Predictions & Data for this entry

Model: std climate: MC, ME migrate: phylum:
COMPLETE = 2.3 ecozone: MPN food: biCi class:
MRE = 0.071 habitat: 0iMcd gender: D order:
SMSE = 0.008 embryo: Ms reprod: O family:

Zero-variate data

Data Observed Predicted (RE) Unit Description Reference
ab 730 751.9 (0.02999) d age at birth guess
am 1.387e+04 1.387e+04 (2.58e-05) d life span AinsEber2011
Lb 12 12.66 (0.05464) cm total length at birth AinsEber2011
Lp 67.4 67.48 (0.001123) cm total length at puberty for females AinsEber2011
Lpm 70.1 70.1 (5.099e-05) cm total length at puberty for males AinsEber2011
Li 82.5 108 (0.3086) cm ultimate total length for females fishbase
Wwi 3300 3286 (0.004221) g ultimate wet weight for females fishbase
Ri 0.02192 0.02195 (0.001524) #/d maximum reprod rate Eber2005

Uni- and bivariate data

Data Figure Independent variable Dependent variable (RE) Reference
tL_f Data for females, males time since birth total length (0.06857) AinsEber2011
tL_m Data for females, males time since birth total length (0.07679) AinsEber2011

Pseudo-data at Tref = 20°C

Data Generalised animal Bathyraja minispinosa Unit Description
v 0.02 0.0352 cm/d energy conductance
kap 0.8 0.8371 - allocation fraction to soma
kap_R 0.95 0.95 - reproduction efficiency
p_M 18 20.94 J/d.cm^3 vol-spec som maint
k_J 0.002 0.002 1/d maturity maint rate coefficient
kap_G 0.8 0.8005 - growth efficiency

Discussion

  • males are assumed to differ from females by {p_Am} and E_Hp only
  • mod_1: males have equal state variables at b, compared to females

Facts

  • length-weight: Ww in g = 0.00447 * (TL in cm)^3.06 (Ref: fishbase)

Bibliography

Citation