Lotus Elise, Fiat 500 & Subaru WRX STi Tuning Setups For Expert Seasonal Events

June 24, 2011 – 05:40 am
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It took me a while to get around to completing these races however these past two days I’ve been working on them. I managed to gold all three events however I really had to dig deep to achieve that.

Here are the setups I used to win each race. I used some suggestions from forum members and some of my own knowledge to arrive at these setups.

Subaru WRX STi ’10
  • Oil Change
  • All engine and aero mods – power down to allowable limit and use mid-range RPM turbo (better acceleration out of corners)
  • All weight reduction mods and torsion bar
  • Ballast Amount 14kg
  • Ballast Position 50
  • Downforce  0/17
  • Transmission  310 km/h
  • Front LSD  28, 58, 31
  • Rear LSD  7, 55, 11
  • Torque Split  50/50
  • Ride Height  -25/-25
  • Spring Rate  12.0/8.0
  • Extension  9/8
  • Compression  7/7
  • ARB  1/5
  • Camber  2.5/0.2
  • Toe -0.20/-0.10
  • Brake Balance 4/10

First lap I ran a high 1’36 the rest were borderline 1’34′s

 

Lotus Elise 111R ’04
  • Oil Change
  • All engine and aero mods – power down to allowable limit and use low-range RPM turbo (better acceleration out of corners)
  • All weight reduction mods and torsion bar

Source: Gran Turismo 5

A simple question would be ask how much energy

2012-02-26 08:28:53 by blackskimmmer

Is stored in a tuning fork that is vibrating vs the amount of energy to raise the tuning fork one degree celsius.
lets see, energy off an oscillator is:
e=1/2 *k* A^2
for tuning fork:can't find the sprring constant for it. must be pretty high f=kx mg=kx how many killos to hang from a tine to pull it out how far does it go in oscillating? .1mm?
1kg(?) * 10m/s^2=k(10^-4m)
k=10/10^-4=10^5N/m?
e=10^5*(.1)^2=10^3Nm=10^3 jouls. seems way too high.
i can set it oscillating by dropping it from a meter high. and that potential energy is simply... say it wiehgs .05kg
e=mgh=0.05*10*1=0.5Nm=0.5jouls probably less because not all the energy of the fall goes to sound production.
(2)
energy to raise 0.05kg one degree centigrade=
...

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