Figure 1 Correlation between between life history parameters

Fill in missing values

#Tables

Table 1 Population growth rate at low population size (r) and at \(B_{MSY}\) (r.c).

                            params
species                          r    r.c
  Clupea harengus            0.408 0.0994
  Pollachius pollachius      0.175 0.0402
  Molva molva                0.138 0.0341
  Sebastes norvegicus        0.120 0.0421
  Mullus surmuletus          0.229 0.0481
  Scopthalmus maximus        0.226 0.0484
  Microstomus kitt           0.321 0.0849
  Lepidorhombus whiffiagonis 0.176 0.0402
  Ammodytes spp.             1.613 0.3651
  Pleuronectes platessa      0.760 0.2724
  Merlangius merlangus       0.760 0.3156
  Melanogrammus aeglefinus   0.732 0.7322
  Lophius piscatorius        2.220 2.2201
  Nephrops                   1.394 1.3942

Table 2 Population doubling time at low population size (r) and at \(B_{MSY}\) (r.c).

           Clupea harengus      Pollachius pollachius 
                     1.698                      3.951 
               Molva molva        Sebastes norvegicus 
                     5.034                      5.766 
         Mullus surmuletus        Scopthalmus maximus 
                     3.033                      3.065 
          Microstomus kitt Lepidorhombus whiffiagonis 
                     2.157                      3.933 
            Ammodytes spp.      Pleuronectes platessa 
                     0.430                      0.912 
      Merlangius merlangus   Melanogrammus aeglefinus 
                     0.912                      0.947 
       Lophius piscatorius                   Nephrops 
                     0.312                      0.497 

Table 3 Elasticity of parameters with respect to productivity at low population size (r) and at \(B_{MSY}\) (r.c).

Table 4 Elasticity of parameters with respect to generation time.

Table 5 Elasticity of parameters with respect to productivity at low population size (r) and at \(B_{MSY}\) (r.c).

Figures

Figure 2 Correlation between population growth rate at low population size (r) and at \(B_{MSY}\) (r.c).

Figure 3 Elasticity analysis (r) and at \(B_{MSY}\) (r.c).

Figure 4 Elasticity analysis generation time.

Figure 5 Elasticity analysis

Figure 6 Elasticity analysis

Figure 7 Elasticity analysis

        var
var            hmsy     fcrash        fmsy       bmsy         msy
  hmsy    1.0000000  0.4890335  0.39323451 -0.4294653  0.94330009
  fcrash  0.4890335  1.0000000  0.96770224 -0.9239296  0.21054378
  fmsy    0.3932345  0.9677022  1.00000000 -0.9821410  0.07674297
  bmsy   -0.4294653 -0.9239296 -0.98214096  1.0000000 -0.10736438
  msy     0.9433001  0.2105438  0.07674297 -0.1073644  1.00000000
  shape  -0.4294653 -0.9239296 -0.98214096  1.0000000 -0.10736438
        var
var           shape
  hmsy   -0.4294653
  fcrash -0.9239296
  fmsy   -0.9821410
  bmsy    1.0000000
  msy    -0.1073644
  shape   1.0000000