Equilibrium: Difference between revisions

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'''Equilibrium''' is the sixth puzzle in [[Orpheus Ascending]], part of the [[Road to Elysium]] expansion for The Talos Principle 2.
'''Equilibrium''' is the sixth puzzle in [[Orpheus Ascending]], part of the [[Road to Elysium]] expansion for The Talos Principle 2.


== Puzzle elements ==
== Puzzle elements ==
{{Puzzle Element List|Purple barrier=true|Blue door=true|Connector=true|Receiver=true|Accumulator=true}}
{{Puzzle Element List|Purple barrier=true|Blue door=true|Connector=true|Receiver=true|Accumulator=true}}


==Overview==
==Overview==

Latest revision as of 21:00, 15 June 2024

Equilibrium
Identifier: Orpheus-6
Area: Orpheus Ascending
Puzzle Type: Main
Previous Puzzle: Chain
Next Puzzle: Domino Effect

Equilibrium is the sixth puzzle in Orpheus Ascending, part of the Road to Elysium expansion for The Talos Principle 2.

Puzzle elements


Overview

As you enter the puzzle, you find yourself in an area with two rooms. The front room has two connectors available in front, and a small guarded area to the left. In that area are two already charged accumulators, and two emitters, one red and one blue. You can see through to the back room through some glass walls, and there are two purple barriers on either side that allow entry there as well.

In the back room, you see an array of six fixed connectors arranged in a line, each connected to the next. The second and third connectors also connect to a receiver each; the left one is blue and the right one red. Between the two receivers is a blue door that blocks access to the Sarabhai Fragment.


Hints

A basic hint:

[ hint ]
Since the name of the puzzle is Equilibrium, you have to make sure that the lasers are in equilibrium to proceed

Mechanics of connectors:

[ hint ]
Understand the mechanics of connectors, especially from the previous puzzle, if you've not read it already. This puzzle uses similar concepts

A large hint:

[ hint ]
Notice that the connectors in the back room are not in equilibrium, the door is biased to the left. How can you bring the light into equilibrium, then?