BZ Presentation

16
BZ Research

Transcript of BZ Presentation

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BZ Research

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High BrO3 = 0.0727Low BrO3 = 0.0364Lower BrO3 = 0.0182

High Br = 0.0227Low Br = 0.0136Lower Br = 0.00455

High MA = 0.114Low MA = 0.0568

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Wave SpeedStable Patterns: 11-41 microns/sec

● Manganese Reactions● Remixes

Trigger Waves: 80-200 microns/sec● Shakashiri recipe - Feroin● Variations of Bromide

“Phase” Wave Patterns: 333-500 microns/sec● Citric Acid Reactions● “Boundary” Reactions

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3D GraphsBlue Value Over Time (HQ 1)

Time in minutes

Blue Value 0-255

Pixels 1-1000

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3D Graphs cont.Red Value Over Time (HQ 1)

Time in minutes

Red Value 0-255

Pixels 1-1000

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HQ 1Shakhashiri recipe - Feroin, 6 ml BrO3, 0. 6 ml H2SO4, 1 ml Br , 2.5 ml MA, 1 ml Feroin - 16x speed - edited

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3D Graphs cont.Blue Value Over Time (HQ 2)

Time in minutes

Blue Value 0-255

Pixels 1-1000

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3D Graphs cont.Red Value Over Time (HQ 2)

Time in minutes

Red Value 0-255

Pixels 1-1000

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HQ 2Shakhashiri recipe - Feroin, 6 ml BrO3, 0.6 ml H2SO4, 1 ml Br, 2 5 ml MA, 1 ml Fe (remix) - 16x speed - edited

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3D Graphs cont.Blue Value Over Time (HQ 3)

Time in minutes

Blue Value 0-255

Pixels 1-1000

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3D Graphs cont.Red Value Over Time (HQ 3)

Time in minutes

Red Value 0-255

Pixels 1-1000

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HQ 3Our recipe - Feroin, 2 ml BrO3, 1.9 ml H2SO4, 0.3 ml Br, 2.5 ml MA, 3.3 ml H2O, 1 ml Fe - 16x speed - edited

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3D Graphs cont.Blue Value Over Time (HQ 4)

Time in minutes

Blue Value 0-255

Pixels 1-1000

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3D Graphs cont.Red Value Over Time (HQ 4)

Time in minutes

Red Value 0-255

Pixels 1-1000

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HQ 4Our recipe - Feroin, 2 ml BrO3, 1.9 ml H2SO4, 0.3 ml Br, 2.5 ml MA, 3.3 ml H2O, 1 ml Fe (remix) - 16x speed - edited

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SimulationWave Speed:- Evidence that wavespeed is consistent across “normal” bromide levels (i.e 200 microns/sec)Mixed Catalyst:- Evidence for catalyst thresholds of oscillation/non-oscillation (and an in-between range) that correspond to some of the empirical results.

- Possible representation of sync/target/sync-target behavior?Changing f:- Both diffusion coefficient D and f (set to approach 2) drive oscillation, but only D drives synchronization.