More about the tables [Power / Sample Size]
Dear sample size geeks, nerds, and simul-ants (weirdos for short),
for each combination of design, power, GMR, and CV: Red circles = sample sizes of the Two Lászlós (if >201 none). Green bars =
ABEL (EMA)
4-period 2-sequence full replicate [TRTR|RTRT]
Now a comparison of the reported sample sizes (y-axis) vs.
4-period 2-sequence full replicate [TRTR|RTRT]
RSABE (FDA)
4-period 2-sequence full replicate [TRTR|RTRT]
Comparison of the reported sample sizes (y-axis) vs.
4-period 2-sequence full replicate [TRTR|RTRT]
The upper part of the RSABE sample sizes looks disturbing first. Explanation: Since the sample sizes are generally smaller than for ABEL, the many imbalanced sequences have a larger impact. However, rounding up to the next complete sequence (red circles) in the lower part gives a better match (closer to the unity line).
Maybe you can make sumfink out of it. I still hold that 10,000 simulations are too few.
for each combination of design, power, GMR, and CV: Red circles = sample sizes of the Two Lászlós (if >201 none). Green bars =
sampleN.scABEL(..., nsims = 1e5) or sampleN.RSABE(..., nsims = 1e5); always balanced sequences. Blue circles = twenty runs simulated with 10,000 sim’s each (random seeds). Starting from the respective result, I decreased the sample size whilst maintaining power. This might give unbalanced sample sizes (even sample sizes for the partial replicate and odd ones for the full replicate).ABEL (EMA)
- 3-period 3-sequence partial replicate [TRR|RTR|RTT]
- Power 80%
![[image]](img/uploaded/image667.png)
- Power 90%
![[image]](img/uploaded/image668.png)
- Power 80%
![[image]](img/uploaded/image669.png)
- Power 90%
![[image]](img/uploaded/image670.png)
Now a comparison of the reported sample sizes (y-axis) vs.
PowerTOST’ (x-axis). Blue from the tables, and red up-rounded to the next complete sequence. Do the linear fits closer to the unity line? Sometimes yes, sometimes not.- 3-period 3-sequence partial replicate [TRR|RTR|RTT]
- Power 80%
![[image]](img/uploaded/image671.png)
- Power 90%
![[image]](img/uploaded/image674.png)
- Power 80%
![[image]](img/uploaded/image675.png)
- Power 90%
![[image]](img/uploaded/image676.png)
RSABE (FDA)
- 3-period 3-sequence partial replicate [TRR|RTR|RTT]
- Power 80%
![[image]](img/uploaded/image677.png)
- Power 90%
![[image]](img/uploaded/image681.png)
- Power 80%
![[image]](img/uploaded/image682.png)
- Power 90%
![[image]](img/uploaded/image683.png)
Comparison of the reported sample sizes (y-axis) vs.
PowerTOST’ (x-axis). Blue from the tables, and red up-rounded to the next complete sequence. Do the linear fits get closer to the unity line? Generally yes.- 3-period 3-sequence partial replicate [TRR|RTR|RTT]
- Power 80%
![[image]](img/uploaded/image684.png)
- Power 90%
![[image]](img/uploaded/image685.png)
- Power 80%
![[image]](img/uploaded/image686.png)
- Power 90%
![[image]](img/uploaded/image687.png)
The upper part of the RSABE sample sizes looks disturbing first. Explanation: Since the sample sizes are generally smaller than for ABEL, the many imbalanced sequences have a larger impact. However, rounding up to the next complete sequence (red circles) in the lower part gives a better match (closer to the unity line).
Maybe you can make sumfink out of it. I still hold that 10,000 simulations are too few.
—
Dif-tor heh smusma 🖖🏼 Довге життя Україна!![[image]](https://static.bebac.at/pics/Blue_and_yellow_ribbon_UA.png)
Helmut Schütz
![[image]](https://static.bebac.at/img/CC by.png)
The quality of responses received is directly proportional to the quality of the question asked. 🚮
Science Quotes
Dif-tor heh smusma 🖖🏼 Довге життя Україна!
![[image]](https://static.bebac.at/pics/Blue_and_yellow_ribbon_UA.png)
Helmut Schütz
![[image]](https://static.bebac.at/img/CC by.png)
The quality of responses received is directly proportional to the quality of the question asked. 🚮
Science Quotes
Complete thread:
- Simulations 101 Helmut 2020-05-26 23:47
- Simulations 101 d_labes 2020-05-27 19:30
- Simulations 101 Helmut 2020-05-27 21:06
- Simulations 101 d_labes 2020-05-28 18:34
- Simulations 101 Helmut 2020-05-27 21:06
- More about the tablesHelmut 2020-05-29 13:30
- Simulations 101 d_labes 2020-05-27 19:30
