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A combined multiple-regression and bioenergetics model for simulating fish growth in length and condition
Przemyslaw G. Bajer
, Robert S. Hayward
Fisheries, Wildlife, and Conservation Biology
Research output
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Contribution to journal
›
Article
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peer-review
7
Scopus citations
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Dive into the research topics of 'A combined multiple-regression and bioenergetics model for simulating fish growth in length and condition'. Together they form a unique fingerprint.
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Keyphrases
Fish Growth
100%
Relative Growth Rate
100%
Multiple Regression Model
100%
Bioenergetic Model
100%
White Crappie
50%
Fish Weight
25%
Rationing
12%
Fisheries Management
12%
Fish Species
12%
Aquatic Ecology
12%
Relative Weight
12%
Experimental Duration
12%
Power Function
12%
Length-weight
12%
Condition Factor
12%
G-factor
12%
Species Growth
12%
Modeling Time
12%
Pomoxis Annularis
12%
Fish Size
12%
Daily Prediction
12%
Next Day Prediction
12%
Agricultural and Biological Sciences
Relative Growth Rate
100%
Bioenergy
100%
Pomoxis annularis
12%
Condition Factor
12%
Body Weight
12%
Fisheries Management
12%