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Seattle Storm at Portland Fire

SEA 93 – POR 100

August 8, 2026 · Final

Dr. Lila Shah

Best model for this game

Dr. Lila Shah
All models: 12-0
Prediction ranges

In 95 out of 100 simulated runs, each team scored inside its band below — this is about where the final score lands, not a claim about the average.

In 90 out of 100 simulated runs, each team scored inside its band below — this is about where the final score lands, not a claim about the average.

In 85 out of 100 simulated runs, each team scored inside its band below — this is about where the final score lands, not a claim about the average.

In 80 out of 100 simulated runs, each team scored inside its band below — this is about where the final score lands, not a claim about the average.

In 75 out of 100 simulated runs, each team scored inside its band below — this is about where the final score lands, not a claim about the average.

Confidence level for SEA at POR

All 12 models’ predicted scores

SEA — one dot per model POR — one dot per model Actual: SEA 93, POR 100
Vince Chambers Tol Warning
SEA 83.4–88.2 POR 83.4–88.1 Overlap 4.65 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.6–87.7 POR 83.8–87.7 Overlap 3.9 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.9–87.4 POR 84.0–87.4 Overlap 3.33 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 84.0–87.2 POR 84.2–87.3 Overlap 2.96 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 84.3–86.8 POR 84.4–87.1 Overlap 2.4 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Vince Chambers (#1)
t-statistic
-1.80
p-value
7.32e-02

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Reg
SEA 82.1–88.9 POR 83.1–88.9 Overlap 5.78 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 86.0) over Seattle Storm (avg. 85.5) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.6–88.3 POR 83.5–88.4 Overlap 4.78 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 86.0) over Seattle Storm (avg. 85.5) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.0–88.0 POR 83.8–88.1 Overlap 4.13 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 86.0) over Seattle Storm (avg. 85.5) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.3–87.7 POR 84.1–87.9 Overlap 3.63 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 86.0) over Seattle Storm (avg. 85.5) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.5–87.5 POR 84.3–87.7 Overlap 3.21 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 86.0) over Seattle Storm (avg. 85.5) — by under a point. The ranges overlap almost entirely, so one game could go either way.

Show the math
Model
Reg (#2)
t-statistic
-2.27
p-value
2.41e-02

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Dr. Wallace
SEA 81.9–88.6 POR 82.6–88.5 Overlap 5.91 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.6) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.4–88.1 POR 83.1–88.1 Overlap 4.96 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.6) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.8–87.7 POR 83.4–87.8 Overlap 4.32 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.6) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.1–87.5 POR 83.7–87.5 Overlap 3.81 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.6) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.3–87.2 POR 83.9–87.3 Overlap 3.39 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.6) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

Show the math
Model
Dr. Wallace (#3)
t-statistic
-1.57
p-value
1.18e-01

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Kevin Tol Warning
SEA 83.5–89.4 POR 83.6–89.1 Overlap 5.56 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.6) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.8–88.3 POR 84.1–87.9 Overlap 3.76 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.6) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.9–87.4 POR 84.4–87.1 Overlap 2.74 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.6) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 84.1–86.8 POR 84.4–86.9 Overlap 2.4 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.6) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 84.2–86.7 POR 84.5–86.8 Overlap 2.2 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.6) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Kevin (#4)
t-statistic
-0.56
p-value
5.78e-01

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Dr. Lila Shah Tol Warning
SEA 82.4–88.5 POR 83.6–88.7 Overlap 4.84 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.5) over Seattle Storm (avg. 84.6) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.6–87.1 POR 83.8–88.4 Overlap 3.27 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.5) over Seattle Storm (avg. 84.6) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.9–86.6 POR 84.0–87.7 Overlap 2.6 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.5) over Seattle Storm (avg. 84.6) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 83.1–86.4 POR 84.1–87.4 Overlap 2.32 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.5) over Seattle Storm (avg. 84.6) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 83.2–86.1 POR 84.1–87.0 Overlap 1.99 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.5) over Seattle Storm (avg. 84.6) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Dr. Lila Shah (#5)
t-statistic
-4.39
p-value
1.94e-05

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Ice Tol Warning
SEA 83.1–88.8 POR 83.4–87.7 Overlap 4.35 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.3) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.3–87.9 POR 83.6–87.2 Overlap 3.58 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.3) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.6–87.0 POR 84.0–87.0 Overlap 3.05 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.3) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.7–86.7 POR 84.1–86.9 Overlap 2.63 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.3) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 83.9–86.5 POR 84.2–86.5 Overlap 2.27 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.3) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Ice (#6)
t-statistic
-0.09
p-value
9.31e-01

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Jamal Tol Warning
SEA 83.2–88.2 POR 84.0–88.2 Overlap 4.16 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.8) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.6–87.9 POR 84.1–87.9 Overlap 3.79 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.8) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.7–87.3 POR 84.2–87.7 Overlap 3.16 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.8) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.8–86.9 POR 84.4–87.6 Overlap 2.55 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.8) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 83.9–86.8 POR 84.6–87.2 Overlap 2.19 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.8) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Jamal (#7)
t-statistic
-2.86
p-value
4.77e-03

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Jordan Tol Warning
SEA 83.2–88.7 POR 83.8–89.6 Overlap 4.89 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.6–87.8 POR 84.0–87.7 Overlap 3.7 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.7–87.6 POR 84.2–87.4 Overlap 3.28 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.7–87.1 POR 84.3–87.2 Overlap 2.8 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 83.8–86.9 POR 84.4–86.7 Overlap 2.3 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Jordan (#8)
t-statistic
-1.63
p-value
1.05e-01

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Darren "Dimes" Lin Tol Warning
SEA 81.9–88.5 POR 83.8–89.1 Overlap 4.77 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.2) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.4–88.0 POR 83.9–87.7 Overlap 3.78 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.2) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.8–87.6 POR 84.0–86.9 Overlap 2.97 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.2) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 83.0–87.4 POR 84.0–86.9 Overlap 2.82 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.2) — by under a point. The ranges overlap some — there's real uncertainty here.

SEA 83.2–87.2 POR 84.1–86.8 Overlap 2.7 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.2) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Darren "Dimes" Lin (#9)
t-statistic
-2.33
p-value
2.08e-02

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Maya Jefferson Tol Warning
SEA 81.3–89.5 POR 83.4–88.9 Overlap 5.52 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.0–88.9 POR 83.5–88.2 Overlap 4.63 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.4–88.5 POR 83.9–87.7 Overlap 3.74 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.7–88.1 POR 84.1–87.6 Overlap 3.41 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.0–87.8 POR 84.4–87.3 Overlap 2.91 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.4) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Maya Jefferson (#10)
t-statistic
-1.18
p-value
2.41e-01

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Lexi
SEA 81.4–88.7 POR 83.2–88.2 Overlap 4.97 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.0) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.0–88.1 POR 83.6–87.8 Overlap 4.17 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.0) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.4–87.7 POR 83.9–87.5 Overlap 3.65 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.0) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.7–87.4 POR 84.1–87.3 Overlap 3.25 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.0) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.9–87.2 POR 84.2–87.2 Overlap 2.92 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.0) — by under a point. The ranges overlap some — there's real uncertainty here.

Show the math
Model
Lexi (#11)
t-statistic
-3.21
p-value
1.59e-03

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

Coach Sarah Watanabe
SEA 82.2–88.4 POR 82.9–88.6 Overlap 5.53 pts Actual: SEA 93, POR 100

In 95 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 82.7–87.9 POR 83.4–88.1 Overlap 4.58 pts Actual: SEA 93, POR 100

In 90 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.0–87.6 POR 83.7–87.8 Overlap 3.96 pts Actual: SEA 93, POR 100

In 85 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.3–87.4 POR 83.9–87.6 Overlap 3.48 pts Actual: SEA 93, POR 100

In 80 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

SEA 83.5–87.2 POR 84.1–87.4 Overlap 3.08 pts Actual: SEA 93, POR 100

In 75 out of 100 simulated runs, leans Portland Fire (avg. 85.7) over Seattle Storm (avg. 85.3) — by under a point. The ranges overlap almost entirely, so one game could go either way.

Show the math
Model
Coach Sarah Watanabe (#12)
t-statistic
-2.04
p-value
4.29e-02

A low p-value means the two teams' average scores are statistically distinguishable — even when their ranges above overlap. Overlap describes where the final score could land; the test above is about whether the two averages differ. They are different claims, and either can hold without the other.

View as table
Vince Chambers — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 83.4–88.2 83.4–88.1 4.65 pts Yes No
90% 83.6–87.7 83.8–87.7 3.9 pts Yes No
85% 83.9–87.4 84.0–87.4 3.33 pts Yes No
80% 84.0–87.2 84.2–87.3 2.96 pts Yes No
75% 84.3–86.8 84.4–87.1 2.4 pts Yes No
Reg — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 82.1–88.9 83.1–88.9 5.78 pts No
90% 82.6–88.3 83.5–88.4 4.78 pts No
85% 83.0–88.0 83.8–88.1 4.13 pts No
80% 83.3–87.7 84.1–87.9 3.63 pts No
75% 83.5–87.5 84.3–87.7 3.21 pts No
Dr. Wallace — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 81.9–88.6 82.6–88.5 5.91 pts No
90% 82.4–88.1 83.1–88.1 4.96 pts No
85% 82.8–87.7 83.4–87.8 4.32 pts No
80% 83.1–87.5 83.7–87.5 3.81 pts No
75% 83.3–87.2 83.9–87.3 3.39 pts No
Kevin — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 83.5–89.4 83.6–89.1 5.56 pts Yes No
90% 83.8–88.3 84.1–87.9 3.76 pts Yes No
85% 83.9–87.4 84.4–87.1 2.74 pts Yes No
80% 84.1–86.8 84.4–86.9 2.4 pts Yes No
75% 84.2–86.7 84.5–86.8 2.2 pts Yes No
Dr. Lila Shah — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 82.4–88.5 83.6–88.7 4.84 pts Yes No
90% 82.6–87.1 83.8–88.4 3.27 pts Yes No
85% 82.9–86.6 84.0–87.7 2.6 pts Yes No
80% 83.1–86.4 84.1–87.4 2.32 pts Yes No
75% 83.2–86.1 84.1–87.0 1.99 pts Yes No
Ice — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 83.1–88.8 83.4–87.7 4.35 pts Yes No
90% 83.3–87.9 83.6–87.2 3.58 pts Yes No
85% 83.6–87.0 84.0–87.0 3.05 pts Yes No
80% 83.7–86.7 84.1–86.9 2.63 pts Yes No
75% 83.9–86.5 84.2–86.5 2.27 pts Yes No
Jamal — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 83.2–88.2 84.0–88.2 4.16 pts Yes No
90% 83.6–87.9 84.1–87.9 3.79 pts Yes No
85% 83.7–87.3 84.2–87.7 3.16 pts Yes No
80% 83.8–86.9 84.4–87.6 2.55 pts Yes No
75% 83.9–86.8 84.6–87.2 2.19 pts Yes No
Jordan — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 83.2–88.7 83.8–89.6 4.89 pts Yes No
90% 83.6–87.8 84.0–87.7 3.7 pts Yes No
85% 83.7–87.6 84.2–87.4 3.28 pts Yes No
80% 83.7–87.1 84.3–87.2 2.8 pts Yes No
75% 83.8–86.9 84.4–86.7 2.3 pts Yes No
Darren "Dimes" Lin — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 81.9–88.5 83.8–89.1 4.77 pts Yes No
90% 82.4–88.0 83.9–87.7 3.78 pts Yes No
85% 82.8–87.6 84.0–86.9 2.97 pts Yes No
80% 83.0–87.4 84.0–86.9 2.82 pts Yes No
75% 83.2–87.2 84.1–86.8 2.7 pts Yes No
Maya Jefferson — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 81.3–89.5 83.4–88.9 5.52 pts Yes No
90% 82.0–88.9 83.5–88.2 4.63 pts Yes No
85% 82.4–88.5 83.9–87.7 3.74 pts Yes No
80% 82.7–88.1 84.1–87.6 3.41 pts Yes No
75% 83.0–87.8 84.4–87.3 2.91 pts Yes No
Lexi — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 81.4–88.7 83.2–88.2 4.97 pts No
90% 82.0–88.1 83.6–87.8 4.17 pts No
85% 82.4–87.7 83.9–87.5 3.65 pts No
80% 82.7–87.4 84.1–87.3 3.25 pts No
75% 82.9–87.2 84.2–87.2 2.92 pts No
Coach Sarah Watanabe — SEA at POR — Actual: SEA 93, POR 100
Level SEA range POR range Overlap Tol Warning Actual landed in range?
95% 82.2–88.4 82.9–88.6 5.53 pts No
90% 82.7–87.9 83.4–88.1 4.58 pts No
85% 83.0–87.6 83.7–87.8 3.96 pts No
80% 83.3–87.4 83.9–87.6 3.48 pts No
75% 83.5–87.2 84.1–87.4 3.08 pts No