0 /
for
(/
)
Crank
Generates 1 per cycle
Turn the crank
5.000 s
Coal Power Plant
()
+/s, -/s
Owned:
Oil Power Plant
Nuclear Power Plant
Autobuy
Autosell
Battery
Stores
Accumulator
( )
Substation
Laboratory
+/s, -/s if manned by engineer
The coal can be crushed before feeding into a power plant. By doing so, we can decrease the coal consumption of coal power plants by %.
With more people, there are more ideas. By listening to them, we can increase lab effectiveness by % for each person living in the town.
The improvements in material quality can allow our base energy storage to be times higher.
The current trading protocols of our engineers in importing department are a bit incomplete. Amend the protocols to allow them to stop buying resources when this would result in a net loss (this can be toggled on or off in Power tab).
Oil is a cheap and very flammable substance suitable for energy generation. We can design power plants that use it as fuel.
The extra trading contracts can allow us to sell up to % of overflow energy even without a dedicated engineer.
Engineers work better together. This would increase lab effectiveness by % for each engineer past the first, but also raise the energy consumption by the same amount.
Oil is suddenly very expensive. We can minimize the resource waste and reduce the oil consumption by %.
Alkaline batteries seem to be a major breakthrough in the field of energy storage. By replacing our batteries with the new ones, we can increase their capacity by times.
The best tweaks can only be made in the field. We can assign engineers to oversee power plant and storage operations, which would increase their effectiveness by % per engineer.
Invest in an establishment of a local stock exchange. This would cause more people to enter the market, which would cause your own actions to eventually have less effect on resource prices with time.
The emergence of an energy futures market allows us to sell up to % of overflow energy even without a dedicated engineer.
The computational power seems to be extremely important in the coming era. Establish a study dedicated to electronic components and the possibilities they open.
We can establish the Daylight Saving Time to maximize the usage of solar light by the town population. Doing so will reduce their energy needs by %.
With our new advances in electronics, we can create an efficient storage for all our scientific knowledge. This would double lab effectiveness, but increase their energy requirements by 50%.
A recent study uncovered an interesting phenomenon called "radioactivity". Learn how to harness this new power and make it produce energy.
By double-layering all our accumulators, we can raise their capacity by a staggering times.
We can streamline the operations of our coal power plants, making them more effective. This would cause coal power plants to produce % more energy per each coal power plant constructed.
The development of easy-to-use trading strategies can greatly aid our sales department and allow them to sell % of overflow energy even without a dedicated engineer.
We can lobby the switch to centralized heating to have more control over energy used to heat the homes. By cutting off unnecessary heating times, we can reduce energy requirements of citizens by %.
We can develop a more compact design of a nuclear power plant. That would allow us to fit two cores into one building, thus increasing base energy output by and base Uranium consumption by 0.075.
The additional citations between the research papers of our lab engineers would boost our perceived science production rate by % per manned laboratory.
We can make distribution of oil to our various factories more centralized. By doing so, oil power plant effectiveness would rise by % per each oil power plant constructed.
The improvements in computing efficiency opened the road for high-frequency trading algorithms. The development of one of our own will allow us to sell up to % of overflow energy without an engineer supervisor.
By packing the reactors in a nuclear power plant even closer to each other, we can fit even more of them inside each building and increase base power production by whlist increasing Uranium consumption only by 0.125.
Oil seems to still be prohibitively expensive. Devise the more efficient ways of using it in the power plants that would allow to reduce oil consumption by another %.
The material researches in the field of electronics led to a creation of a new method of energy storage. A "substation" has the storage comparable to the accumulator, but requires no Metals to build.
By creating an interconnected web of communications between our laboratories we can raise the effectiveness of each laboratory to the power of , but that would triple their energy requirements.
Some clever energy saving tips shared with the population of nearby town can reduce their energy requirements by up to %.
The nuclear power plants can be made more efficient by linking them with each other in the global grid. This will increase their effectiveness by % per each nuclear power plant constructed.
The usage of high-voltage transformators can easily multiply the storage capacity of our substations by .
We can promote the switch to the more energy-efficient LED lightbulbs, which should reduce the energy consumption of people by an additional %.
All our major energy sources have a big flaw: their profitability changes with the market. The wind turbines, on the other hand, require only occasional maintenance. Learn how to build them.
We can learn how to harness the power hidden in height differences. The river dam can stockpile naturally-flowing water in a reservoir and then rush it all down for energy at once.
Equipping each laboratory of ours with a powerful server rack to run simulations in will increase base lab effectiveness by % per owned laboratory by making them twice more expensive energy-wise.
Wind energy can be tricky, but we can cope. An improved architectural design for our new wind turbine generation will allow them to gather % of their max power even in bad conditions.
Our renewable power plants require a special education to interact with, but it is possible to arrange that. The special course on their inner workings will allow you to assign engineers in "Alternate" tab.
By restructuring the natural landscape to direct more water to our dams, we can improve their water collection rate by % when idle.
There is a lot of improvements that can be made in the energy storage field with low cost. The new high-voltage energy guidelines would make engineers working in Storage department times as efficient.
The new, sturdy constructions of wind turbines will allow them to fully work even in strongest of hurricanes.
The mechanics of water dams are unnecessary complicated, and there must be a way to automate them. With this upgrade, the engineer on enabled water dams would ensure an optimal energy output.
The Sun is eternal - or, at least, it will surely outlive any intelligent life on Earth. Learn how to gather the power of heat it emits into something more useful for industrial operations.
We can work on improving wind turbine design for the sake of better energy production. It seems that it is possible to reach times greater output by using better design.
The Earth is the last of classical elements we did not conquer yet. Transfer the heat it generates into the form of usable energy with the aid of geothermal power plants.
The additional engineering innovations brought to our water dam design would increase their water collection rate by an additional % when idle.
The more wind turbines we have, the lower the operating costs. By introducing unified rules and guidelines for operating them, we can increase their output by % per wind turbine owned.
The introduction of simple and reliable perovskite solar cells into our solar panels can increase their efficiency by up to %.
Renewable energy is a new and rapidly-developing field. There is much to be gained still. Each engineer past the first assigned to a power plant in "Alternate" tab would boost the strength of all engineers there by 100%.
The switch to the binary cycle on geothermal stations will allow us to productively use temperatures as low as °C.
Create a unified electrical network to which all water dams are connected. By regulating their output with the use of specialized AI algorithms, the dam productivity can be increased by % per water dam owned.
A large array of solar cells allows us to test technologies for improvements very quickly. By launching a dedicated program to maximize the output of solar panels, we can increase their productivity by % per owned solar panel.
The drilling is hard, but practice makes perfect. By using our experience for the construction of new geothermal plants, we can increase the productivity of all of them by % per owned geothermal plant.
The Earth is doomed. The resources are more scarce with each passing year, and the climate change is going to wreck the ecosystem. Construct a Starship to escape from this planet and take humanity to the stars.
Wind Turbine
+/s (avg. ) +/s right now
Water Dam
+/s, -/s or +/s (avg. )
Solar Panel
Geothermal
°C
+/s/°C above +/s (avg. )
The starship needs an external structure.
/ collected
The starship needs enough carbon onboard.
The starship needs fuel to launch itself.
The starship needs a navigational system.
The starship needs an electricity source.
The starship needs a guidance from Earth.
The starship needs carefully chosen crew.
Send up to
every second to light the town
50.00%
Send the energy for free to light up the town, thus helping to increase the population. In return, you will get:
The town requires
Happiness
Light
Overpopulation
Total
Free
: /
Game by Semenar#7789 and DEMEMZEA#5151. Icons by Icons8. Check our other projects: Matter Dimensions.
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Congratulations!
You have beaten the game!
You managed to build a prosperous energy company, you lit up the whole city and you gathered enough resources to build a spaceship. The content ends here. Thank you for playing! You can continue, if you want.
This game was made for Incremental Game Jam 2; try more cool games by other developers there!