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  2. Jet fuel - Wikipedia

    en.wikipedia.org/wiki/Jet_fuel

    It was even more volatile than JP-2 and had high evaporation loss in service. [31] JP-4 was a 50-50 kerosene-gasoline blend. It had lower flash point than JP-1, but was preferred because of its greater availability. It was the primary United States Air Force jet fuel between 1951 and 1995. Its NATO code is F-40. It is also known as avtag. JP-5

  3. JP-10 (fuel) - Wikipedia

    en.wikipedia.org/wiki/JP-10_(fuel)

    JP-10 (Jet Propellant 10) is a synthetic jet fuel, specified and used mainly as fuel in missiles. Being designed for military purposes, it is not a kerosene based fuel. Developed to be a gas turbine fuel for cruise missiles , [ 1 ] it contains mainly exo-tetrahydrodicyclopentadiene (exo-THDCPD) with some endo-isomer impurity. [ 2 ]

  4. JPTS - Wikipedia

    en.wikipedia.org/wiki/JPTS

    A JP-8 based alternative, JP-8+100LT, is being considered. JP-8+100 has increased thermal stability by 100 degrees F more than stock JP8, and is only 0.5 cents per gallon more expensive; low temperature additives can be blended to this stock to add the desired cold performance. [5]

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  7. JP-4 - Wikipedia

    en.wikipedia.org/wiki/JP-4

    Although it had a low flash point (0 °F (−18 °C)), a lit match dropped into JP-4 would not ignite the mixture. JP-4 froze at −76 °F (−60 °C), and its maximum burning temperature was 6,670 °F (3,688 °C). [citation needed] JP-4 was a non-conductive liquid, prone to build up static electricity when being moved through pipes and tanks ...

  8. JP-5 - Wikipedia

    en.wikipedia.org/?title=JP-5&redirect=no

    From Wikipedia, the free encyclopedia. Redirect page

  9. J-STAGE - Wikipedia

    en.wikipedia.org/wiki/J-STAGE

    J-STAGE includes the Journal@rchive (), an open access digital archive of Japanese journals, established in 2005 by the Government of Japan. [4] [1] By April 2009, some 540 academic organizations made use of the facility. [5]