About: Gas Manipulation   Sponge Permalink

An Entity of Type : dbkwik:resource/xoykDFxJFBgF02W_HRnEzw==, within Data Space : 134.155.108.49:8890 associated with source dataset(s)

Users can create, shape and manipulate anything that is gaseous, a phase of matter characterized by relatively low density, high fluidity/no definite shape, and lack of rigidity. Gas is very compressible but tends to expand indefinitely, and it fills any container. A small change in temperature or pressure produces a substantial change in its volume. As most gases are difficult to observe directly, they are described through the use of four physical properties or macroscopic characteristics: pressure, volume, number of particles (chemists group them by moles) and temperature.

AttributesValues
rdf:type
rdfs:label
  • Gas Manipulation
rdfs:comment
  • Users can create, shape and manipulate anything that is gaseous, a phase of matter characterized by relatively low density, high fluidity/no definite shape, and lack of rigidity. Gas is very compressible but tends to expand indefinitely, and it fills any container. A small change in temperature or pressure produces a substantial change in its volume. As most gases are difficult to observe directly, they are described through the use of four physical properties or macroscopic characteristics: pressure, volume, number of particles (chemists group them by moles) and temperature.
dcterms:subject
Row 1 info
  • Manipulate gaseous matter
Row 1 title
  • Power/Ability to:
Box Title
  • Gas Manipulation
Caption
  • Koffing and Weezing the Poison Gas Pokemon.
dbkwik:powerlistin...iPageUsesTemplate
imagewidth
  • 320(xsd:integer)
BGCOLOR
  • thistle
abstract
  • Users can create, shape and manipulate anything that is gaseous, a phase of matter characterized by relatively low density, high fluidity/no definite shape, and lack of rigidity. Gas is very compressible but tends to expand indefinitely, and it fills any container. A small change in temperature or pressure produces a substantial change in its volume. As most gases are difficult to observe directly, they are described through the use of four physical properties or macroscopic characteristics: pressure, volume, number of particles (chemists group them by moles) and temperature.
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