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Mathematical analysis of a chemostat system modeling the competition for light and inorganic carbon with internal storage
Fu Yuan Tsai
,
Feng Bin Wang
*
*
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Chang Gung Memorial Hospital
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Earth and Planetary Sciences
Species
100%
Chemostat
100%
Competition
100%
Inorganic Carbon
100%
Carbon
75%
Rate
50%
Persistence
50%
Bicarbonate
50%
Population Growth
50%
Investigation
25%
Shape
25%
Parameter
25%
Show
25%
Consumption
25%
Value
25%
Size
25%
Ion
25%
Coexistence
25%
Shading
25%
Phytoplankton
25%
Extinction
25%
Pool
25%
Carbonic Acid
25%
Water Column
25%
Population Density
25%
Assimilation
25%
Photosynthesis
25%
Medicine and Dentistry
Carbon
100%
Mathematical Analysis
100%
Species
80%
Carbon Dioxide
40%
Carbonic Acid
40%
Population Growth
40%
Water
20%
Breathing
20%
Breathing Rate
20%
Carbon Fixation
20%
Sodium Bicarbonate
20%
Photosystem
20%
Population Density
20%
Uptake Rates
20%