Life science: flights of homing pigeons. It is known that homing pigeons tend to avoid flying over water in the daytime, perhaps because downdrafts of air over water make flying difficult. Suppose a homing pigeon is released on an island at point C , which is 3 mi directly out in the water from a point B on shore. Point B is 8 mi downshore from the pigeon’s home loft at point A . Assume that a pigeon flying over water uses energy at a rate 1.28 times the rate over land. Toward what point S downshore from A should the pigeon fly in order to minimize the total energy required to get to the home loft at A ? Assume that S is 4.245 mi downshore from A . Total energy = ( Energy rate over water ) × ( Distance over water ) + ( Energy rate over land ) × ( Distance over land ) .
Life science: flights of homing pigeons. It is known that homing pigeons tend to avoid flying over water in the daytime, perhaps because downdrafts of air over water make flying difficult. Suppose a homing pigeon is released on an island at point C , which is 3 mi directly out in the water from a point B on shore. Point B is 8 mi downshore from the pigeon’s home loft at point A . Assume that a pigeon flying over water uses energy at a rate 1.28 times the rate over land. Toward what point S downshore from A should the pigeon fly in order to minimize the total energy required to get to the home loft at A ? Assume that S is 4.245 mi downshore from A . Total energy = ( Energy rate over water ) × ( Distance over water ) + ( Energy rate over land ) × ( Distance over land ) .
Life science: flights of homing pigeons. It is known that homing pigeons tend to avoid flying over water in the daytime, perhaps because downdrafts of air over water make flying difficult. Suppose a homing pigeon is released on an island at point C, which is 3 mi directly out in the water from a point B on shore. Point B is 8 mi downshore from the pigeon’s home loft at point A. Assume that a pigeon flying over water uses energy at a rate 1.28 times the rate over land. Toward what point S downshore from A should the pigeon fly in order to minimize the total energy required to get to the home loft at A? Assume that
S is 4.245 mi downshore from A.
Total energy
=
(
Energy rate over water
)
×
(
Distance over water
)
+
(
Energy rate over land
)
×
(
Distance over land
)
.
21. Determine for which values of m the function (x) = x™ is a solution to the given equation.
a. 3x2
d²y
dx²
b. x2 d²y
+11x
dy
- 3y = 0
dx
dy
dx2
x dx
5y
= 0
help me solve this
help me solve this
Chapter 2 Solutions
Calculus and Its Applications Plus MyLab Math with Pearson eText -- Access Card Package (11th Edition) (Bittinger, Ellenbogen & Surgent, The Calculus and Its Applications Series)
University Calculus: Early Transcendentals (4th Edition)
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, calculus and related others by exploring similar questions and additional content below.
Compound Interest Formula Explained, Investment, Monthly & Continuously, Word Problems, Algebra; Author: The Organic Chemistry Tutor;https://www.youtube.com/watch?v=P182Abv3fOk;License: Standard YouTube License, CC-BY
Applications of Algebra (Digit, Age, Work, Clock, Mixture and Rate Problems); Author: EngineerProf PH;https://www.youtube.com/watch?v=Y8aJ_wYCS2g;License: Standard YouTube License, CC-BY