This paper brings block-wise pandiagonal magic squares multiples of 4. The representations are in such a way that each block of order 4 is a perfect magic square of order 4 with equal sums. The work is written for the magic square of order 4, 8, 12, ...,32. Applying the same process the results can be extended for further orders. The way these magic squares are constructed, just the knowledge of order 4 magic square is sufficient. This is the same work done by author in 2017
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise bordered magic squares of even number blocks. These ...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
This paper brings block-wise magic squares multiple of 3 and 6. The multiples of 6 means even order ...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
This work is revised version of author's previous work. It brings pandiagonal magic squares of type ...
During past years author worked with \textbf{block-wise bordered} magic squares of even orders. It i...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise bordered magic squares of even orders. It includes b...
During past years author worked with block-wise bordered magic squares of even orders. It includes b...
The idea of magic rectangles is used to bring pandiagonal magic squares of orders 15, 21, 27 and 33,...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise bordered magic squares of even orders. It includes b...
This paper brings idea how we can organize block-wise constructions of magic and bimagic squares. Th...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise bordered magic squares of even number blocks. These ...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
This paper brings block-wise magic squares multiple of 3 and 6. The multiples of 6 means even order ...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
This work is revised version of author's previous work. It brings pandiagonal magic squares of type ...
During past years author worked with \textbf{block-wise bordered} magic squares of even orders. It i...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise bordered magic squares of even orders. It includes b...
During past years author worked with block-wise bordered magic squares of even orders. It includes b...
The idea of magic rectangles is used to bring pandiagonal magic squares of orders 15, 21, 27 and 33,...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise bordered magic squares of even orders. It includes b...
This paper brings idea how we can organize block-wise constructions of magic and bimagic squares. Th...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...
During past years author worked with block-wise bordered magic squares of even number blocks. These ...
During past years author worked with block-wise, bordered and block-bordered magic squares. This wor...