Programmer Guide/Command Reference/EVAL/vmcol: Difference between revisions
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{{DISPLAYTITLE:{{SUBPAGENAME}}}} | {{DISPLAYTITLE:{{SUBPAGENAME}}}} | ||
Create a matrix by merging columns of source vectors and/or matrices. | |||
;Usage: '''<code><var>vmcol(x1</var> {, <var>x2</var> {, .. }})</code>''' | |||
:;<var>x1</var>, <var>x2</var>, ..: source vectors and/or matrices with the same number of rows | |||
;Result: A matrix with <code>nrow(''x1'')</code> rows. The columns of arguments are merged from left to right. | |||
;See also: [[Programmer_Guide/Command_Reference/EVAL/vv|vv]], [[Programmer_Guide/Command_Reference/EVAL/vvset|vvget]], [[Programmer_Guide/Command_Reference/EVAL/vvset|vvset]], [[Programmer_Guide/Command_Reference/EVAL/vvcat|vvcat]], [[Programmer_Guide/Command_Reference/EVAL/vmrow|vmrow]], [[Programmer_Guide/Command_Reference/EVAL/vsubn|vsubn]], [[Programmer_Guide/Command_Reference/EVAL/vsubc|vsubc]] | |||
Example: | |||
<pre> | |||
#a := eval vv(1,2,3,4,5) | |||
#b := eval init(5,2,0) | |||
#c := eval vmcol($#a, $#b, $#a) | |||
// -> #c[*,0] = $#a, $#c[*,1] = $#b[*,0], $#c[*,2] = $#b[*,1], $#c[*,3] = $#a | |||
</pre> | |||
[[Programmer_Guide/Command_Reference/EVAL#Functions|<function list>]] | |||
=====vmcol===== | =====vmcol===== | ||
Revision as of 08:30, 6 April 2011
Create a matrix by merging columns of source vectors and/or matrices.
- Usage
vmcol(x1 {, x2 {, .. }})
- x1, x2, ..
- source vectors and/or matrices with the same number of rows
- Result
- A matrix with
nrow(x1)
rows. The columns of arguments are merged from left to right. - See also
- vv, vvget, vvset, vvcat, vmrow, vsubn, vsubc
Example:
#a := eval vv(1,2,3,4,5) #b := eval init(5,2,0) #c := eval vmcol($#a, $#b, $#a) // -> #c[*,0] = $#a, $#c[*,1] = $#b[*,0], $#c[*,2] = $#b[*,1], $#c[*,3] = $#a
vmcol
vmcol(x1M, x2M,...) | Create a matrix using the matrices x1M, x2M,... (the matrices must have the same number of rows as arguments). |
vmcol(x1V, x2V,...) | Create a matrix using the vectors x1v, x2v, .. (vectors with the same length) - one vector per column.The result is: a matrix (the number of vector elements * the number of vectors) |