Rotate Rings
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Rotate Rings

Rotate Rings Level 82 walkthrough

Board diagram

The game has different level schedules, so the board for the same level number may differ. Choose the thumbnail that matches your game.

Ring numbers

9 rings, 10 blocking pins, 12 slide bars, 9 clamps

123456789

Default A · Numbers identify the rings on the diagram; they do not specify an operation order.

Choose a matching board

Filters examine every variant; choose a thumbnail to compare a matching board.

Board · A

Level 82 · Schedules A · Board diagram
Board diagram

9 rings, 10 blocking pins, 12 slide bars, 9 clamps

Ring numbers

123456789

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 9 · Blocking pins: 10 · Stop pins: 0 · Slide bars: 12 · Clamps: 9 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 8 counterclockwise about 114°. Target opening direction: 104° (right 0°, up 90°). Release and wait. Expected departure: Ring 8. Expected remainder: 8 rings, 12 bars.

  2. Move S10 up along its track about 6.29 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S10. Expected remainder: 8 rings, 11 bars.

  3. Move S12 down along its track about 4.00 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S12. Expected remainder: 8 rings, 10 bars.

  4. Move S3 down along its track about 4.14 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S3. Expected remainder: 8 rings, 9 bars.

  5. Move S5 down along its track about 0.14 ring radii. Release and wait. No departure is expected yet. Expected remainder: 8 rings, 9 bars.

  6. Rotate Ring 2 counterclockwise about 29°. Target opening direction: 119° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 8 rings, 9 bars.

  7. Rotate Ring 2 counterclockwise about 96°. Target opening direction: 215° (right 0°, up 90°). Release and wait. Expected departure: Ring 2. Expected remainder: 7 rings, 9 bars.

  8. Rotate Ring 1 counterclockwise about 26°. Target opening direction: 181° (right 0°, up 90°). Release and wait. Expected departure: Ring 1. Expected remainder: 6 rings, 9 bars.

  9. Move S6 right along its track about 8.71 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S6. Expected remainder: 6 rings, 8 bars.

  10. Move S9 up along its track about 12.14 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S9. Expected remainder: 6 rings, 7 bars.

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Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Closed ring
A closed ring has no opening. Release its blocking connections using the surrounding objects; the ring flies away automatically when it is free.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Upper leftOpen
2Upper leftOpen
3Lower leftOpen
4CenterOpen
5CenterOpen
6CenterOpen
7Upper centerClosed
8CenterOpen
9Lower rightOpen
  • Ring 3 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 9 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 8. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 1 is connected to a blocking relationship with ring 2. Check this pair on the diagram.

Board · B

Level 82 · Schedules B · Board diagram
Board diagram

11 rings, 13 blocking pins, 9 slide bars, 4 clamps

Ring numbers

1234567891011

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 11 · Blocking pins: 13 · Stop pins: 2 · Slide bars: 9 · Clamps: 4 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Move S4 up along its track about 1.71 ring radii. Release and wait. No departure is expected yet. Expected remainder: 11 rings, 9 bars.

  2. Move S4 up along its track about 3.43 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S4. Expected remainder: 11 rings, 8 bars.

  3. Move S8 right along its track about 1.43 ring radii. Release and wait. No departure is expected yet. Expected remainder: 11 rings, 8 bars.

  4. Move S8 right along its track about 1.57 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S8. Expected remainder: 11 rings, 7 bars.

  5. Rotate Ring 9 counterclockwise about 55°. Target opening direction: 70° (right 0°, up 90°). Release and wait. Expected departure: Ring 8. Expected remainder: 10 rings, 7 bars.

  6. Rotate Ring 9 counterclockwise about 85°. Target opening direction: 155° (right 0°, up 90°). Release and wait. Expected departure: Ring 9. Expected remainder: 9 rings, 7 bars.

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Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Stop pin
Limits how far a ring can turn, so only part of the ring is reachable.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Closed ring
A closed ring has no opening. Release its blocking connections using the surrounding objects; the ring flies away automatically when it is free.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Lower centerOpen
2CenterOpen
3Upper centerClosed
4CenterOpen
5Upper centerOpen
6CenterOpen
7CenterClosed
8Upper centerClosed
9Middle rightOpen
10Lower rightOpen
11Lower rightOpen
  • Ring 8 is connected to a blocking relationship with ring 9. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 9. Check this pair on the diagram.
  • Ring 3 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 10 is connected to a blocking relationship with ring 11. Check this pair on the diagram.
  • Ring 2 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 2 is connected to a blocking relationship with ring 1. Check this pair on the diagram.

Board · C

Level 82 · Schedules C · Board diagram
Board diagram

12 rings, 14 blocking pins, 13 slide bars, 12 clamps

Ring numbers

123456789101112

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 12 · Blocking pins: 14 · Stop pins: 0 · Slide bars: 13 · Clamps: 12 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 10 clockwise about 55°. Target opening direction: 150° (right 0°, up 90°). Release and wait. Expected departure: Ring 10. Expected remainder: 11 rings, 13 bars.

  2. Move S13 right along its track about 4.00 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S13. Expected remainder: 11 rings, 12 bars.

  3. Move S9 down along its track about 3.57 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S9. Expected remainder: 11 rings, 11 bars.

  4. Move S10 down along its track about 4.14 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S10. Expected remainder: 11 rings, 10 bars.

  5. Rotate Ring 11 clockwise about 150°. Target opening direction: 120° (right 0°, up 90°). Release and wait. Expected departure: Ring 11. Expected remainder: 10 rings, 10 bars.

  6. Rotate Ring 4 clockwise about 35°. Target opening direction: 235° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 10 bars.

  7. Rotate Ring 4 clockwise about 61°. Target opening direction: 174° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 10 bars.

  8. Rotate Ring 2 counterclockwise about 1°. Target opening direction: 271° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 10 bars.

  9. Rotate Ring 5 clockwise about 36°. Target opening direction: 234° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 10 bars.

  10. Rotate Ring 1 clockwise about 15°. Target opening direction: 75° (right 0°, up 90°). Release and wait. Expected departure: Ring 1. Expected remainder: 9 rings, 10 bars.

  11. Move S7 down along its track about 1.71 ring radii. Release and wait. No departure is expected yet. Expected remainder: 9 rings, 10 bars.

  12. Rotate Ring 5 counterclockwise about 72°. Target opening direction: 306° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 9 rings, 10 bars.

  13. Rotate Ring 9 counterclockwise about 15°. Target opening direction: 105° (right 0°, up 90°). Release and wait. Expected departure: Ring 9. Expected remainder: 8 rings, 10 bars.

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Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Upper leftOpen
2Lower leftOpen
3Middle leftOpen
4CenterOpen
5Upper centerOpen
6Upper centerOpen
7CenterOpen
8Lower centerOpen
9Upper centerOpen
10Middle rightOpen
11Lower rightOpen
12Middle rightOpen
  • Ring 1 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 3 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 3 is connected to a blocking relationship with ring 2. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 9 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 9 is connected to a blocking relationship with ring 10. Check this pair on the diagram.
  • Ring 8 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 8 is connected to a blocking relationship with ring 7. Check this pair on the diagram.
  • Ring 2 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 6 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 12 is connected to a blocking relationship with ring 7. Check this pair on the diagram.
  • Ring 12 is connected to a blocking relationship with ring 11. Check this pair on the diagram.

Board · D

Level 82 · Schedules D · Board diagram
Board diagram

15 rings, 13 blocking pins, 5 slide bars, 3 clamps

Ring numbers

123456789101112131415

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 15 · Blocking pins: 13 · Stop pins: 3 · Slide bars: 5 · Clamps: 3 · Bombs: 0

Step-by-step walkthrough

Candidate walkthrough; gameplay confirmation is pending. Release after each move and wait for the expected departures. Stop and report the first mismatch. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 4 clockwise about 178°. Target opening direction: 337° (right 0°, up 90°). Release and wait. Expected departure: Ring 4. Expected remainder: 14 rings, 5 bars.

  2. Rotate Ring 1 clockwise about 123°. Target opening direction: 104° (right 0°, up 90°). Release and wait. Expected departure: Ring 1. Expected remainder: 13 rings, 5 bars.

  3. Rotate Ring 6 clockwise about 95°. Target opening direction: 305° (right 0°, up 90°). Release and wait. Expected departure: Ring 6. Expected remainder: 12 rings, 5 bars.

  4. Move S2 left along its track about 6.71 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S2. Expected remainder: 12 rings, 4 bars.

  5. Move S3 down along its track about 1.43 ring radii. Release and wait. Expected departure: Ring 2. Expected remainder: 11 rings, 4 bars.

  6. Move S3 down along its track about 4.57 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S3. Expected remainder: 11 rings, 3 bars.

  7. Rotate Ring 8 counterclockwise about 167°. Target opening direction: 347° (right 0°, up 90°). Release and wait. Expected departure: Ring 8. Expected remainder: 10 rings, 3 bars.

  8. Rotate Ring 12 counterclockwise about 93°. Target opening direction: 43° (right 0°, up 90°). Release and wait. Expected departure: Ring 12. Expected remainder: 9 rings, 3 bars.

  9. Rotate Ring 5 counterclockwise about 92°. Target opening direction: 312° (right 0°, up 90°). Release and wait. Expected departure: Ring 5. Expected remainder: 8 rings, 3 bars.

  10. Rotate Ring 9 counterclockwise about 86°. Target opening direction: 51° (right 0°, up 90°). Release and wait. Expected departure: Ring 9. Expected remainder: 7 rings, 3 bars.

  11. Move S4 up along its track about 4.00 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S4. Expected remainder: 7 rings, 2 bars.

  12. Rotate Ring 13 clockwise about 3°. Target opening direction: 357° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 7 rings, 2 bars.

  13. Move S5 down along its track about 0.71 ring radii. Release and wait. No departure is expected yet. Expected remainder: 7 rings, 2 bars.

  14. Rotate Ring 14 counterclockwise about 140°. Target opening direction: 155° (right 0°, up 90°). Release and wait. Expected departure: Ring 10, Ring 14. Expected remainder: 5 rings, 2 bars.

  15. Move S1 right along its track about 1.57 ring radii. Release and wait. Expected departure: Ring 11. Expected remainder: 4 rings, 2 bars.

  16. Move S1 left along its track about 13.57 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S1. Expected remainder: 4 rings, 1 bars.

  17. Rotate Ring 7 clockwise about 149°. Target opening direction: 195° (right 0°, up 90°). Release and wait. Expected departure: Ring 3, Ring 7. Expected remainder: 2 rings, 1 bars.

  18. Move S5 up along its track about 7.00 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S5. Expected remainder: 2 rings, 0 bars.

  19. Rotate Ring 15 clockwise about 180°. Target opening direction: 310° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 2 rings, 0 bars.

  20. Rotate Ring 15 clockwise about 14°. Target opening direction: 296° (right 0°, up 90°). Release and wait. Expected departure: Ring 15, Ring 13. Expected remainder: 0 rings, 0 bars.

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Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Stop pin
Limits how far a ring can turn, so only part of the ring is reachable.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Lower leftOpen
2Middle leftOpen
3Upper leftOpen
4Middle leftOpen
5CenterOpen
6Upper centerOpen
7Upper centerOpen
8Lower centerOpen
9CenterOpen
10Upper centerOpen
11CenterOpen
12Lower rightOpen
13Middle rightOpen
14Upper rightOpen
15Middle rightOpen
  • Ring 3 is connected to a blocking relationship with ring 7. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 9 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 13 is connected to a blocking relationship with ring 12. Check this pair on the diagram.
  • Ring 13 is connected to a blocking relationship with ring 15. Check this pair on the diagram.
  • Ring 12 is connected to a blocking relationship with ring 8. Check this pair on the diagram.
  • Ring 11 is connected to a blocking relationship with ring 9. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 2 is connected to a blocking relationship with ring 1. Check this pair on the diagram.
  • Ring 10 is connected to a blocking relationship with ring 14. Check this pair on the diagram.

Board · E

Level 82 · Schedules E · Board diagram
Board diagram

10 rings, 12 blocking pins, 6 slide bars, 2 clamps

Ring numbers

12345678910

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 10 · Blocking pins: 12 · Stop pins: 1 · Slide bars: 6 · Clamps: 2 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 8 counterclockwise about 105°. Target opening direction: 240° (right 0°, up 90°). Release and wait. Expected departure: Ring 8. Expected remainder: 9 rings, 6 bars.

  2. Move S6 left along its track about 4.29 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S6. Expected remainder: 9 rings, 5 bars.

  3. Rotate Ring 4 clockwise about 165°. Target opening direction: 75° (right 0°, up 90°). Release and wait. Expected departure: Ring 7. Expected remainder: 8 rings, 5 bars.

  4. Rotate Ring 4 clockwise about 90°. Target opening direction: 345° (right 0°, up 90°). Release and wait. Expected departure: Ring 4. Expected remainder: 7 rings, 5 bars.

  5. Rotate Ring 9 clockwise about 60°. Target opening direction: 30° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 7 rings, 5 bars.

  6. Move S5 left along its track about 2.00 ring radii. Release and wait. No departure is expected yet. Expected remainder: 7 rings, 5 bars.

  7. Move S5 left along its track about 6.29 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S5. Expected remainder: 7 rings, 4 bars.

Report a walkthrough issue

Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Stop pin
Limits how far a ring can turn, so only part of the ring is reachable.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Lower leftOpen
2Upper leftOpen
3CenterOpen
4CenterOpen
5CenterOpen
6CenterOpen
7CenterOpen
8Upper centerOpen
9CenterOpen
10Lower centerOpen
  • Ring 6 is connected to a blocking relationship with ring 9. Check this pair on the diagram.
  • Ring 6 is connected to a blocking relationship with ring 8. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 4. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 9. Check this pair on the diagram.
  • Ring 1 is connected to a blocking relationship with ring 3. Check this pair on the diagram.
  • Ring 2 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 3 is connected to a blocking relationship with ring 5. Check this pair on the diagram.

Board · F / G

Level 82 · Schedules F, G · Board diagram
Board diagram

13 rings, 12 blocking pins, 11 slide bars, 11 clamps

Ring numbers

12345678910111213

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 13 · Blocking pins: 12 · Stop pins: 1 · Slide bars: 11 · Clamps: 11 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 2 clockwise about 150°. Target opening direction: 30° (right 0°, up 90°). Release and wait. Expected departure: Ring 2. Expected remainder: 12 rings, 11 bars.

  2. Move S11 up along its track about 4.00 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S11. Expected remainder: 12 rings, 10 bars.

  3. Move S5 right along its track about 5.57 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S5. Expected remainder: 12 rings, 9 bars.

  4. Rotate Ring 10 clockwise about 55°. Target opening direction: 300° (right 0°, up 90°). Release and wait. Expected departure: Ring 10. Expected remainder: 11 rings, 9 bars.

  5. Rotate Ring 6 clockwise about 150°. Target opening direction: 300° (right 0°, up 90°). Release and wait. Expected departure: Ring 6. Expected remainder: 10 rings, 9 bars.

  6. Rotate Ring 3 clockwise about 150°. Target opening direction: 120° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 9 bars.

  7. Rotate Ring 8 clockwise about 37°. Target opening direction: 53° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 9 bars.

  8. Rotate Ring 11 clockwise about 14°. Target opening direction: 346° (right 0°, up 90°). Release and wait. Expected departure: Ring 11. Expected remainder: 9 rings, 9 bars.

Report a walkthrough issue

Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Stop pin
Limits how far a ring can turn, so only part of the ring is reachable.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Upper leftOpen
2Upper leftOpen
3Lower leftOpen
4Lower leftOpen
5Upper centerOpen
6Upper centerOpen
7Lower centerOpen
8Lower centerOpen
9Upper centerOpen
10Upper centerOpen
11Lower centerOpen
12Upper rightOpen
13Middle rightOpen
  • Ring 9 is connected to a blocking relationship with ring 10. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 1 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 12 is connected to a blocking relationship with ring 9. Check this pair on the diagram.
  • Ring 12 is connected to a blocking relationship with ring 13. Check this pair on the diagram.
  • Ring 6 is connected to a blocking relationship with ring 2. Check this pair on the diagram.
  • Ring 11 is connected to a blocking relationship with ring 8. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 8. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 3. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 3. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 8. Check this pair on the diagram.

Board · H

Level 82 · Schedules H · Board diagram
Board diagram

13 rings, 12 blocking pins, 11 slide bars, 11 clamps

Ring numbers

12345678910111213

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 13 · Blocking pins: 12 · Stop pins: 1 · Slide bars: 11 · Clamps: 11 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 2 clockwise about 165°. Target opening direction: 15° (right 0°, up 90°). Release and wait. Expected departure: Ring 2. Expected remainder: 12 rings, 11 bars.

  2. Move S11 up along its track about 4.00 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S11. Expected remainder: 12 rings, 10 bars.

  3. Move S5 right along its track about 5.71 ring radii. Continue until the bar leaves the board. Release and wait. Expected departure: S5. Expected remainder: 12 rings, 9 bars.

  4. Rotate Ring 10 clockwise about 70°. Target opening direction: 285° (right 0°, up 90°). Release and wait. Expected departure: Ring 10. Expected remainder: 11 rings, 9 bars.

  5. Rotate Ring 6 clockwise about 165°. Target opening direction: 285° (right 0°, up 90°). Release and wait. Expected departure: Ring 6. Expected remainder: 10 rings, 9 bars.

  6. Rotate Ring 3 clockwise about 165°. Target opening direction: 105° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 9 bars.

  7. Rotate Ring 8 clockwise about 37°. Target opening direction: 53° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 10 rings, 9 bars.

  8. Rotate Ring 11 clockwise about 14°. Target opening direction: 346° (right 0°, up 90°). Release and wait. Expected departure: Ring 11. Expected remainder: 9 rings, 9 bars.

Report a walkthrough issue

Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Stop pin
Limits how far a ring can turn, so only part of the ring is reachable.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Upper leftOpen
2Upper leftOpen
3Lower leftOpen
4Lower leftOpen
5Upper centerOpen
6Upper centerOpen
7Lower centerOpen
8Lower centerOpen
9Upper centerOpen
10Upper centerOpen
11Lower centerOpen
12Upper rightOpen
13Middle rightOpen
  • Ring 9 is connected to a blocking relationship with ring 10. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 1 is connected to a blocking relationship with ring 5. Check this pair on the diagram.
  • Ring 12 is connected to a blocking relationship with ring 9. Check this pair on the diagram.
  • Ring 12 is connected to a blocking relationship with ring 13. Check this pair on the diagram.
  • Ring 6 is connected to a blocking relationship with ring 2. Check this pair on the diagram.
  • Ring 11 is connected to a blocking relationship with ring 8. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 8. Check this pair on the diagram.
  • Ring 7 is connected to a blocking relationship with ring 3. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 3. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 8. Check this pair on the diagram.

Board · I

Level 82 · Schedules I · Board diagram
Board diagram

8 rings, 9 blocking pins, 7 slide bars, 7 clamps

Ring numbers

12345678

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 8 · Blocking pins: 9 · Stop pins: 2 · Slide bars: 7 · Clamps: 7 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 8 clockwise about 150°. Target opening direction: 210° (right 0°, up 90°). Release and wait. Expected departure: Ring 8. Expected remainder: 7 rings, 7 bars.

  2. Rotate Ring 6 counterclockwise about 5°. Target opening direction: 185° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 7 rings, 7 bars.

  3. Move S1 down along its track about 0.57 ring radii. Release and wait. No departure is expected yet. Expected remainder: 7 rings, 7 bars.

  4. Rotate Ring 3 counterclockwise about 25°. Target opening direction: 205° (right 0°, up 90°). Release and wait. No departure is expected yet. Expected remainder: 7 rings, 7 bars.

  5. Rotate Ring 3 counterclockwise about 35°. Target opening direction: 240° (right 0°, up 90°). Release and wait. Expected departure: Ring 3. Expected remainder: 6 rings, 7 bars.

Report a walkthrough issue

Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Stop pin
Limits how far a ring can turn, so only part of the ring is reachable.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Closed ring
A closed ring has no opening. Release its blocking connections using the surrounding objects; the ring flies away automatically when it is free.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Lower leftOpen
2Middle leftOpen
3Upper leftOpen
4Lower centerClosed
5CenterOpen
6CenterOpen
7Upper centerOpen
8Lower rightOpen
  • Ring 7 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 2 is connected to a blocking relationship with ring 3. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 1. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 8. Check this pair on the diagram.

Board · J

Level 82 · Schedules J · Board diagram
Board diagram

8 rings, 9 blocking pins, 7 slide bars, 7 clamps

Ring numbers

12345678

Numbers identify the rings on the diagram; they do not specify an operation order.

Diagram legend

Numbers identify individual rings; S labels bars, C labels clamps, and B marks a bomb. Match the colored rings, pins, slide bars and clamps to your board.

Rings: 8 · Blocking pins: 9 · Stop pins: 2 · Slide bars: 7 · Clamps: 7 · Bombs: 0

Step-by-step walkthrough

The complete route is still being worked out. Only the opening moves below passed the current checks; they do not establish a full solution. This candidate assumes a clamp opens when its paired bar leaves; confirm this behavior in the game.

  1. Rotate Ring 8 clockwise about 165°. Target opening direction: 195° (right 0°, up 90°). Release and wait. Expected departure: Ring 8. Expected remainder: 7 rings, 7 bars.

Report a walkthrough issue

Read this board before making a move

Ring
An open ring can rotate. Align its opening with the connecting pin to release that connection. Rings fly away automatically once their connections and constraints are released.
Blocking pin
A fixed pin sitting on a ring's edge. It holds another ring in place, so its gap has to face this pin.Read the mechanism guide →
Stop pin
Limits how far a ring can turn, so only part of the ring is reachable.Read the mechanism guide →
Latch
Holds a ring in place. A stick locks it, so release the stick first and then turn the matching ring.Read the mechanism guide →
Stick
Slide bar. Move it sideways to release the latch it is tied to.Read the mechanism guide →
Closed ring
A closed ring has no opening. Release its blocking connections using the surrounding objects; the ring flies away automatically when it is free.Read the mechanism guide →
Ring positions and connections

Positions refer to the diagram. Connections describe what to inspect, not an additional removal order.

RingPositionType
1Lower leftOpen
2Middle leftOpen
3Upper leftOpen
4Lower centerClosed
5CenterOpen
6CenterOpen
7Upper centerOpen
8Lower rightOpen
  • Ring 7 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 2 is connected to a blocking relationship with ring 3. Check this pair on the diagram.
  • Ring 5 is connected to a blocking relationship with ring 6. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 1. Check this pair on the diagram.
  • Ring 4 is connected to a blocking relationship with ring 8. Check this pair on the diagram.

Frequently asked questions

Which board should I use for level 82?

This page has 9 distinct boards. The default A board has 9 rings and 10 blocking pins. Compare these features and the thumbnails before following its steps.

What do the numbers on the diagram mean?

They identify individual rings, not the operation order. A written step can also describe a bar or latch, so the step number is not always the ring number. Match the ring number named in the instruction with the diagram.

What should I check when I am stuck on level 82?

Check whether the ring is open or closed, whether a stop pin limits rotation and whether a latch is still locked by a bar. Repeated rotation does not remove a fixed obstruction. Compare the neighboring connections, then return to the step for the matching ring number.

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