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  • {{ infobox Element | icon = PHOT.png
    10 KB (1,337 words) - 21:41, 28 April 2024

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  • == Element Categories == {{MaterialBtn|PHOT}}
    11 KB (1,431 words) - 20:11, 15 April 2024
  • Setting 0x2 will draw a graph showing the percentages of each type of element on the screen.<br/> === tpt.element ===
    27 KB (4,178 words) - 21:01, 10 March 2024
  • *In-game element editor that allows you to edit any element property as per your need. *PRMT: Promethium, a radioactive element
    33 KB (4,712 words) - 10:33, 17 January 2024
  • |31||PHOT||Energy||none||none||0||-1||251 | number || element name || state || Low temp. trans. point || High temp. trans. point || hardn
    10 KB (1,049 words) - 01:04, 7 December 2023
  • {{Languages|Element:QRTZ}} {{ infobox Element
    3 KB (442 words) - 01:06, 30 December 2022
  • ..., then create a new element file in src/simulation/elements based on other element files in the same directory, add it to the list in src/simulation/elements/ ...2WTFMRG9lYWs&export=download here]. The color will be the same as the HEAT element, and it will be an indestructible solid in the special menu, that transfers
    11 KB (1,896 words) - 11:33, 14 March 2022
  • === [[File:LCRY.png|LCRY]] [[Element:LCRY|Liquid Crystal]] === ...o pass through slowly when charged. Liquid Crystal will turn into molten [[Element:GLAS| GLAS]] at extremely high temperatures.
    5 KB (839 words) - 11:34, 14 March 2022
  • {{MaterialBtn|METL}} [[Element:METL|Metal]] {{MaterialBtn|SPRK}} [[Element:SPRK|Spark]]
    12 KB (1,555 words) - 10:12, 25 March 2023
  • ! Element Conductivity !! Element Name |251 || {{MaterialBtn|PHOT}}
    6 KB (658 words) - 15:21, 27 November 2023
  • Links for tutorials that concern element usage. [[Element:PHOT| Using PHOT]]
    553 bytes (66 words) - 18:37, 21 December 2023
  • {{ infobox Element {{MaterialBtn|PHOT}} + {{MaterialBtn|GPMP}} → {{MaterialBtn|GRVT}}
    1 KB (145 words) - 17:17, 31 March 2024
  • {{ infobox Element | icon = PHOT.png
    10 KB (1,337 words) - 21:41, 28 April 2024
  • ...idea behind it is very simple. First, you make a pixel of clone and select PHOT from the menu, and then click on the pixel of clone. Photons can pass through clone element as well, which means that clone that produces photons can be lined up with
    2 KB (323 words) - 10:37, 18 October 2013
  • === {{MaterialBtn|NEUT}} [[Element:NEUT|Neutrons]] === === {{MaterialBtn|PLUT}} [[Element:PLUT|Plutonium]] ===
    16 KB (2,593 words) - 22:31, 14 April 2024
  • {{ infobox Element * {{MaterialBtn | PHOT}} &rarr; {{MaterialBtn | NEUT}} - when passing through unpressurised INVS
    2 KB (346 words) - 04:53, 26 December 2022
  • More relevantly, you can use the keyword "All" or even an element name in place of that number. So the command: * Type: This sets a particle's identity. You can use this to change what an element is.
    12 KB (2,157 words) - 22:51, 28 December 2023
  • ^ Element ^ Leitfähigkeit ^ | PHOT | 251 |
    2 KB (197 words) - 19:47, 28 September 2011
  • Ctrl + = removes all sparks from the screen and resets them to the element they were before. They will sometimes come back if there is BTRY or somethi === [[File:METL.png|METL]] [[Element:METL|Metal]] ===
    13 KB (2,129 words) - 01:17, 28 October 2023
  • === [[File:GAS.png|GAS]] [[Element:GAS|Gas]] === === [[File:WTRV.png|WTRV]] [[Element:WTRV|Water vapor]] ===
    8 KB (1,170 words) - 22:59, 19 March 2024
  • === [[File:WATR.png|WATR]] [[Element:WATR|Water]] === WATR evaporates to [[Element:WTRV|WTRV]] at any T ≥ [+99.86 + 2P] ''C'' \ [373.01 + 2P] ''K'' .
    13 KB (1,906 words) - 21:21, 20 August 2023
  • Each element in TPT has properties associated with it that apply to all particles of tha ...s is actually only used when heat sim is off, to make it actually melt use element transitions.
    15 KB (2,395 words) - 18:27, 10 December 2023
  • === [[File:URAN.png|URAN]] [[Element:URAN|Uran]] === === [[File:PLUT.png|PLUT]] [[Element:PLUT|Pluton]] ===
    20 KB (3,139 words) - 04:52, 11 June 2019
  • {{ infobox Element {{Material|ISOZ}} or {{Material|ISZS}} will become PLUT and {{Material|PHOT}} upon contact with {{Material|PTNM}}.
    3 KB (344 words) - 05:59, 27 April 2024
  • Sallii fotoneiden [PHOT] päästä läpi, jos LCRY on päälle. LCRY muuttuu rikkinäiseksi lasiksi See [[:using_dlay_element| DLAY element tutorial for more information]]
    4 KB (554 words) - 05:41, 25 April 2019
  • {{ infobox Element ...ent:ELEC|electrons]], hydrogen and [[Element:OXYG|OXYG]] are formed from [[Element:WATR|water]]. Hydrogen has a 2/3 chance of being produced, oxygen has a 1/3
    4 KB (552 words) - 06:59, 16 December 2022
  • === [[File:INVS.png|INVS]] [[Element:INVS|Invisible]] === ..., INVS becomes intangible, allowing particles to pass through like E-wall. PHOT can pass through and be transformed into NEUT, but only when unpressurized.
    6 KB (925 words) - 02:59, 31 May 2022
  • {{ infobox Element PHOT can pass through while LCRY is activated.
    2 KB (187 words) - 16:44, 27 July 2023
  • {{ infobox Element ...IRON]] or hit with [[Element:ELEC|electrons]], the water will split, and [[Element:HYGN|hydrogen]] and '''oxygen''' is formed. Oxygen has a 1/3 chance, when h
    2 KB (317 words) - 04:34, 11 January 2022
  • {{ infobox Element NBLE is a gaseous element that can undergo fusion. NBLE is the second stage in the nuclear fusion pro
    2 KB (224 words) - 04:04, 27 October 2023
  • Oto tabela przewodności cieplnej wszystkich elementów Powder Toya. ! Konduktywność !! Element
    3 KB (392 words) - 01:43, 27 March 2019
  • {{Languages|Element:SPRK}} {{ infobox Element
    4 KB (524 words) - 06:07, 25 April 2024
  • === [[File:INVS.png|INVS]] [[Element:INVS|Invisible]] === ...aje niematerialne, dzięki czemu cząstki przechodzą przez podobne E-mur. PHOT może przejść i być przekształcony Neut, ale tylko wtedy, gdy on ścisk
    3 KB (429 words) - 11:46, 28 July 2017
  • === [[File:PHOT.png|PHOT]] [[Element:PHOT|Photons (γ)]] === === [[File:NEUT.png|NEUT]] [[Element:NEUT|Neutrons (n)]] ===
    7 KB (1,131 words) - 10:15, 1 December 2023
  • {{ infobox Element ...give it energy is through energy particles. It can absorb {{MaterialBtn | PHOT}}, {{MaterialBtn | NEUT}}, {{MaterialBtn | ELEC}}, and {{MaterialBtn | PROT
    4 KB (631 words) - 15:25, 28 November 2023
  • {{Languages|Element:ELEC}} {{ infobox Element
    2 KB (225 words) - 07:16, 6 December 2023
  • ...8 방향으로 뻗어나가며 [[Element:GLAS | 유리]]에 굴절되며 [[Element:QRTZ | 석영]]에 굴절 및 반사로 흩어진다. * {{MaterialBtn | ELEC}} 전자이다. 전도체에 닿으면 [[Element:SPRK | 전류]]를 발생시키며 양성자 및 중성자에 닿으면...
    3 KB (61 words) - 00:36, 25 May 2020
  • ...fically designed to cope with this (such as multiple energy particles like PHOT and NEUT in the same place). ...tion is very similar to sim.partID, but excludes energy particles (such as PHOT, NEUT, ELEC).
    32 KB (4,934 words) - 04:14, 30 March 2024
  • {{ infobox Element When a {{material|PHOT}} passes through GPMP, it turns into {{material|GRVT}}. The tmp of the crea
    1 KB (179 words) - 17:10, 31 March 2024
  • |+ {{ infobox Element * Any energy particles like {{MaterialBtn|PHOT}}, {{MaterialBtn|PROT}}, {{MaterialBtn|NEUT}}, {{MaterialBtn|ELEC}} or {{Ma
    3 KB (329 words) - 06:42, 7 November 2022
  • {{ infobox Element ...passing through it. FILT can also change the color of passing {{Material| PHOT}} and BRAY using binary logic, described in detail later.
    13 KB (2,270 words) - 00:24, 5 July 2023
  • This is the type of the particle, indicating what element it is. ...LN/PCLN/PBCN and CRAY which create other elements. It is usually set to an element type and in some cases is used to store a number.
    2 KB (356 words) - 01:10, 30 December 2022
  • {{ infobox Element | description = Radioactive liquid, decays into photons when touching PHOT or under negative pressure.
    1 KB (125 words) - 21:23, 21 July 2023
  • {{ infobox Element | description = Solid form of ISOZ, slowly decays into PHOT.
    1 KB (117 words) - 15:13, 28 November 2023
  • {{ infobox Element Broken glass is a heavy powder which is transparent to {{MaterialBtn|PHOT}}.
    1 KB (165 words) - 15:30, 27 November 2023
  • The biggest component of the bomb. Without it; it isn't a bomb! These element create various types of bombs. ...energy particles {{MaterialBtn|NEUT}}, {{MaterialBtn|ELEC}}, {{MaterialBtn|PHOT}}, {{MaterialBtn|PROT}}. They're quite powerful if activated properly and r
    3 KB (504 words) - 15:10, 28 November 2023
  • === [[File:WATR.png|WATR]] [[Element:WATR|Woda]] === ...wioł: Ogień | FIRE]]. Zamarza w [[element: ICE | ICE]] i odparowuje do [[element: WTRV | pary]]. Te zmiany stanu wpływa ciśnieniem otoczenia.
    10 KB (1,515 words) - 21:48, 25 April 2019
  • {{ infobox Element ...s more pressure than all other explosives. Is transparent to {{MaterialBtn|PHOT}}, although passing light is tinted shades of blue.
    1 KB (113 words) - 15:24, 1 December 2023
  • {{ infobox Element ...rial|INST}},{{Material|SWCH}}, {{Material|WWLD}} are being sparked while [[Element:EMP|electromagnetic pulse]] is activated.
    2 KB (285 words) - 04:54, 26 December 2022
  • {{ infobox Element It can be created by repeatedly sparking [[Element:BREL|BREL]] while inside of a sealed container. BREL heats up when sparked
    3 KB (510 words) - 08:11, 4 January 2023
  • {{ infobox Element <!-- todo (we need PHOT-level documentation with pictures here imho) -->
    1 KB (171 words) - 23:21, 2 December 2023

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