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  2. Kawasaki Vulcan 500 LTD - Wikipedia

    en.wikipedia.org/wiki/Kawasaki_Vulcan_500_LTD

    The Kawasaki Vulcan [1] 500 LTD is a cruiser style beginner motorcycle that was launched in 1990-2009 [2] by Kawasaki Motors. The Vulcan 500 LTD is powered is powered by a parallel twin, 498cc, liquid-cooled, four-stroke, DOHC, eight-valve parallel twin engine. [3] It is based on the Kawasaki Ninja 500 engine. [4] The Vulcan 500 LTD was priced ...

  3. Kawasaki Vulcan - Wikipedia

    en.wikipedia.org/wiki/Kawasaki_Vulcan

    Vulcan 500. The Vulcan 500 (EN500A) introduced in 1990 was the successor to the Kawasaki 454 LTD. The EN500A was fitted with a parallel twin 498 cc engine nearly identical to the Kawasaki Ninja 500R. It had a 6-speed transmission and belt final drive. The EN500A was discontinued after 1996 and replaced with the Vulcan 500 LTD (EN500C).

  4. Kawasaki Vulcan 500 - Wikipedia

    en.wikipedia.org/?title=Kawasaki_Vulcan_500&...

    Retrieved from "https://en.wikipedia.org/w/index.php?title=Kawasaki_Vulcan_500&oldid=459386173"This page was last edited on 7 November 2011, at 01:30

  5. Category:Kawasaki motorcycles - Wikipedia

    en.wikipedia.org/wiki/Category:Kawasaki_motorcycles

    K. Kawasaki J 300; Kawasaki Ninja ZX-4R; Kawasaki Ninja ZX-25R; Kawasaki Vulcan 500 LTD; Kawasaki KB100 RTZ; Kawasaki KDX125; Kawasaki KDX200; Kawasaki KE100

  6. List of Kawasaki motorcycles - Wikipedia

    en.wikipedia.org/wiki/List_of_Kawasaki_motorcycles

    Kawasaki KRR 150 (Ninja KR 150R/ KR 150SP/ KR 150SE/KR 150SSE, Ninja KRR 150/KRR 150 SE/KRR 150SSR, Victor 150, Serpico 150/KRZ 150, ZSR Cyclone 150, Scorpion 150 (in Argentina) (Production year: 1989–2004 and 1996's–2015 for the Ninja 150R/SS in Indonesia) 2-stroke Engine (Marketed in the Philippines, Thailand, Indonesia, Malaysia, and ...

  7. Expansion chamber - Wikipedia

    en.wikipedia.org/wiki/Expansion_chamber

    When the descending piston first exposes the exhaust port on the cylinder wall, the exhaust flows out powerfully due to its pressure (without assistance from the expansion chamber) so the diameter/area over the length of the first portion of the pipe is constant or near constant with a divergence of 0 to 2 degrees which preserves wave energy.

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