The average energy E (in kcal) needed for a lizard to walk or run a distance of 1 km has been modeled by the equation E(m, v) = 2.65m0.66 4 3.5m0.75 where m is the body mass of the lizard (in grams) and v is its speed (in km/h). Calculate Em(410, 9) and Ea410, 9) and interpret your answers.t Em(410, 9) = kcal/9 (rounded to one decimal place), so the rate at which the energy a lizard needs is changing as its weight increases is kilocalories per gram when m = g and km/h. Ev(410, 9) kcal(km/h) (rounded to one decimal place), so the rate at which the energy a lizard needs is changing as its speed increase is kcal of energy for each 1 km/hr increase in speed, when g and v- m 3D km/h.

College Algebra
10th Edition
ISBN:9781337282291
Author:Ron Larson
Publisher:Ron Larson
Chapter3: Polynomial Functions
Section3.5: Mathematical Modeling And Variation
Problem 7ECP: The kinetic energy E of an object varies jointly with the object’s mass m and the square of the...
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The average energy E (in kcal) needed for a lizard to walk or run a distance
of 1 km has been modeled by the equation
E(m, v) = 2.65m0.66 4 3.5m0.75
where m is the body mass of the lizard (in grams) and v is its speed (in
km/h). Calculate Em(410, 9) and Ea410, 9) and interpret your answers.t
Em(410, 9) =
kcal/9 (rounded to one decimal place), so the rate at
which the energy a lizard needs is changing as its weight increases is
kilocalories per gram when m =
g and
km/h.
Ev(410, 9)
kcal(km/h) (rounded to one decimal place), so the rate
at which the energy a lizard needs is changing as its speed increase is
kcal of energy for each 1 km/hr increase in speed, when
g and v-
m 3D
km/h.
Transcribed Image Text:The average energy E (in kcal) needed for a lizard to walk or run a distance of 1 km has been modeled by the equation E(m, v) = 2.65m0.66 4 3.5m0.75 where m is the body mass of the lizard (in grams) and v is its speed (in km/h). Calculate Em(410, 9) and Ea410, 9) and interpret your answers.t Em(410, 9) = kcal/9 (rounded to one decimal place), so the rate at which the energy a lizard needs is changing as its weight increases is kilocalories per gram when m = g and km/h. Ev(410, 9) kcal(km/h) (rounded to one decimal place), so the rate at which the energy a lizard needs is changing as its speed increase is kcal of energy for each 1 km/hr increase in speed, when g and v- m 3D km/h.
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