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Images in Public (Phil_Kay)

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Public (Phil_Kay)

  • 12398_pastedImage_0.png
  • 12401_pastedImage_2.png
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  • Map of Great Britain with Craven, Hertsmere and West Lothian areas highlighted.
  • Map of Great Britain coloured by LifeSat for 2016/17.
  • Maps of southern Scotland and northern England coloured by LifeSat for 2013/14 to 2016/17.
  • LifeSat trends for all areas (smoother fit). Craven, Hertsmere and West Lothian highlighted.
  • LifeSat trends coloured by sample size.
  • LifeSat trends coloured by sample size and split for sample sizes less than and greater than 500.
  • Picture 4 (LifeSat trends for 3 districts and others).jpg
  • Changing factor Custom Design.jpg
  • GB box plot with quantiles.jpg
  • Augmentation of 13-run, 6-factor DSD for estimation of full RSM for any 4 facctors
  • 1_5 8factors plot.jpg
  • A typical chromatogram showing the peaks for each substance or analyte. Taller peaks correspond to a higher amount of that analyte. We want to find conditions that give us the tallest peaks for all analytes so that we can detect substances that are in water at very low concentrations.
  • 1_2 2factors plot.jpg
  • 1_3 3factors plot.jpg
  • 1_4 7factors plot.jpg
  • 1_5 8factors plot.jpg
  • 1_6 8factors DSD plot.jpg
  • 2_3 Full factorial results trellis.jpg
  • 2_3 Full factorial results trellis.jpg
  • 2_4 Distribution.jpg
  • 2_1 DSD trellis.jpg
  • Plot of PkHt(Sum) versus Vol(Inj). Here, we have augmented the scatterplot with density contours to show the distribution of values and a smoothing fit.
  • There are curvilinear behaviours for Speed(Inj) and T(Inj).
  • 2_7 Profiler1.jpg
  • Plot of the model showing settings that maximise PkHt(Sum)
  • 2_10 Profiler4 DSD.jpg
  • 2_2 Table.jpg
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