Cylindrocopturus furnissi emergence (estimated from observed exit holes) as predicted from degree-day models in 2020 and 2021
Predicted emergence (%) . | GDDa (Date) . | |
---|---|---|
2020 . | 2021 . | |
10 | 704 (4 July) | 816 (26 June) |
50 | 1101 (16 July) | 1003 (3 July) |
90 | 1497 (11 August) | 1190 (13 July) |
Predicted emergence (%) . | GDDa (Date) . | |
---|---|---|
2020 . | 2021 . | |
10 | 704 (4 July) | 816 (26 June) |
50 | 1101 (16 July) | 1003 (3 July) |
90 | 1497 (11 August) | 1190 (13 July) |
aGDD = Growing degree days that have accumulated from the model start date of 1st January at a base temperature of 50 °F (10 °C) and calculated with the single sine method.
Cylindrocopturus furnissi emergence (estimated from observed exit holes) as predicted from degree-day models in 2020 and 2021
Predicted emergence (%) . | GDDa (Date) . | |
---|---|---|
2020 . | 2021 . | |
10 | 704 (4 July) | 816 (26 June) |
50 | 1101 (16 July) | 1003 (3 July) |
90 | 1497 (11 August) | 1190 (13 July) |
Predicted emergence (%) . | GDDa (Date) . | |
---|---|---|
2020 . | 2021 . | |
10 | 704 (4 July) | 816 (26 June) |
50 | 1101 (16 July) | 1003 (3 July) |
90 | 1497 (11 August) | 1190 (13 July) |
aGDD = Growing degree days that have accumulated from the model start date of 1st January at a base temperature of 50 °F (10 °C) and calculated with the single sine method.
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