Toggle menu
Toggle preferences menu
Toggle personal menu
Not logged in
Your IP address will be publicly visible if you make any edits.

Minecraft:Material Reducer: Difference between revisions

From SAS Gaming Wiki
imported>NmF
 
SyncBot (talk | contribs)
Remove broken links to missing pages
Line 11: Line 11:
| lavasusceptible = No
| lavasusceptible = No
}}
}}
The '''material reducer''' is a [[Minecraft:block]] used in chemistry to learn about the natural world, by reducing ''[[Minecraft:Minecraft]]'' blocks to their component [[Minecraft:element]]s.
The '''material reducer''' is a [[Minecraft:block]] used in chemistry to learn about the natural world, by reducing ''Minecraft'' blocks to their component [[Minecraft:element]]s.


== Obtaining ==
== Obtaining ==
Material reducers can be obtained from the [[Minecraft:Creative inventory]]. They cannot be obtained in [[Minecraft:Survival]] without [[Minecraft:commands]]. {{IN|Bedrock}}, the world must also have the "Education Edition" setting enabled.
Material reducers can be obtained from the [[Minecraft:Creative inventory]]. They cannot be obtained in Survival without [[Minecraft:commands]]. {{IN|Bedrock}}, the world must also have the "Education Edition" setting enabled.


=== Breaking ===
=== Breaking ===
Line 24: Line 24:
Using the material reducer opens an interface of 10 [[Minecraft:inventory]] slots. The central slot at the top is the input, where blocks can be placed in order to break them down into their component parts. When this happens, the output slots fill up with the percentage of [[Minecraft:element]]s found in the broken down material.
Using the material reducer opens an interface of 10 [[Minecraft:inventory]] slots. The central slot at the top is the input, where blocks can be placed in order to break them down into their component parts. When this happens, the output slots fill up with the percentage of [[Minecraft:element]]s found in the broken down material.


Certain blocks such as [[Minecraft:soul sand]] and [[Minecraft:netherrack]] contain mysterious elements yet to be discovered. These are represented by an unknown element that displays as other elements, but with a question mark in place of a periodic table symbol. If you take out a few elements, but keep some in too, then the block you placed will have the missing model item, which you cannot place in the inventory.
Certain blocks such as soul sand and [[Minecraft:netherrack]] contain mysterious elements yet to be discovered. These are represented by an unknown element that displays as other elements, but with a question mark in place of a periodic table symbol. If you take out a few elements, but keep some in too, then the block you placed will have the missing model item, which you cannot place in the inventory.


When an element is taken from one of the output slots, the input slot gets cleared, and if there are elements in other output slots, the input slot becomes red and does not accept further input until all of the outputs are cleared.
When an element is taken from one of the output slots, the input slot gets cleared, and if there are elements in other output slots, the input slot becomes red and does not accept further input until all of the outputs are cleared.
Line 159: Line 159:
:{{BlockLink|Magnesium}} x2
:{{BlockLink|Magnesium}} x2
|
|
These elements are all commonly found in [[Wikipedia:silicate mineral|silicate mineral]]s. The abundances of these elements are the average composition of [[Minecraft:w:Earth's_crust|earth's crust]] and close to the average composition of real life [https://www.sciencedirect.com/science/article/abs/pii/B9780080128351500532 Andesite]
These elements are all commonly found in [[Wikipedia:silicate mineral|silicate mineral]]s. The abundances of these elements are the average composition of earth's crust and close to the average composition of real life [https://www.sciencedirect.com/science/article/abs/pii/B9780080128351500532 Andesite]
|-
|-
|
|
Line 264: Line 264:
:{{BlockLink|???}} x38
:{{BlockLink|???}} x38
|
|
The formula implies that Redstone is made out of [[Minecraft:wikipedia:Uranium_carbide|uranium methanide]] and an unknown element, thus it is radioactive.
The formula implies that Redstone is made out of uranium methanide and an unknown element, thus it is radioactive.
|-
|-
|
|
Line 319: Line 319:
:{{BlockLink|???}} x28
:{{BlockLink|???}} x28
|
|
The approximate formula is Si<sub>4</sub>C. Although, it is similar to the mineral SiC ([[Minecraft:w:Silicon_carbide|carborundum]]).
The approximate formula is Si<sub>4</sub>C. Although, it is similar to the mineral SiC (carborundum).
|-
|-
|
|
Line 400: Line 400:
|{{HistoryLine||1.4.0|dev=beta 1.2.20.1|[[File:Material Reducer (N) BE1.png|32px]] [[File:Material Reducer (E) BE1.png|32px]] [[File:Material Reducer (S) BE1.png|32px]] [[File:Material Reducer (W) BE1.png|32px]] Added material reducers.}}
|{{HistoryLine||1.4.0|dev=beta 1.2.20.1|[[File:Material Reducer (N) BE1.png|32px]] [[File:Material Reducer (E) BE1.png|32px]] [[File:Material Reducer (S) BE1.png|32px]] [[File:Material Reducer (W) BE1.png|32px]] Added material reducers.}}
|{{HistoryLine|||dev=beta 1.2.20.2|Pocket UI screens have been added to material reducers.}}
|{{HistoryLine|||dev=beta 1.2.20.2|Pocket UI screens have been added to material reducers.}}
|{{HistoryLine||1.21.30|dev=Preview 1.21.30.23|The different chemistry table type [[Minecraft:block states]] for the <code>chemistry_table</code> ID have been split up into their own IDs.}}
|{{HistoryLine||1.21.30|dev=Preview 1.21.30.23|The different chemistry table type block states for the <code>chemistry_table</code> ID have been split up into their own IDs.}}
|{{HistoryLine||1.21.50|dev=Preview 1.21.50.24|Mining a material reducer without a pickaxe is now faster.}}
|{{HistoryLine||1.21.50|dev=Preview 1.21.50.24|Mining a material reducer without a pickaxe is now faster.}}
}}
}}
Line 427: Line 427:
=== Screenshots ===
=== Screenshots ===
<gallery>
<gallery>
File:International Day of Education.jpeg|A material reducer in front of [[Minecraft:Tundra Brewer]]
File:International Day of Education.jpeg|A material reducer in front of Tundra Brewer
</gallery>
</gallery>


Line 445: Line 445:
[[Category:Blocks with GUI]]
[[Category:Blocks with GUI]]


[[Minecraft:de:Stoffreduzierer]]
de:Stoffreduzierer
[[Minecraft:es:Reductor de materia]]
es:Reductor de materia
[[Minecraft:fr:Déconstructeur de matériaux]]
fr:Déconstructeur de matériaux
[[Minecraft:ja:物質還元器]]
ja:物質還元器
[[Minecraft:ko:물질 분해기]]
ko:물질 분해기
[[Minecraft:pl:Analizator materiałów]]
pl:Analizator materiałów
[[Minecraft:pt:Redutor de Material]]
pt:Redutor de Material
[[Minecraft:ru:Редуктор материала]]
ru:Редуктор материала
[[Minecraft:uk:Розбивач матеріалів]]
uk:Розбивач матеріалів
[[Minecraft:zh:材料分解器]]
zh:材料分解器

Revision as of 15:55, 9 April 2026

Template:Education feature Template:Infobox block The material reducer is a Minecraft:block used in chemistry to learn about the natural world, by reducing Minecraft blocks to their component Minecraft:elements.

Obtaining

Material reducers can be obtained from the Minecraft:Creative inventory. They cannot be obtained in Survival without Minecraft:commands. Template:IN, the world must also have the "Education Edition" setting enabled.

Breaking

A material reducer can be mined with any tool, but Minecraft:pickaxes are faster.

Template:Breaking row

Usage

Using the material reducer opens an interface of 10 Minecraft:inventory slots. The central slot at the top is the input, where blocks can be placed in order to break them down into their component parts. When this happens, the output slots fill up with the percentage of Minecraft:elements found in the broken down material.

Certain blocks such as soul sand and Minecraft:netherrack contain mysterious elements yet to be discovered. These are represented by an unknown element that displays as other elements, but with a question mark in place of a periodic table symbol. If you take out a few elements, but keep some in too, then the block you placed will have the missing model item, which you cannot place in the inventory.

When an element is taken from one of the output slots, the input slot gets cleared, and if there are elements in other output slots, the input slot becomes red and does not accept further input until all of the outputs are cleared.

Any block broken down in the material reducer gives out 100 different elements.

Products
Block/item Components Notes

Template:BlockLink prior to the Wild Update
Template:BlockLink prior to the Wild Update
Template:BlockLink prior to the Wild Update
Template:BlockLink prior to the Wild Update
Template:BlockLink prior to the Wild Update
Template:BlockLink prior to the Wild Update
Template:BlockLink prior to the Wild Update

Template:BlockLink x49
Template:BlockLink x6
Template:BlockLink x44
Template:BlockLink

The formula mirrors the chemical compositions of cellulose, hemicellulose, and lignin, the three main components of wood.

Template:BlockLink
Template:BlockLink

Template:BlockLink x15
Template:BlockLink x70
Template:BlockLink x8
Template:BlockLink x7

These four elements are found in all life forms on Earth.

Template:BlockLink

Template:BlockLink x21
Template:BlockLink x8
Template:BlockLink x3
Template:BlockLink x3
Template:BlockLink x13
Template:BlockLink x6
Template:BlockLink x2
Template:BlockLink x2
Template:BlockLink x42

The results depict dirt as a mixture of inorganic rocks and decaying organic material, although there is too little oxygen to form the compounds found in real-life dirt such as calcium carbonate.

Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink, all variants
Template:BlockLink
Template:BlockLink, all variants
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:ItemLink

Template:BlockLink x33
Template:BlockLink x67

The results approximate SiO2, the chemical formula for silicon dioxide, the mineral quartz. Silicon and oxygen are the primary atomic elements of silicate minerals. Many of these real life rocks are composed of silicate minerals, not just SiO2.

Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x47
Template:BlockLink x28
Template:BlockLink x8
Template:BlockLink x5
Template:BlockLink x4
Template:BlockLink x3
Template:BlockLink x3
Template:BlockLink x2

These elements are all commonly found in silicate minerals. The abundances of these elements are the average composition of earth's crust and close to the average composition of real life Andesite

Template:BlockLink
Template:BlockLink

Template:BlockLink x45
Template:BlockLink x28
Template:BlockLink x8
Template:BlockLink x5
Template:BlockLink x4
Template:BlockLink x3
Template:BlockLink x3
Template:BlockLink x2
Template:BlockLink x2

Similar to regular cobblestone. Mossy cobblestone has carbon to account for the moss.

Template:BlockLink
Template:BlockLink
Template:BlockLink

Template:BlockLink x77
Template:BlockLink x17
Template:BlockLink x3
Template:BlockLink
Template:BlockLink
Template:BlockLink

These results reflect the formulae of many real-life clays, although real-life clay contains much more oxygen.

Template:ItemLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:BlockLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x67
Template:BlockLink x33

The results approximate H2O, the chemical formula for water.

Template:BlockLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x6
Template:BlockLink x50
Template:BlockLink x43
Template:BlockLink

The results mirror the composition of coal, although real-life coal contains much less oxygen.

Template:BlockLink

Template:BlockLink x64
Template:BlockLink x12
Template:BlockLink x24

A mixture of pure (elemental) iron and silicate rock. In real life, iron ore usually contains oxidized iron, so the formula would contain much more oxygen.

Template:BlockLink
Template:BlockLink x64
Template:BlockLink x12
Template:BlockLink x24

A mixture of pure gold and silicate rock. As gold is chemically inert, it is always naturally found in its elemental form.

Template:BlockLink
Template:BlockLink x64
Template:BlockLink x12
Template:BlockLink x24

A mixture of pure carbon and silicate rock. Diamond is composed of pure carbon, and takes billions of years to form deep underground.

Template:BlockLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x13
Template:BlockLink x8
Template:BlockLink x13
Template:BlockLink x53
Template:BlockLink x13

The formula roughly corresponds to lazurite, the main component of lapis lazuli.

Template:BlockLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x31
Template:BlockLink x31
Template:BlockLink x38

The formula implies that Redstone is made out of uranium methanide and an unknown element, thus it is radioactive.

Template:BlockLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x15
Template:BlockLink x25
Template:BlockLink x20
Template:BlockLink x40

The formula roughly corresponds to beryl, the main component of emerald.

Template:ItemLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x100

The results mirror the composition of 100% pure iron.

Template:ItemLink
Template:ItemLink
Template:BlockLink

Template:BlockLink x100

The results mirror the composition of 100% pure gold.

Template:ItemLink
Template:BlockLink

Template:BlockLink x100

The results mirror the composition of 100% pure diamond.

Template:BlockLink
Template:BlockLink x64
Template:BlockLink x18
Template:BlockLink x15
Template:BlockLink x3

A mixture of silicate rock and mercury. Mercury(II) oxide (HgO) is red to orange in color, although these results contain too little oxygen for any of this compound to form.

Template:BlockLink
Template:BlockLink x59
Template:BlockLink x13
Template:BlockLink x28

The approximate formula is Si4C. Although, it is similar to the mineral SiC (carborundum).

Template:BlockLink
Template:ItemLink

Template:BlockLink x20
Template:BlockLink x20
Template:BlockLink x20
Template:BlockLink x20
Template:BlockLink x20

These three gases are noble gases, which are commonly used in neon lights to produce vibrant colors.

Template:BlockLink
Template:BlockLink x37
Template:BlockLink x3
Template:BlockLink x60

Soul sand is mostly composed of an unknown element, due to its paranormal composition.

Template:ItemLink
Template:BlockLink
Template:BlockLink
Template:BlockLink x4

This formula roughly corresponds to Iron (II) sulfate, an inorganic dark dye, which is not found in any species of real-life squid.

Template:ItemLink
Template:BlockLink x6
Template:BlockLink x12
Template:BlockLink x6

The results approximate C6H12O6, the chemical formula for a simple sugar.

Template:ItemLink
Template:BlockLink x7
Template:BlockLink x4
Template:BlockLink

The results approximate C7H4O, the chemical formula for charcoal.

Note that amethyst-related blocks and items, copper-related blocks and items, mud, coarse dirt, raw ore blocks and items, deepslate ores, iron, gold, and diamond equipment, doors, and trapdoors cannot be put into a material reducer, despite them being related to blocks that can.

All compounds that can be made in the compound creator and lab table can also be reduced in the material reducer, yielding their respective ingredients.

Sounds

Template:Sound table/Block/Stone/BE

Data values

ID

Template:ID table

Block states

Template:See also

{{#lst:Compound Creator|block states}}

History

Bedrock Edition

Template:HistoryTable

Minecraft Education

Template:HistoryTable

Issues

Template:Issue list

Trivia

  • There is currently a glitch in the material reducer's GUI: When the input slot becomes red, the "tubes" that are connected to it are sometimes rendered over the red square, which causes the image to flick between the normal square and the tubes.

Gallery

Renders

Screenshots

Other

Navigation

Template:Navbox blocks Template:Navbox Education

de:Stoffreduzierer es:Reductor de materia fr:Déconstructeur de matériaux ja:物質還元器 ko:물질 분해기 pl:Analizator materiałów pt:Redutor de Material ru:Редуктор материала uk:Розбивач матеріалів zh:材料分解器