Population Growth Temperature & Growth Rate Trout Perch Bass 10 20 30 40 Temperature (°C) 8. A study was done on three different fish species living in a pond. The influence of temperature on the growth rates of the fish populations is shown in the graph to the left. a. What is the limiting factor shown in this graph? b. Which temperature produces the highest growth rate for... Perch? Trout?
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Introduction :-
Optimal temperature is the temperature range in which an organism functions best and is able to grow, reproduce, and perform metabolic processes most efficiently. Optimal temperature varies among different species, with some organisms thriving at high temperatures and others at low temperatures
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- 1as In detail, explain what this Analyze & Explain the line represents. graph Growth rate decreasing Growth rate increasing Time 1-Analize and explain the graph. |2-In detail, explain what the red line represents. Number of IndividualsPond B Pond C Figure 3. Representation of three experimental ponds located in the Hagen Aqualab at the University of Guelph. Ponds have one or both of two fish species: Stripey- Orange Clownfish and Black Herring. All ponds have been kept at 20°C for many years and contain large and small worms as food. For each statement, select TRUE if it is consistent, or FALSE if it is not consistent with the information presented above. True Felco If we add 3 Black Herring to Pond A and over time the number of Black Herring returns to 2, then the carrying capacity of Black Herring in Pond A is 5.Species with limited resources usually exhibit a(n)______ growth curve. logistic logical experimental exponential
- Which point has the gatest growth rate(r)?Pond A Pond B at the Pond C Figure 3. Representation of three experimental ponds located in the Hagen Aqualab at the University of Guelph. Ponds have one or both of two fish species: Stripey- Orange Clownfish and Black Herring. All ponds have been kept at 20°C for many years and contain large and small worms as food. True Falce For each statement, select TRUE if it is consistent, or FALSE if it is not consistent with the information presented above. If Pond C is cooled to 10°C and the Stripey-Orange Clownfish die, then 10°C must be below the Stripey-Orange Clownfish's range of tolerance for temperature. △ 英拼5a. On the following figure to the right, correctly label the name of the population growth pattern that the red line and the blue line demonstrates. 5b. Match the following growth equations to the growth curve by drawing a line between the equation and the curve or placing the name of the growth pattern next to the equation. dN (K-N) rN -- dt K dN = rN dT %| Time (t) → 5b. What does K in this figure represent? How and why do population growth rates change as the population nears K? Population size (N)
- Fertilization & deposition Crop export Watershed Leaching & Runoff Mineralization The figure above shows major N inputs and outputs for a watershed dominated by corn/soybean production. Given an annual change in N storage of 1200 Mg yr for the watershed, calculate the rate of leaching & runoff. To answer this question, assume also the following rates (in Mg yr): fertilization & deposition = 4000; mineralization = 4900; and crop export = 5400. %3! Your Answer: Answer14 R F5 Q5.4. Researchers conducted an experiment to determine whether nitrogen or phosphorus is limiting algal growth in a lake. They estimated algal population size under the baseline input level for each nutrient (1X), as well as when nutrient input was doubled (2X), tripled (3X), and quadrupled (4X). Based on their results, which are plotted below, which nutrient (if any) is limiting algal growth? 5 Algal population size 1001 80- 60- 40- 20- 0+ T Submit F6 O 2 3 Nitrogen Input (X baseline) A Di Algal growth is limited by nitrogen. Algal growth is limited by phosphorus. Algal growth is not limited by either nutrient. There is not enough data to determine what limits algal growth. F7 Y F8 4 A IIRA & 7 5 AIR F9 Algal population size * 8 1001 80- 60- 40- 20- 0+ 0 DELL F10 1 2 4 Phosphorus Input (X baseline) 9 ● O 3 F11 O ? O 5 F12 P 85°F Clear A PrtScr B InsertUsing this data calculate growth rate r assuming the growth is exponential and use it to calculate the doubling time.
- Nearpod-12.17.20 Rea Signed in as: Aiden Hun Q Review / v Finish Tes ABC Question 3 A scientist claims that orchid populations will be smaller in areas that have an average spring temperature of 9°C compared to areas that have an average spring temperature of 7°C. Which argument BEST supports this claim? Orchid populations will be smaller at higher temperatures because the probability of male pollinating bees arriving before orchid flowering is lower. This will result in decreased orchid reproduction and smaller populations. A re Orchid populations will be smaller at higher temperatures because the probability of male pollinating bees arriving before orchid flowering is lower. This will result in increased orchid reproduction and smaller populations. Orchid populations will be smaller at higher temperatures because the probability of male pollinating bees arriving before orchid flowering is greater This will result in increased orchid reproduction and smaller populations. Orchid…annual rings exposed edge Figure 3. Growth rings in a perch scale. b. Do the annual rings of the fish scale remind you of growth rings found in another, very different type of organism? Describe that organism:4. a. For an exponentially growing population, calculate umax (units?) based on the data below Time (d) Biomass (mg/L) 0 1 2 75 111 166 248 369 b. Calculate the specific growth rate (µ) of the population above growing at a substrate concentration of 25 mg/L according to Monod kinetics with a ks of 50 mg/L. c. Consider two genetically engineered organisms intended for use in the cleanup of hydrocarbon spills into the ocean. Bacterium alpha has a µmax of 1 d'¹ and a ks of 0.1 mg/L. Bacterium beta has a μmax of 5 d ¹ and a k, of 5 mg/L. If the hydrocarbon concentration is initially 1000 mg/L and the desired objective is to reduce concentrations below 0.1 mg/L what order of addition of the bacterial species is desired? 3 50 4 5