Cost of Transatlantic Travel A Boeing 747 crosses the Atlantic Ocean (3000 miles) with an airspeed of 500 miles per hour. The cost C (in dollars) per passenger is given by C ( x ) = 100 + x 10 + 36 , 000 x where x is the ground speed (airspeed ± wind). a. What is the cost per passenger for quiescent (no wind) conditions? b. What is the cost per passenger with a head wind of 50 miles per hour? c. What is the cost per passenger with a tail wind of 100 miles per hour? d. What is the cost per passenger with a head wind of 100 miles per hour?
Cost of Transatlantic Travel A Boeing 747 crosses the Atlantic Ocean (3000 miles) with an airspeed of 500 miles per hour. The cost C (in dollars) per passenger is given by C ( x ) = 100 + x 10 + 36 , 000 x where x is the ground speed (airspeed ± wind). a. What is the cost per passenger for quiescent (no wind) conditions? b. What is the cost per passenger with a head wind of 50 miles per hour? c. What is the cost per passenger with a tail wind of 100 miles per hour? d. What is the cost per passenger with a head wind of 100 miles per hour?
Cost of Transatlantic Travel A Boeing 747 crosses the Atlantic Ocean (3000 miles) with an airspeed of 500 miles per hour. The cost
(in dollars) per passenger is given by
where
is the ground speed (airspeed
wind).
a. What is the cost per passenger for quiescent (no wind) conditions?
b. What is the cost per passenger with a head wind of 50 miles per hour?
c. What is the cost per passenger with a tail wind of 100 miles per hour?
d. What is the cost per passenger with a head wind of 100 miles per hour?
Find the general solution to the differential equation
charity
savings
Budget for May
travel
food
Peter earned $700 during May. The graph
shows how the money was used.
What fraction was clothes?
O Search
Submit
clothes
leisure
Exercise 11.3 A slope field is given for the equation y' = 4y+4.
(a) Sketch the particular solution that corresponds to y(0) = −2
(b) Find the constant solution
(c) For what initial conditions y(0) is the solution increasing?
(d) For what initial conditions y(0) is the solution decreasing?
(e) Verify these results using only the differential equation y' = 4y+4.
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