Lumatone mapping for 44edo: Difference between revisions
ArrowHead294 (talk | contribs) mNo edit summary |
ArrowHead294 (talk | contribs) mNo edit summary |
||
| Line 5: | Line 5: | ||
Slicing the perfect 5th or 4th in half are also fairly good options, although the semiquartal one does not cover the whole gamut unless expanded from the [[4L 1s]] mapping to the [[5L 4s]] one. Additionally, the [[5L 4s]] MOS has an 8:1 step ratio, making it very lopsided. | Slicing the perfect 5th or 4th in half are also fairly good options, although the semiquartal one does not cover the whole gamut unless expanded from the [[4L 1s]] mapping to the [[5L 4s]] one. Additionally, the [[5L 4s]] MOS has an 8:1 step ratio, making it very lopsided. | ||
{{Lumatone EDO mapping|n=44|start=33|xstep=5|ystep=3}} | {{Lumatone EDO mapping|n=44|start=33|xstep=5|ystep=3}} | ||
{{Lumatone EDO mapping|n=44|start=23|xstep=9|ystep=-1}} | {{Lumatone EDO mapping|n=44|start=23|xstep=9|ystep=-1}} | ||
{{Lumatone EDO mapping|n=44|start=0|xstep=8|ystep=-7}} | {{Lumatone EDO mapping|n=44|start=0|xstep=8|ystep=-7}} | ||
However, it is the [[Diaschismic_family#Hemifourths|Hemifourths]] mapping that combines the widest range that covers the full gamut with the most efficient way of reaching all prime harmonics up to 17. | However, it is the [[Diaschismic_family#Hemifourths|Hemifourths]] mapping that combines the widest range that covers the full gamut with the most efficient way of reaching all prime harmonics up to 17. | ||
{{Lumatone EDO mapping|n=44|start=1|xstep=9|ystep=-5}} | {{Lumatone EDO mapping|n=44|start=1|xstep=9|ystep=-5}} | ||
{{Navbox Lumatone}} | {{Navbox Lumatone}} | ||