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  2. Gillette Mach3 - Wikipedia

    en.wikipedia.org/wiki/Gillette_Mach3

    Gillette budgeted $300 million for a two-year advertising campaign for the Mach3 razor. [9] [11] Gillette marketed the three blade design as allowing for a shave with less pressure to the skin and with fewer strokes, thereby reducing skin irritation. The Mach3 razor was released in North America during the last week of June 1998. [12]

  3. Three-point hitch - Wikipedia

    en.wikipedia.org/wiki/Three-point_hitch

    At 2,500 pounds (1.1 t), the 9N could plow more than 12 acres (4.9 hectares) in a normal day pulling two 14-inch (360 mm) plows, [3] outperforming the tractive performance of the heavier and more expensive Farmall F-30 model. [3] The hitch's utility and simplicity have since made it an industry standard.

  4. Mach 3 - Wikipedia

    en.wikipedia.org/wiki/Mach_3

    M.A.C.H. 3, a 1983 LaserDisc arcade video game; Mach 3 (1987 video game) Fly Castelluccio Mach 3, a paramotor aircraft; Gillette Mach3, a line of shaving razors; Kawasaki H1 Mach III, motorcycle; Abner Jenkins or Mach-3, a Marvel Comics superhero; MACH 3, a Wharfedale MACH loudspeaker; Mach III, a program at the youth camp Aviation Challenge

  5. Pratt & Whitney J58 - Wikipedia

    en.wikipedia.org/wiki/Pratt_&_Whitney_J58

    The ejector, or secondary, nozzle performed the reverse function of the inlet accelerating the turbine exhaust from about Mach 1.0, as it left the primary nozzle, back up to Mach 3. [34] Mach 3 exhaust velocity is higher than Mach 3 flight velocity due to the much-higher temperature in the exhaust.

  6. Ramjet - Wikipedia

    en.wikipedia.org/wiki/Ramjet

    A ramjet is a form of airbreathing jet engine that requires forward motion of the engine to provide air for combustion. Ramjets work most efficiently at supersonic speeds around Mach 3 (2,300 mph; 3,700 km/h) and can operate up to Mach 6 (4,600 mph; 7,400 km/h).

  7. Axial fan design - Wikipedia

    en.wikipedia.org/wiki/Axial_fan_design

    The performance curve for the axial fan is shown in the figure. (The vertical line joining the maximum efficiency point is drawn which meets the Pressure curve at point "S") [1] The following can be inferred from the curve - As the flow rate increases from zero the efficiency increases to a particular point reaches maximum value and then decreases.