fix
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@@ -20,8 +20,8 @@
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#define NITROGEN_HEAT_PENALTY -1.5
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#define BZ_HEAT_PENALTY 5
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#define H2O_HEAT_PENALTY 8
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#define FREON_HEAT_PENALTY -10 //very good heat absorbtion and less plasma and o2 generation
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#define HYDROGEN_HEAT_PENALTY 10 // similar heat penalty as tritium (dangerous)
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//#define FREON_HEAT_PENALTY -10 //very good heat absorbtion and less plasma and o2 generation
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//#define HYDROGEN_HEAT_PENALTY 10 // similar heat penalty as tritium (dangerous)
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//All of these get divided by 10-bzcomp * 5 before having 1 added and being multiplied with power to determine rads
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@@ -32,13 +32,13 @@
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#define TRITIUM_TRANSMIT_MODIFIER 30 //We divide by 10, so this works out to 3
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#define PLUOXIUM_TRANSMIT_MODIFIER -5 //Should halve the power output
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#define H2O_TRANSMIT_MODIFIER 2
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#define HYDROGEN_TRANSMIT_MODIFIER 25 //increase the radiation emission, but less than the trit (2.5)
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//#define HYDROGEN_TRANSMIT_MODIFIER 25 //increase the radiation emission, but less than the trit (2.5)
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#define BZ_RADIOACTIVITY_MODIFIER 5 //Improves the effect of transmit modifiers
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#define N2O_HEAT_RESISTANCE 6 //Higher == Gas makes the crystal more resistant against heat damage.
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#define PLUOXIUM_HEAT_RESISTANCE 3
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#define HYDROGEN_HEAT_RESISTANCE 2 // just a bit of heat resistance to spice it up
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//#define HYDROGEN_HEAT_RESISTANCE 2 // just a bit of heat resistance to spice it up
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#define POWERLOSS_INHIBITION_GAS_THRESHOLD 0.20 //Higher == Higher percentage of inhibitor gas needed before the charge inertia chain reaction effect starts.
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#define POWERLOSS_INHIBITION_MOLE_THRESHOLD 20 //Higher == More moles of the gas are needed before the charge inertia chain reaction effect starts. //Scales powerloss inhibition down until this amount of moles is reached
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