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Question
data table one: limiting factors of cricket frogs
| limiting factor | beginning frog count | ending frog count | overall population change | amount of change |
|---|---|---|---|---|
| low predators | 50,000 | 90,000 | increase | 40,000 |
| high predators | 20,000 | 50,000 | increase | 30,000 |
| low pollution | 20,000 | 50,000 | increase | 30,000 |
| high pollution | 5,000 | 35,000 | increase | 30,000 |
| low food source | 50,000 | 25,000 | decrease | 25,000 |
| high food source | 50,000 | 85,000 | increase | 35,000 |
Since the problem isn't clearly stated, I'll assume a common question like calculating the amount of change for a missing row or analyzing trends. Let's take the "High Predators" row to find the amount of change (though it's given, let's verify).
Step1: Recall formula for amount of change
Amount of Change = Ending Frog Count - Beginning Frog Count
Step2: Plug in values for High Predators
Ending = 50,000, Beginning = 20,000
Amount of Change = 50,000 - 20,000 = 30,000 (matches the table, so formula works)
If we take "Low Food Source" to verify decrease:
Step1: Use same formula
Amount of Change = 25,000 - 50,000 = -25,000 (but table shows 25,000 decrease, so absolute value makes sense here as "amount" of change)
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For example, the amount of change for High Predators is 30,000 (calculated as 50,000 - 20,000). The formula for amount of change is $ \text{Amount of Change} = \text{Ending Frog Count} - \text{Beginning Frog Count} $.