1,1); % there are 28 days else day = randi ([1 31], 1,1); % there are 31 days dates = [dates; [month, day]]; end function bnatch module_2b (data) % loop over "data" array for eachvalueindataarray % if count of current element in data array is grater than 1 = data
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
Related questions
Question
![Create a flow chart for following math lab code
h = linspace (2,365,364);
p = (1) -exp (-n.^(2)/730);
figure (1)
plot (n,p)
random_month = randi ([1 12], 1,1); % genarat a random month 1 to 12
month = random_month (1,1);
if (month
day = randi ([1 30],1,1); % there are 30 days
%3D
4 || month
6 || month
9 || month
== 11)
==
3D%3D
=3=
elseif month == 2
%3D%3D
day
randi ([1 28], 1,1); % there are 28 days
!!
else
day = randi ([1 31], 1,1); % there are 31 days
dates = [dates; [month, day]];
end
function bnatch = module_2b (data) % loop over "data" array
for eachvalueindataarray = data
% if count of current element in data array is grater than 1
if sum (data == eachvalueindataarray) > 1
% return 1
bnatch=1;
return;
end
% eles, return 0
bnatch = 0;
end
end](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffc490bea-1eea-441c-b075-970ae2705751%2Fb114a635-1569-4029-9fcb-8e6e07c81a5b%2Fd94emt_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Create a flow chart for following math lab code
h = linspace (2,365,364);
p = (1) -exp (-n.^(2)/730);
figure (1)
plot (n,p)
random_month = randi ([1 12], 1,1); % genarat a random month 1 to 12
month = random_month (1,1);
if (month
day = randi ([1 30],1,1); % there are 30 days
%3D
4 || month
6 || month
9 || month
== 11)
==
3D%3D
=3=
elseif month == 2
%3D%3D
day
randi ([1 28], 1,1); % there are 28 days
!!
else
day = randi ([1 31], 1,1); % there are 31 days
dates = [dates; [month, day]];
end
function bnatch = module_2b (data) % loop over "data" array
for eachvalueindataarray = data
% if count of current element in data array is grater than 1
if sum (data == eachvalueindataarray) > 1
% return 1
bnatch=1;
return;
end
% eles, return 0
bnatch = 0;
end
end
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