PE article style guide
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k is the critical distance and can be calculated from the noncentral t-distribution:
\( k = t^{-1}(1 - ∝, n - 1, φ) / \sqrt{n} \)
Where:
1– α = confidence level
n = sample size
\( φ = \sqrt{n}*Z_p = \text{non-centrality factor} (p = \text{coverage}) \)
F can be calculated as:
1. Find the upper tail normal area p** corresponding to zp* = k
2. Find Zp** corresponding to a normal upper tail area of p**2
3. F = 1 / (2 Zp**)
Example (in R) for n = 30 with 95% confidence and 99% coverage (from Table I):
k = qt (0.95, 29, 12.74193) / sqrt (30) = 3.063901
p** = 1 – pnorm (3.063901) = 0.001092356
Zp** = qnorm (0.001092356 / 2, lower.tail = F) = 3.265592
F = 1 / (2* 3.265592) = 0.1531116
Usu eius numquam moderatius ex Erant noster viderer has no, qui an modus commune. Brute atomorum nec ea, sed reque homero temporibus at, pro te fuisset facilisis percipitur. Quis magna conceptam eu per. Alii omittantur liberavisse per in, no expetendis mnesarchum vim. Omnis dignissim cum no, at nostrud liberavisse mea, eos sanctus sadipscing ei. Nam habemus periculis adipiscing an, vidit liber invidunt in ius.
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- Has an copiosae atomorum suavitate.
- Ut mea dicta regione lucilius,
- eu regione delicata per.
- Nam sint comprehensam te,
- Has an copiosae atomorum suavitate.
- Ut mea dicta regione lucilius,
- eu regione delicata per.
- Nam sint comprehensam te,
cu ius lorem consectetuer. Pri ei tota illum essent, ne case brute dissentiunt sit, ex quis vitae neglegentur vis. Pri ex diceret verterem adversarium, sed sint timeam sententiae ne4
Type of Pump |
Pros | Cons |
---|---|---|
Diaphragm | • Easy maintenance • Prevents backflow • Can be self-priming • Low shear |
• Pulsing/lack of precise flow control • Flow control can be improved by multiple pump heads, but that adds cost |
Peristaltic | • Disposable/easy to clean • Feed rate is less affected by varying pressures |
• Pulsing/lack of precise flow control • Can trap air • Pressure limitations (back pressure from column) |
Rotary lobe | • Flow control is more precise and efficient • Low shear |
• Hard to clean/maintain • Less efficient when operated at high pressure • Prone to slip |
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Sed inani ponderum referrentur in.
Lorem ipsum dolor sit amet, no eros viderer interesset sit, pro ridens nominavi ut. Ei eam integre honestatis, eum in justo libris deseruisse, at qui dicant eruditi docendi. Te mutat meliore reprehendunt sed. Magna tantas appareat vel ut, vel ei oblique commune platonem. Has an consul quaestio, noluisse accommodare definitionem pri id.
Sed no invidunt lucilius
nec quodsi euismod ut, id vix porro mandamus. Cu per facete splendide, duo natum errem reformidans in. Quo inermis deserunt cotidieque id, eu pri dico utamur alterum. In sed aperiam repudiandae, vix ea illud atqui postea. Est minim noster laboramus cu.
Total was calculated using Satterthwaite approximation:
$$df_{tot}=\frac{ \left( \sigma _{T}^{2} \right) ^{2}}{\frac{ \left( \frac{ \sigma _{R}^{2}+J\ast \sigma _{L}^{2}}{J} \right) ^{2}}{ \left( I-1 \right) }+\frac{ \left( \sigma _{R}^{2} \left( 1-\frac{1}{J} \right) \right) ^{2}}{I \left( J-1 \right) }} $$
$$df_{tot}=\frac{ \left( 10.223 \right) ^{2}}{\frac{ \left( \frac{5.72+2\ast4.503}{2} \right) ^{2}}{ \left( 15-1 \right) }+\frac{ \left( 5.72 \left( 1-\frac{1}{2} \right) \right) ^{2}}{15 \left( 2-1 \right) }}=23.66 \approx 24 $$
An vel indoctum dissentiunt
mollis signiferumque ne vel. Molestie evertitur vel ut, < 0.5 g/cm2 or 1 g/cm2 Cum ex prompta admodum, has reque sadipscing complectitur in, quas aliquip sadipscing at has. Vim ad natum sensibus vulputate, vim cibo mnesarchum constituam id, at quot ubique ignota sed. Sed no nullam vivendo invenire, suavitate assentior argumentum ea vim.
Solum nobis similique ei mei, vel quidam omittam lobortis ad. Primis vituperata no has, no duo fuisset invidunt adolescens. Porro inermis facilisis sed ea, duo vidit tractatos corrumpit at. Ius cu graecis fierent molestiae, cu illum mucius cum. His ne consul verear voluptaria. Cu usu affert adipiscing, an euismod volumus mei.
Surface imperfection | p values | |||
---|---|---|---|---|
Gravimetric (BSA) | Gravimetric (addendum) | TOC | ||
Micropits | Density factor | 0.917 | ||
Scratches | Depth | 0.000A | 0.369 | 0.637 |
Cleaning agent | 0.642 | 0.000 | ||
Depth × cleaning agent | 0.866 | 0.859 | ||
Roughness | Ra | 0.135 | ||
Pits | Density factor | Dropped | Dropped | Dropped |
Pit depth | Dropped | 0.120 | Dropped | |
Pit aspect ratio | 0.007 | Dropped | Dropped | |
Density factor × pit depth | Dropped | Dropped | Dropped | |
Density factor × pit aspect ratio | 0.000 | Dropped | Dropped | |
Pit depth × pit aspect ratio | 0.000B | Dropped | Dropped | |
Cleaning agent | 0.014C | 0.000D | ||
Soil | Dropped | Dropped | ||
R2 adjusted | 0.900 | 0.130 | 0.900 | |
A Depth > 1.0 mm will trap residue B Diameter > 4.0 mm with depth > 2.6 mm will trap residue |
C Dominant variable D Dominant variable, CIP 100 had the lowest TOC |
|
Ne fastidii eloquentiam sed
soluta theophrastus ei quo. Ea est tation quaeque omittantur, sed salutandi eloquentiam ne. Et ius munere nullam, nam eu virtute adolescens inciderint, mei solet legere fabulas cu. Pro ex diceret percipit voluptatum, est nulla volutpat cu. Dicta saperet eum no, eam dicta aliquando id. Homero eripuit pertinacia ne his, ut vix meis tantas insolens. Id alia voluptaria consectetuer eam, ea tantas viderer
Erant noster viderer has no
qui an modus commune.
Brute atomorum nec ea, sed reque homero temporibus at, pro te fuisset facilisis percipitur. Quis magna conceptam eu per. Alii omittantur liberavisse per in, no expetendis mnesarchum vim. Omnis dignissim cum no, at nostrud liberavisse mea, eos sanctus sadipscing ei. Nam habemus periculis adipiscing an, vidit liber invidunt in ius.
Save the date for the 2020 ISPE Europe Annual Conference in Madrid, Spain, 30 March – 1 April. Visit the conference website to get a sneak peak of what to expect at the 2020 ISPE Europe Annual Conference.
Other Mathjax Samples
The within-location variance (\(ô_{ε}^{2}\)) can be estimated as the mean, (\(Σ_{1}^{B} s_{i}^{2}\))/B, of variances at each location. The between location variance (\(ô_{B}^{2}\)) can be estimated as the variance (\(s_{x}^{2}\)) of location means minus the within-location variance divided by n, (\(ô_{ε}^{2}/n\)). In summary:
Within-location variance: \(ô_{ε}^{2}\) = (\(Σ_{1}^{B} s_{i}^{2}\))/B
Between-location variance: \(ô_{B}^{2}\) = s\(_{x̄}^{2}\) - \(ô_{ε}^{2}/n\)
Total variance = \(ô_{B}^{2}\) + \(ô_{ε}^{2}\)
Pri ne amet fabulas molestiae
laudem labitur duo ea. Apeirian philosophia conclusionemque ex eam, quo an facer omnes albucius. Augue verterem scriptorem ad pro, ea eros mnesarchum per. Dolorum docendi laboramus et vis, eos id possim docendi. Ei his probo voluptua, dicam postulant referrentur in pri, paulo accumsan accusata pri ex.
Has an copiosae atomorum suavitate. Ut mea dicta regione lucilius, eu regione delicata per. Nam sint comprehensam te, cu ius lorem consectetuer. Pri ei tota illum essent, ne case brute dissentiunt sit, ex quis vitae neglegentur vis. Pri ex diceret verterem adversarium, sed sint timeam sententiae ne.
Digitization, Technologies, and More at 2019 ISPE Europe Annual Conference
More than 800 attendees met in Dublin, Ireland, on 1–4 April for the 2019 ISPE Europe Annual Conference—a new record attendance for this conference! Participants at ISPE’s sixth Europe conference learned about how manufacturers, key suppliers, functional peer groups, and regulators expect the pharmaceutical industry to be affected by digitization, new products, changing portfolios, disruptive technologies, and other factors.
Networking & Learning at ISPE Young Professionals Hacka-Thon
Acknowledgments
We appreciate the kind support of the Has an copiosae atomorum suavitate.