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Editing 23a:Block

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Clear glass blocks have a material value of 5x, considerably more than any type of stone, but in addition to sand, they require [[pearlash]]. Pearlash takes time and effort to produce, but it is made from [[wood]], a renewable resource.
 
Clear glass blocks have a material value of 5x, considerably more than any type of stone, but in addition to sand, they require [[pearlash]]. Pearlash takes time and effort to produce, but it is made from [[wood]], a renewable resource.
  
Crystal glass blocks have a material value of 10x, the same as [[iron]], but they also require rough [[rock crystal]]s which are very limited in supply.
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Metal blocks are not made from renewable resources, like glass blocks are, but they have a few advantages. Blocks of expensive metals can be used to build extremely valuable roads. They can also be used in an exploit to bridge over the magma flow. Bridges over the magma flow must be steel or adamantine. However, the game only looks at the material highest in the material list to determine what a bridge is made of. Metal bars are the last objects in the material list, so this is generally exploited by selecting one bar of steel and building the rest of the bridge out of a low-value metal, such as brass. Blocks are sorted second in the material list, after raw stone but before wood logs and metal bars, so it is possible to bridge the magma flow by selecting one block of steel and building the rest of the bridge from blocks of stone or even wood logs further down the list.
 
 
Metal blocks are not made from renewable resources (unless you count [[goblinite]]), but they have a few advantages. Blocks of expensive metals can be used to build extremely valuable roads. They can also be used in an exploit to bridge over the magma flow. Bridges over the magma flow must be steel or adamantine. However, the game only looks at the material highest in the material list to determine what a bridge is made of. Metal bars are the last objects in the material list, so this is generally exploited by selecting one bar of steel and building the rest of the bridge out of a low-value metal, such as brass. Blocks are sorted second in the material list, after raw stone but before wood logs and metal bars, so it is possible to bridge the magma flow by selecting one block of steel and building the rest of the bridge from blocks of stone or even wood logs further down the list.
 
  
 
Other than the above exploit, metal blocks have no advantages over metal [[bar]]s in building bridges or aqueducts, and they have an additional step in the production process, so it is more efficient to just build with bars instead. They can be used to construct most buildings, while bars cannot (with the sole exception of [[magma forge]]s and the magma [[furnace]]s). However, there is no advantage to making a building out of metal blocks instead of stone or glass. The most impressive trait of metal blocks is that they weigh more than the bar they are made from (250Γ for the block, 200Γ for the bar); they are therefore a useful way to prove the falsehood of the law of conservation of mass.
 
Other than the above exploit, metal blocks have no advantages over metal [[bar]]s in building bridges or aqueducts, and they have an additional step in the production process, so it is more efficient to just build with bars instead. They can be used to construct most buildings, while bars cannot (with the sole exception of [[magma forge]]s and the magma [[furnace]]s). However, there is no advantage to making a building out of metal blocks instead of stone or glass. The most impressive trait of metal blocks is that they weigh more than the bar they are made from (250Γ for the block, 200Γ for the bar); they are therefore a useful way to prove the falsehood of the law of conservation of mass.

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