This solution is outdated. To rescore this solution, sign in.
I had to add an extra if-clause because the assertion isn't particularly forgiving about its definition of an "empty matrix".
Test | Status | Code Input and Output |
---|---|---|
1 | Pass |
%%
x = [];
y_correct = [];
assert(isequal(common_by_row(x),y_correct))
|
2 | Pass |
%%
x = [1e100; 1e100];
y_correct = [1e100];
assert(isequal(common_by_row(x),y_correct))
|
3 | Pass |
%%
x = [1; 2];
y_correct = [];
assert(isequal(common_by_row(x),y_correct))
|
4 | Pass |
%%
x = ones(10);
y_correct = [1];
assert(isequal(common_by_row(x),y_correct))
|
5 | Pass |
%%
x = magic(10);
y_correct = [];
assert(isequal(common_by_row(x),y_correct))
|
6 | Pass |
%%
x = wilkinson(9);
y_correct = [0 1];
assert(isequal(common_by_row(x),y_correct))
|
7 | Pass |
%%
x = [3 -2 1 NaN; NaN 0 -2 3];
y_correct = [-2 3];
assert(isequal(common_by_row(x),y_correct))
|
1223 Solvers
739 Solvers
Get the area codes from a list of phone numbers
532 Solvers
Project Euler: Problem 10, Sum of Primes
707 Solvers
Solve a System of Linear Equations
3456 Solvers
Find the treasures in MATLAB Central and discover how the community can help you!
Start Hunting!