Estimates of linear model parameters describing the relationship between temperature and developmental rate of the black soldier fly eggs.</p
Model fitting to the relationship between (A) development rate from egg to adult and (B) mortality r...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Quadratic: n(T) = a + bT + cT2; n(T) represents the longevity function at temperature T (°C); a, b a...
Linear model fitted to observed values of development rate of black soldier fly eggs at constant tem...
Estimates of model parameters describing the relationship between temperature and developmental rate...
Linear and non-linear models fitted to observed values of the development rate of black soldier fly ...
<p>Oocytes developmental rate based on calculating the pre-ovipositing period at 22, 23, 24, 27, and...
Previous empirical models for describing the temperature-dependent development rates for insects inc...
Previous empirical models for describing the temperature-dependent development rates for insects inc...
Models were selected based on highest correlation between observed and fitted residuals. Parameter e...
Mean number of days before oviposition of egg clutch by female black soldier fly (pre-oviposition pe...
Life table parameters of black soldier fly reared on two different diets at constant temperatures.</...
Percentage survival (mean (±SE) of immature life stages of black soldier fly at constant temperature...
<p>Fitted relationships for environmental egg parameters with temperature compared to the data. Left...
Since 1730 when Reaumut introduced the concept of heat units, many methods of calculating thermal ph...
Model fitting to the relationship between (A) development rate from egg to adult and (B) mortality r...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Quadratic: n(T) = a + bT + cT2; n(T) represents the longevity function at temperature T (°C); a, b a...
Linear model fitted to observed values of development rate of black soldier fly eggs at constant tem...
Estimates of model parameters describing the relationship between temperature and developmental rate...
Linear and non-linear models fitted to observed values of the development rate of black soldier fly ...
<p>Oocytes developmental rate based on calculating the pre-ovipositing period at 22, 23, 24, 27, and...
Previous empirical models for describing the temperature-dependent development rates for insects inc...
Previous empirical models for describing the temperature-dependent development rates for insects inc...
Models were selected based on highest correlation between observed and fitted residuals. Parameter e...
Mean number of days before oviposition of egg clutch by female black soldier fly (pre-oviposition pe...
Life table parameters of black soldier fly reared on two different diets at constant temperatures.</...
Percentage survival (mean (±SE) of immature life stages of black soldier fly at constant temperature...
<p>Fitted relationships for environmental egg parameters with temperature compared to the data. Left...
Since 1730 when Reaumut introduced the concept of heat units, many methods of calculating thermal ph...
Model fitting to the relationship between (A) development rate from egg to adult and (B) mortality r...
Understanding the relationship between an insect's developmental rate and temperature is crucial to ...
Quadratic: n(T) = a + bT + cT2; n(T) represents the longevity function at temperature T (°C); a, b a...