Predictions & Data for this entry

Model: abj climate: MB migrate: phylum:
COMPLETE = 2.5 ecozone: MAW food: biO class:
MRE = 0.058 habitat: 0iMcd gender: D order:
SMSE = 0.007 embryo: Mbf reprod: O family:

Zero-variate data

Data Observed Predicted (RE) Unit Description Reference
am 8760 8773 (0.001473) d life span FlinMidw2019
Lp 12.6 11.68 (0.07268) cm total length at puberty fishbase
Li 70 71.71 (0.02448) cm ultimate total length fishbase
Wwb 2.145 1.998 (0.06841) g wet weight at birth smithonian
Wwp 23.36 23.82 (0.0199) g wet weight at puberty fishbase
Wwi 5360 5509 (0.02771) g ultimate wet weight fishbase
Ri 0.1781 0.1727 (0.03) #/d maximum reprod rate smithonian

Uni- and bivariate data

Data Figure Independent variable Dependent variable (RE) Reference
tL_f Data for females, males time since birth total length (0.05211) FlinMidw2019
tL_m Data for females, males time since birth total length (0.06756) FlinMidw2019
LWw total length wet weight (0.1129) FlinMidw2019

Pseudo-data at Tref = 20°C

Data Generalised animal Ariopsis felis Unit Description
v 0.02 0.009248 cm/d energy conductance
p_M 18 11.01 J/d.cm^3 vol-spec som maint
k_J 0.002 0.0006268 1/d maturity maint rate coefficient
k 0.3 0.298 - maintenance ratio
kap 0.8 0.9579 - allocation fraction to soma
kap_G 0.8 0.7991 - growth efficiency
kap_R 0.95 0.95 - reproduction efficiency

Discussion

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

Facts

  • length-weight: W in g = 0.00759 *(TL in cm)^3.17 (Ref: fishbase)

Bibliography

Citation