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Difference between revisions of "Water Metal"

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|  54% ||  4  ||      ||      ||  28 || 0.286
 
|  54% ||  4  ||      ||      ||  28 || 0.286
 
|-
 
|-
|  63% ||  6  ||      ||     ||  42  || 0.429
+
|  63% ||  6  ||      ||   24  ||  42  || 0.429
 
|-
 
|-
|  72% ||  8  ||      ||     ||  56  || 0.571
+
|  72% ||  8  ||      ||     32 ||  56  || 0.571
 
|-
 
|-
|  81% || 10  ||  20  ||     ||  70  || 0.714
+
|  81% || 10  ||  20  ||     40 ||  70  || 0.714
 
|-
 
|-
|  90% ||    ||      ||     ||  84  || 0.857
+
|  90% ||    ||      ||     48 ||  84  || 0.857
 
|-
 
|-
| 100% || 14  ||      ||     ||  98  || 1.000
+
| 100% || 14  ||      ||   56  ||  98  || 1.000
 
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Revision as of 22:07, 30 April 2020



Water Metal
Water Metal
(Item)


Sources

Made in a Reactory. Requires Metalurgy 3 Technology from the University of Natural Philosophy

Cost

Uses

Research and Tuition

Yields

Crystall-
ization
Batch Size Efficiency
1x 2x 4x 7x
9% 0 0 0
18% 0 0
27% 0 0 0
36% 0 0 0
45% 14 0.143
54% 4 28 0.286
63% 6 24 42 0.429
72% 8 32 56 0.571
81% 10 20 40 70 0.714
90% 48 84 0.857
100% 14 56 98 1.000

Efficiency is debens of alloy produced divided by the total debens of input metals.

Related Pages

Alloys