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The recommended torque setting for a 5nm torque wrench is 5 newton-meters.

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7mo ago

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What are the torque wrench settings for a 1989 Vuaxhall Nova 993cc or Opel Corsa 993cc engine including the big end settings and sump settings and cylinder head settings?

New cylinder head bolts are required and an angle guage,or you can make one up with card and a set square. Head bolt torque is 25Nm(newton metres)+60degrees + 60deg + 60 deg so it's a four step process.Con.rod bolts(big-end)28Nm,Inlet manifold 28Nm,Exhaust manifold 25Nm, Crank pulley 40Nm,Sump 5Nm and use locking compound (loctite)Timing cover 6Nm. Valve clearance,set inlets to .006" and ehausts to .010"(set approx.when cold then re-adjust while warmed engine is idling.Good luck.


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An nA node, or nanoampere node, refers to a specific level of technology in semiconductor manufacturing, particularly in the context of integrated circuits. The term "nA" typically indicates the scale of current that the node can handle, usually measured in nanoamperes (nA), which is one-billionth of an ampere. These nodes represent advancements in miniaturization and efficiency, allowing for lower power consumption and higher performance in electronic devices. In broader terms, nodes are often categorized by their feature size, such as 5nm or 7nm, which indicates the scale of the transistors used in a chip.


How Lever works?

Levers are force multipliers so the effort, the imput force, can produce a larger force on the load. Levers use moments to work. M=Fxd Here's an example: You use a force of 5N to lift a load. The lever causes your hand to be 1m away from the pivot of the lever. The moment is 5Nm. The load is 0.2m from the pivot. Rearrange the equation and you should find: F=M/d --> F=5/0.2=25N Hope this helped!


How has processor speeds changed over the past decade?

Over the past decade, processor speeds have evolved significantly, primarily driven by advancements in semiconductor technology and architecture. While traditional clock speeds have plateaued, leading to a focus on multi-core designs and parallel processing capabilities, improvements in efficiency and performance per watt have allowed processors to handle increasingly complex tasks. Additionally, innovations such as 7nm and 5nm fabrication processes have enabled more transistors to be packed onto chips, further enhancing performance without a proportional increase in power consumption. Overall, the emphasis has shifted from just speed to a combination of speed, efficiency, and overall processing capability.


If a spring exerts 10 n force when it's stretched 2mn what is the springs constant?

The spring constant can be calculated using Hooke's Law, which states that the force exerted by a spring is directly proportional to the amount it is stretched. The formula is F = kx, where F is the force, k is the spring constant, and x is the displacement. In this case, k = F/x = 10N / 2mm = 5 N/mm.