Difference between revisions of "Sun Steel"
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{{Template:ItemInfo|weight=1|bulk=1|image=Sun_Steel.PNG|description=Sun Steel alloy made in a Reactory.}} | {{Template:ItemInfo|weight=1|bulk=1|image=Sun_Steel.PNG|description=Sun Steel alloy made in a Reactory.}} | ||
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==Uses== | ==Uses== | ||
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* May be made into items on an [[anvil]] using [[Blacksmithing]](max 240 hits) | * May be made into items on an [[anvil]] using [[Blacksmithing]](max 240 hits) | ||
* 4 needed to make a batch of [[Thoth's Metal]] in a [[Reactory]] | * 4 needed to make a batch of [[Thoth's Metal]] in a [[Reactory]] | ||
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==Research and Tuition== | ==Research and Tuition== | ||
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* ''700 for [[Advanced Metallurgy 3]] research at a [[University of Harmony]]'' | * ''700 for [[Advanced Metallurgy 3]] research at a [[University of Harmony]]'' | ||
* ''500 required to research [[Advanced Blacksmithing 2]] at [[University of Art]]'' | * ''500 required to research [[Advanced Blacksmithing 2]] at [[University of Art]]'' |
Revision as of 05:01, 14 July 2018
Source
An Alloy made from Steel, Brass and Bronze in a Reactory. Requires Advanced Metallurgy 2 Technology from the University of Harmony.
Cost
- 7 Steel
- 3 Brass
- 3 Bronze
- 1 Resin:Umbrella Palm
Uses
- May be made into items on an anvil using Blacksmithing(max 240 hits)
- 4 needed to make a batch of Thoth's Metal in a Reactory
- 4 needed to build a Crematory
- 8 needed to make 1 Sun Steel Sheeting
Research and Tuition
- 700 for Advanced Metallurgy 3 research at a University of Harmony
- 500 required to research Advanced Blacksmithing 2 at University of Art
- 500 required for Gear Casting 3 research
Yields
Crystall- ization |
Batch Size | Efficiency | |||
---|---|---|---|---|---|
1x | 2x | 4x | 7x | ||
10% | 0 | 0 | 0 | 0 | 0 |
20% | 0 | 0 | 0 | 0 | 0 |
30% | 0 | 0 | 0 | 0 | 0 |
40% | 2 | 4 | 7 | 13 | 0.143 |
50% | 4 | 7 | 15 | 26 | 0.286 |
60% | 6 | 11 | 22 | 39 | 0.429 |
70% | 7 | 15 | 30 | 52 | 0.571 |
80% | 9 | 19 | 37 | 65 | 0.714 |
90% | 11 | 22 | 45 | 78 | 0.857 |
100% | 13 | 26 | 52 | 91 | 1.000 |
Efficiency is debens of alloy produced divided by the total debens of input metals.
Related Pages
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