Difference between revisions of "Nuclear Power Plant"
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The formula for energy production is: | The formula for energy production is: | ||
− | Energy = 30 x Level x (1.05 + Energy Tech Level x 0.01) | + | Energy = 30 x Level x (1.05 + Energy Tech Level x 0.01)^Level |
+ | |||
+ | Example: 30 * 10 * (1.05 + 14 * 0.01) ^10 = 389.06 | ||
Actual Chart: http://i428.photobucket.com/albums/qq5/LordMekenshi/Untitled.jpg - Mekenshi | Actual Chart: http://i428.photobucket.com/albums/qq5/LordMekenshi/Untitled.jpg - Mekenshi | ||
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{| border="0" style="text-align: right;" cellspacing="0" cellpadding="4" | {| border="0" style="text-align: right;" cellspacing="0" cellpadding="4" | ||
| || | | || | ||
− | | colspan=" | + | | colspan="14" style="background-color:#000; color:#CCC; text-align: center;" | Energy Tech Level |
|- style="background-color:#000; color:#CCC;" | |- style="background-color:#000; color:#CCC;" | ||
<!-- List of Energy Levels --> | <!-- List of Energy Levels --> | ||
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|- style="background-color:#DDD;" | |- style="background-color:#DDD;" | ||
| style="background-color:#777; color:#DDD;" | 10 | | style="background-color:#777; color:#DDD;" | 10 | ||
− | || 647.68 || 710.21 || 778.12 || 851.93 || 931.75 || 1018.37 || 1112.17 || 1213.67 || 1323.43 || 1442.05 || 1570.15 || 1708. | + | || 647.68 || 710.21 || 778.12 || 851.93 || 931.75 || 1018.37 || 1112.17 || 1213.67 || 1323.43 || 1442.05 || 1570.15 || 1708.40 |
|- | |- | ||
| style="background-color:#777; color:#DDD;" | 11 | | style="background-color:#777; color:#DDD;" | 11 | ||
− | || || || || || || 1265. | + | || || || || || || 1265.83 || 1394.66 || 1535.29 || 1688.70 || 1855.92 || 2038.06 || 2236.30 |
|- style="background-color:#DDD;" | |- style="background-color:#DDD;" | ||
| style="background-color:#777; color:#DDD;" | 12 | | style="background-color:#777; color:#DDD;" | 12 | ||
− | || || || || || || || 1734.45 || 1926.09 || 2136.97 || 2368.82 || 2623.53 || 2903. | + | || || || || || || || 1734.45 || 1926.09 || 2136.97 || 2368.82 || 2623.53 || 2903.12 |
|} | |} | ||
Quantities shown are energy units produced per hour. | Quantities shown are energy units produced per hour. | ||
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===Hydrogen Consumption=== | ===Hydrogen Consumption=== | ||
− | Hydrogen = 10 x Level x 1.1<sup>Level</sup> is the actual formula used. | + | Hydrogen = 10 x Level x 1.1<sup>Level</sup> is the actual formula used. For Extreme, double the hydrogen use. |
{| border="0" style="text-align: right;" cellspacing="0" cellpadding="4" | {| border="0" style="text-align: right;" cellspacing="0" cellpadding="4" | ||
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|| 2.50 || 2.74 || 3.00 || 3.28 || 3.59 || 3.93 || 4.29 || 4.68 | || 2.50 || 2.74 || 3.00 || 3.28 || 3.59 || 3.93 || 4.29 || 4.68 | ||
|} | |} | ||
+ | Quantities shown are energy units produced hourly per unit of hydrogen. | ||
==Requirements== | ==Requirements== | ||
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==Notes== | ==Notes== | ||
− | * The game's description of the Nuclear Power Plant is: "Produces additional electricity to power your mines and buildings, at a cost of hydrogen. The Nuclear Power Plant consumes more hydrogen and produces more energy for each level of energy tech." | + | * The game's description of the Nuclear Power Plant is: "Produces additional electricity to power your mines and buildings, at a cost of hydrogen. The Nuclear Power Plant consumes more hydrogen and produces more energy for each level of energy tech." It should be noted that despite what this may say, hydrogen consumption is not increased along with energy production with the increase of energy tech, and is only dependent on the level of the plant. |
− | * As a Nuclear power plant uses hydrogen to generate energy, it would be recommended to check that you are not operating it at 100% output and producing surplus energy that is not being utilized. ''i.e., If you have a large amount of extra energy, consider decreasing energy production from your Power plant to save hydrogen. This costs nothing, as the extra energy is "extra" and so not producing it has no negative impact.'' | + | * As a Nuclear power plant uses hydrogen to generate energy, it would be recommended to check that you are not operating it at 100% output and producing surplus energy that is not being utilized. ''i.e., If you have a large amount of extra energy, consider decreasing energy production from your Power plant to save hydrogen. This costs nothing, as the extra energy is "extra," and so not producing it has no negative impact.'' |
− | * In Extreme the Nuclear Power Plant uses double(''i.e., x2'') the amount of Hydrogen per level while still producing the same amount of power. So the production shown in the table is correct, but the output ratio is not applicable to Extreme. | + | * In Extreme, the Nuclear Power Plant uses double (''i.e., x2'') the amount of Hydrogen per level while still producing the same amount of power. So the production shown in the table is correct, but the output ratio is not applicable to Extreme. |
Latest revision as of 05:53, 6 May 2014
The Nuclear Power Plant is an alternative to the Solar Array for producing Energy. It consumes Hydrogen from your Hydrogen Synthesizer in order to make extra power.
Nuclear Power Plants create more energy as you level up your Energy Tech.
Costs
Ore Cost = (500 * 1.8^Level)
Crystal Cost = (200 * 1.8^Level)
Hydrogen Cost = (100 * 1.8^Level)
Level | Ore | Crystal | Hydrogen |
---|---|---|---|
1 | 900 | 360 | 180 |
2 | 1,620 | 648 | 324 |
3 | 2,916 | 1,167 | 584 |
4 | 5,249 | 2,100 | 1,050 |
5 | 9,448 | 3,780 | 1,890 |
6 | 17,007 | 6,803 | 3,402 |
7 | 30,612 | 12,245 | 6,123 |
8 | 55,100 | 22,040 | 11,020 |
9 | 99,180 | 39,672 | 19,836 |
10 | 178,524 | 71,410 | 35,705 |
11 | 321,343 | 128,537 | 64,269 |
12 | 578,416 | 231,367 | 115,684 |
Specs
Production
The formula for energy production is:
Energy = 30 x Level x (1.05 + Energy Tech Level x 0.01)^Level
Example: 30 * 10 * (1.05 + 14 * 0.01) ^10 = 389.06
Actual Chart: http://i428.photobucket.com/albums/qq5/LordMekenshi/Untitled.jpg - Mekenshi
Energy Tech Level | |||||||||||||||
3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | ||||
Level | 1 | 32.4 | 32.7 | 33.0 | 33.3 | 33.6 | 33.9 | 34.2 | 34.5 | 34.8 | 35.1 | 35.4 | 35.7 | ||
2 | 69.98 | 71.29 | 72.60 | 73.93 | 75.26 | 76.61 | 77.98 | 79.35 | 80.74 | 82.13 | 83.54 | 84.97 | |||
3 | 113.37 | 116.55 | 119.79 | 123.09 | 126.44 | 129.86 | 133.34 | 136.88 | 140.48 | 144.15 | 147.87 | 151.66 | |||
4 | 163.26 | 169.39 | 175.69 | 182.17 | 188.82 | 195.66 | 202.68 | 209.88 | 217.28 | 224.87 | 232.65 | 240.64 | |||
5 | 220.40 | 230.79 | 241.58 | 252.76 | 264.35 | 276.37 | 288.81 | 301.70 | 315.05 | 328.87 | 343.16 | 357.95 | |||
6 | 285.64 | 301.88 | 318.88 | 336.67 | 355.29 | 374.75 | 395.10 | 416.35 | 438.55 | 461.73 | 485.92 | 511.16 | |||
7 | 359.90 | 383.89 | 409.23 | 435.99 | 464.24 | 494.05 | 525.48 | 558.60 | 593.51 | 630.26 | 668.95 | 709.66 | |||
8 | 444.22 | 489.22 | 514.46 | 553.09 | 594.23 | 638.03 | 684.62 | 734.17 | 786.82 | 842.75 | 902.13 | 965.13 | |||
9 | 539.73 | 586.41 | 636.65 | 690.67 | 748.73 | 811.09 | 878.03 | 949.83 | 1026.80 | 1109.27 | 1197.57 | 1292.07 | |||
10 | 647.68 | 710.21 | 778.12 | 851.93 | 931.75 | 1018.37 | 1112.17 | 1213.67 | 1323.43 | 1442.05 | 1570.15 | 1708.40 | |||
11 | 1265.83 | 1394.66 | 1535.29 | 1688.70 | 1855.92 | 2038.06 | 2236.30 | ||||||||
12 | 1734.45 | 1926.09 | 2136.97 | 2368.82 | 2623.53 | 2903.12 |
Quantities shown are energy units produced per hour.
Hydrogen Consumption
Hydrogen = 10 x Level x 1.1Level is the actual formula used. For Extreme, double the hydrogen use.
Hydrogen | ||
Level | 1 | 11.00 |
2 | 24.20 | |
3 | 39.93 | |
4 | 58.56 | |
5 | 80.52 | |
6 | 106.29 | |
7 | 136.41 | |
8 | 171.48 | |
9 | 212.21 | |
10 | 259.37 |
Efficiency
The efficiency of Nuclear Power Plants decreases with each level of the plant until Energy Tech Level 5. After Energy Tech Level 5, efficiency improves with each level of the plant.
Energy Tech Level | |||||||||
3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | ||
Level | 1 | 2.95 | 2.97 | 3.00 | 3.03 | 3.05 | 3.08 | 3.11 | 3.14 |
2 | 2.89 | 2.95 | 3.00 | 3.05 | 3.11 | 3.17 | 3.22 | 3.28 | |
3 | 2.84 | 2.92 | 3.00 | 3.08 | 3.17 | 3.25 | 3.34 | 3.43 | |
4 | 2.79 | 2.89 | 3.00 | 3.11 | 3.22 | 3.34 | 3.46 | 3.58 | |
5 | 2.74 | 2.87 | 3.00 | 3.14 | 3.28 | 3.43 | 3.59 | 3.75 | |
6 | 2.69 | 2.84 | 3.00 | 3.17 | 3.34 | 3.53 | 3.72 | 3.92 | |
7 | 2.64 | 2.81 | 3.00 | 3.20 | 3.40 | 3.62 | 3.85 | 4.10 | |
8 | 2.59 | 2.79 | 3.00 | 3.23 | 3.47 | 3.72 | 3.99 | 4.28 | |
9 | 2.54 | 2.76 | 3.00 | 3.25 | 3.53 | 3.82 | 4.14 | 4.48 | |
10 | 2.50 | 2.74 | 3.00 | 3.28 | 3.59 | 3.93 | 4.29 | 4.68 |
Quantities shown are energy units produced hourly per unit of hydrogen.
Requirements
Hydrogen Synthesizer Level 5
Energy Tech Level 3
See Also
Notes
- The game's description of the Nuclear Power Plant is: "Produces additional electricity to power your mines and buildings, at a cost of hydrogen. The Nuclear Power Plant consumes more hydrogen and produces more energy for each level of energy tech." It should be noted that despite what this may say, hydrogen consumption is not increased along with energy production with the increase of energy tech, and is only dependent on the level of the plant.
- As a Nuclear power plant uses hydrogen to generate energy, it would be recommended to check that you are not operating it at 100% output and producing surplus energy that is not being utilized. i.e., If you have a large amount of extra energy, consider decreasing energy production from your Power plant to save hydrogen. This costs nothing, as the extra energy is "extra," and so not producing it has no negative impact.
- In Extreme, the Nuclear Power Plant uses double (i.e., x2) the amount of Hydrogen per level while still producing the same amount of power. So the production shown in the table is correct, but the output ratio is not applicable to Extreme.