7. In class, we learned about the predator-prey system of differential equa- tions. Here's a system using mice M(t) and hawks H(t), with t measured in days. M' = aM - BMH H' -XH+yMH - (a) The parameter a is a growth rate of the mouse popula- tion, and 3 represents the rate at which interactions between mice and hawks result in the death of the mouse. What are the units of a and 3 (remember, the units on both sides of the equation must match)?

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7. In class, we learned about the predator-prey system of differential equa-
tions. Here's a system using mice M(t) and hawks H(t), with t measured
in days.
M'aM- BMH
H' = −λH +7MH
(a)
The parameter a is a growth rate of the mouse popula-
tion, and 3 represents the rate at which interactions between mice
and hawks result in the death of the mouse. What are the units of
a and 3 (remember, the units on both sides of the equation must
match)?
Transcribed Image Text:7. In class, we learned about the predator-prey system of differential equa- tions. Here's a system using mice M(t) and hawks H(t), with t measured in days. M'aM- BMH H' = −λH +7MH (a) The parameter a is a growth rate of the mouse popula- tion, and 3 represents the rate at which interactions between mice and hawks result in the death of the mouse. What are the units of a and 3 (remember, the units on both sides of the equation must match)?
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