Emydura victoriae allStat version: 2021/09/26
model - std NA NA typified model
T_typical °C 24 NA NA typical body temperature
T_ref K 293.15 NA NA Reference temperature
T_A K 8000 NA NA Arrhenius temperature
z - 10.129 NA NA zoom factor for female
F_m l/d.cm^2 6.5 20 NA {F_m}, max spec searching rate
kap_X - 0.8 NA NA digestion efficiency of food to reserve
kap_P - 0.1 NA NA faecation efficiency of food to faeces
v cm/d 0.066034 20 NA energy conductance
kap - 0.86833 NA NA allocation fraction to soma
kap_R - 0.95 NA NA reproduction efficiency
p_M J/d.cm^3 32.2749 20 NA [p_M], vol-spec somatic maint
p_T J/d.cm^2 0 20 NA {p_T}, surf-spec somatic maint
k_J 1/d 0.002 20 NA maturity maint rate coefficient
E_G J/cm^3 7826.74 NA NA [E_G], spec cost for structure
E_Hb J 4679 NA NA maturity at birth
E_Hp J 1.396e+06 NA NA maturity at puberty
h_a 1/d^2 5.612e-10 20 NA Weibull aging acceleration
s_G - 0.0001 NA NA Gompertz stress coefficient
d_X g/cm^3 0.3 NA NA specific density of food
d_V g/cm^3 0.3 NA NA specific density of structure
d_E g/cm^3 0.3 NA NA specific density of reserve
d_P g/cm^3 0.3 NA NA specific density of faeces
mu_X J/ mol 525000 NA NA chemical potential of food
mu_V J/ mol 500000 NA NA chemical potential of structure
mu_E J/ mol 550000 NA NA chemical potential of reserve
mu_P J/ mol 480000 NA NA chemical potential of faeces
mu_C J/ mol 0 NA NA chemical potential of CO2
mu_H J/ mol 0 NA NA chemical potential of H2O
mu_O J/ mol 0 NA NA chemical potential of O2
mu_N J/ mol 48800 NA NA chemical potential of N-waste
n_CX - 1 NA NA chem. index of carbon in food
n_HX - 1.8 NA NA chem. index of hydrogen in food
n_OX - 0.5 NA NA chem. index of oxygen in food
n_NX - 0.15 NA NA chem. index of nitrogen in food
n_CV - 1 NA NA chem. index of carbon in structure
n_HV - 1.8 NA NA chem. index of hydrogen in structure
n_OV - 0.5 NA NA chem. index of oxygen in structure
n_NV - 0.15 NA NA chem. index of nitrogen in structure
n_CE - 1 NA NA chem. index of carbon in reserve
n_HE - 1.8 NA NA chem. index of hydrogen in reserve
n_OE - 0.5 NA NA chem. index of oxygen in reserve
n_NE - 0.15 NA NA chem. index of nitrogen in reserve
n_CP - 1 NA NA chem. index of carbon in faeces
n_HP - 1.8 NA NA chem. index of hydrogen in faeces
n_OP - 0.5 NA NA chem. index of oxygen in faeces
n_NP - 0.15 NA NA chem. index of nitrogen in faeces
n_CC - 1 NA NA chem. index of carbon in CO2
n_HC - 0 NA NA chem. index of hydrogen in CO2
n_OC - 2 NA NA chem. index of oxygen in CO2
n_NC - 0 NA NA chem. index of nitrogen in CO2
n_CH - 0 NA NA chem. index of carbon in H2O
n_HH - 2 NA NA chem. index of hydrogen in H2O
n_OH - 1 NA NA chem. index of oxygen in H2O
n_NH - 0 NA NA chem. index of nitrogen in H2O
n_CO - 0 NA NA chem. index of carbon in O2
n_HO - 0 NA NA chem. index of hydrogen in O2
n_OO - 2 NA NA chem. index of oxygen in O2
n_NO - 0 NA NA chem. index of nitrogen in O2
n_CN - 1 NA NA chem. index of carbon in N-waste
n_HN - 0.8 NA NA chem. index of hydrogen in N-waste
n_ON - 0.6 NA NA chem. index of oxygen in N-waste
n_NN - 0.8 NA NA chem. index of nitrogen in N-waste
z_m - 8.8395 NA NA zoom factor for male
E_Hpm J 523800 NA NA maturity at puberty for maless
c_T - 1.44391 24 NA Temperature Correction factor
p_Am J/d.cm^2 376.484 20 NA {p_Am}, spec assimilation flux
w_X g/mol 23.9 NA NA molecular weight for water-free food
w_V g/mol 23.9 NA NA molecular weight for water-free structure
w_E g/mol 23.9 NA NA molecular weight for water-free reserve
w_P g/mol 23.9 NA NA molecular weight for water-free product (feaces)
M_V mol/cm^3 0.0125523 NA NA [M_V], volume-specific mass of structure
y_V_E mol/mol 0.882074 NA NA yield of structure on reserve
y_E_V mol/mol 1.13369 NA NA yield of reserve on structure
k_M 1/d 0.00412367 20 NA somatic maintenance rate coefficient
k - 0.485005 NA NA maintenance ratio
E_m J/cm^3 5701.37 NA NA [E_m], reserve capacity
m_Em mol/mol 0.825835 NA NA reserve capacity
g - 1.58095 NA NA energy investment ratio
L_m cm 10.129 NA NA maximum structural length
L_T cm 0 NA NA heating length (also applies to osmotic work)
l_T - 0 NA NA scaled heating length
ome - 0.825835 NA NA \omega, contribution of ash free dry mass of reserve to total ash free dry biomass
J_E_Am mol/d.cm^2 0.000684517 20 NA {J_EAm}, max surface-spec assimilation flux
y_E_X mol/mol 0.763636 NA NA yield of reserve on food
y_X_E mol/mol 1.30952 NA NA yield of food on reserve
p_Xm J/d.cm^2 470.605 20 NA {p_Xm}, max spec feeding power
J_X_Am mol/d.cm^2 0.000896391 20 NA {J_XAm}, max surface-spec feeding flux
y_P_X mol/mol 0.109375 NA NA yield of faeces on food
y_X_P mol/mol 9.14286 NA NA yield of food on faeces
y_P_E mol/mol 0.143229 NA NA yield of faeces on reserve
eta_XA mol/J 2.38095e-06 NA NA mass-power couplers for food on assimilation
eta_PA mol/J 2.60417e-07 NA NA mass-power couplers for product on assimlation
eta_VG mol/J 1.60377e-06 NA NA mass-power couplers for structure on growth
J_E_M mol/d.cm^3 5.86816e-05 20 NA [J_EM], vol-spec somatic maint costs
J_E_T mol/d.cm^2 0 20 NA {J_ET}, surface-spec somatic maint costs
j_E_M mol/d.mol 0.00467497 20 NA mass-spec somatic maint costs
j_E_J mol/d.mol 0.00226738 20 NA mass-spec maturity maint costs
kap_G - 0.801885 NA NA \kappa_G, growth efficiency
E_V J/cm^3 6276.15 NA NA [E_V], volume-specific energy of structure
K mol X/l 0.000137906 NA NA half-saturation coefficient
M_Hb mol 0.00850727 NA NA maturity level at birth
U_Hb cm^2.d 12.4281 20 NA scaled maturity level at birth
V_Hb cm^2.d 94.3886 20 NA scaled maturity level at birth
u_Hb - 0.000499525 NA NA scaled maturity level at birth
v_Hb - 0.00379376 NA NA scaled maturity level at birth
M_Hp mol 2.53818 NA NA maturity level at puberty
U_Hp cm^2.d 3707.99 20 NA scaled maturity level at puberty
V_Hp cm^2.d 28161.2 20 NA scaled maturity level at puberty
u_Hp - 0.149035 NA NA scaled maturity level at puberty
v_Hp - 1.13189 NA NA scaled maturity level at puberty
t_E d 106.233 24 NA maximum reserve residence time
t_starve d 122.342 24 0 maximum survival time when starved
s_M - 1 NA 1 acceleration factor at f=1
r_B 1/d 0.00121574 24 1 von Bertalanffy growth rate
W_dWm g 562.195 NA 1 wet weight at maximum growth
dWm g/d 0.30377 24 1 maximum growth in wet weight
U_E0 cm^2.d 156.244 20 1 scaled initial reserve
E_0 J 58823.3 NA 1 initial reserve
M_E0 mol 0.106951 NA 1 initial reserve
Wd_0 g 2.55614 NA 1 initial dry weight
Ww_0 g 8.52046 NA 1 initial wet weight
l_b - 0.152869 NA 1 scaled structural length at birth
L_b cm 1.54841 NA 1 structural length at birth
M_Vb mol 0.0465991 NA 1 structural mass at birth
del_Ub - 0.359819 NA 1 fraction of reserve left at birth
Ww_b g 6.77823 NA 1 wet weight at birth
Wd_b g 2.03347 NA 1 dry weight at birth
E_Wb J 44465.3 NA 1 energy content at birth
a_b d 62.1674 24 1 age at birth
g_Hb - 1.67893 NA NA energy divestment ratio at birth
s_Hbp - 0.00335172 NA NA maturity ratio
s_HLbp - 0.589716 NA 1 maturity density ratio at f=1
l_p - 0.856597 NA 1 scaled structural length at puberty
L_p cm 8.67647 NA 1 structural length at puberty
M_Vp mol 8.19886 NA 1 structural mass at puberty
M_Ep mol 6.7709 NA 1 reserve mass at puberty
Ww_p g 1192.59 NA 1 wet weight at puberty
Wd_p g 357.777 NA 1 dry weight at puberty
E_Wp J 7.82342e+06 NA 1 energy content at puberty
a_p d 1523.17 24 1 age at puberty
g_Hp - 2.84701 NA NA energy divestment ratio at puberty
s_s - 0.0545011 NA 1 supply stress
l_i - 1 NA 1 ultimate scaled structural length
L_i cm 10.129 NA 1 ultimate structural length
M_Vi mol 13.0444 NA 1 ultimate structural mass
M_Ei mol 10.7725 NA 1 ultimate reserve mass
Ww_i g 1897.41 NA 1 ultimate wet weight
Wd_i g 569.223 NA 1 ultimate dry weight
E_Wi J 1.24471e+07 NA 1 ultimate energy content
xi_WE kJ/ g 21.8667 NA 1 whole-body energy density of dry biomass (no reprod buffer)
del_Wb - 0.00357236 NA 1 birth weight as fraction of maximum weight
del_Wp - 0.628536 NA 1 puberty weight as fraction of maximum weight
del_V - 0.547695 NA 1 fraction of max weight that is structure
h_W 1/d 0.000122442 24 1 Weibull ageing rate
h_G 1/d 9.41327e-07 24 1 Gompertz aging rate
S_b - 0.999999 NA 1 survival probability at birth
S_p - 0.997723 NA 1 survival probability at puberty
a_m d 8386.43 24 1 life span
a_99 d 3713.67 24 1 age at length 0.99 * L_i
R_i 1/d 0.0534917 24 1 ultimate reproduction rate
N_i # 339.014 NA 1 life time reproductive output
M_E0_min_G mol 0.0775674 NA NA egg mass whereby growth ceases at birth
M_E0_min_R mol 0.0766862 NA NA egg mass whereby maturation ceases at birth
eb_min_G - 0.150173 NA NA scaled reserve density whereby growth ceases at birth
eb_min_R - 0.0796416 NA NA scaled reserve density whereby maturation ceases at birth
ep_min - 0.81881 NA NA scaled reserve density whereby maturation and growth cease at puberty
sM_min - 1 NA NA acceleration factor whereby maturation ceases at puberty
p_Xb J/d 1629.17 24 1 food intake at birth
J_Xb mol/d 0.00310318 24 1 food intake at birth
F_mb l/d 22.5021 24 1 max searching rate at birth
p_Xp J/d 51154.4 24 1 food intake at puberty
J_Xp mol/d 0.0974369 24 1 food intake at puberty
F_mp l/d 706.545 24 1 max searching rate at puberty
p_Xi J/d 69715.5 24 1 ultimate food intake
J_Xi mol/d 0.132791 24 1 ultimate food intake
F_mi l/d 962.911 24 1 max ultimate searching rate
p_Ab J/d 1303.34 24 1 assimilation at birth
p_Cb J/d 875.549 24 1 mobilisation at birth
p_Sb J/d 173.006 24 1 somatic maintenance at birth
p_Jb J/d 13.484 24 1 maturity maintenance at birth
p_Gb J/d 587.26 24 1 growth at birth
p_Rb J/d 101.799 24 1 maturation at birth
p_Db J/d 288.289 24 1 dissipation at birth
p_Ap J/d 40923.5 24 1 assimilation at puberty
p_Cp J/d 38649.7 24 1 mobilisation at puberty
p_Sp J/d 30439.3 24 1 somatic maintenance at puberty
p_Jp J/d 4025.42 24 1 maturity maintenance at puberty
p_Gp J/d 3121.43 24 1 growth at puberty
p_Rp J/d 1063.59 24 1 reproduction at puberty
p_Dp J/d 35528.3 24 1 dissipation at puberty
p_Ai J/d 55772.4 24 1 ultimate assimilation
p_Ci J/d 55772.4 24 1 ultimate mobilisation
p_Si J/d 48428.9 24 1 ultimate somatic maintenance
p_Ji J/d 4061.72 24 1 ultimate maturity maintenance
p_Gi J/d 0 24 1 ultimate growth
p_Ri J/d 3281.84 24 1 ultimate reproduction
p_Di J/d 52654.7 24 1 ultimate dissipation
J_Cb mol/d 0.000848369 24 1 CO2 flux at birth
J_Cp mol/d 0.0630821 24 1 CO2 flux at puberty
J_Ci mol/d 0.0914865 24 1 ultimate CO2 flux
J_Hb mol/d 0.000902026 24 1 water flux at birth
J_Hp mol/d 0.067072 24 1 water flux at puberty
J_Hi mol/d 0.0972728 24 1 ultimate water flux
J_Ob mol/d 0.00107678 24 1 O2 flux at birth
J_Op mol/d 0.0800658 24 1 O2 flux at puberty
J_Oi mol/d 0.116117 24 1 ultimate O2 flux
J_Nb mol/d 0.000195777 24 1 N-waste flux at birth
J_Np mol/d 0.0145574 24 1 N-waste flux at puberty
J_Ni mol/d 0.0211123 24 1 ultimate N-waste flux
RQ_b mol C/mol O 0.787879 NA 1 resp quotient at birth
UQ_b mol N/mol O 0.181818 NA 1 urine quotient at birth
WQ_b mol H/mol O 0.8 NA 1 water quotient at birth
SDA_b mol O/mol X 0.130957 NA 1 specific dynamic action at birth
VO_b L/h.g -0.000273941 24 1 dioxygen use per gram max dry weight, <J_OD> at birth
p_Tb J/d 567.551 24 1 total heat at birth
RQ_p mol C/mol O 0.787879 NA 1 resp quotient at puberty
UQ_p mol N/mol O 0.181818 NA 1 urine quotient at puberty
WQ_p mol H/mol O 0.8 NA 1 water quotient at puberty
SDA_p mol O/mol X 0.130957 NA 1 specific dynamic action at puberty
VO_p L/h.g -0.000191879 24 1 dioxygen use per gram max dry weight, <J_OD> at puberty
p_Tp J/d 41262.1 24 1 total heat at puberty
RQ_i mol C/mol O 0.787879 NA 1 ultimate resp quotient
UQ_i mol N/mol O 0.181818 NA 1 ultimate urine quotient
WQ_i mol H/mol O 0.8 NA 1 ultimate water quotient
SDA_i mol O/mol X 0.130957 NA 1 ultimate specific dynamic action
VO_i L/h.g -0.000178739 24 1 ultimate dioxygen use per gram max dry weight, <J_OD>
p_Ti J/d 59626.2 24 1 ultimate total heat