Suppose that during normal respiration, the volume of air inhaled per breath (called “tidal volumeâ€�) by a mammal of any size is 6.33 mL per kilogram of body mass. a. Write a function representing the tidal volume T x (in mL) of a mammal of mass x (in kg). b. Write an equation for T − 1 x . c. What does the inverse function represent in the context of this problem? d. Find T − 1 170 and interpret its meaning in context. Round to the nearest whole unit.
Suppose that during normal respiration, the volume of air inhaled per breath (called “tidal volumeâ€�) by a mammal of any size is 6.33 mL per kilogram of body mass. a. Write a function representing the tidal volume T x (in mL) of a mammal of mass x (in kg). b. Write an equation for T − 1 x . c. What does the inverse function represent in the context of this problem? d. Find T − 1 170 and interpret its meaning in context. Round to the nearest whole unit.
Solution Summary: The author explains how to calculate the tidal volume of a mammal of any size during normal respiration.
Suppose that during normal respiration, the volume of air inhaled per breath (called “tidal volume�) by a mammal of any size is 6.33 mL per kilogram of body mass.
a. Write a function representing the tidal volume
T
x
(in mL) of a mammal of mass x (in kg).
b. Write an equation for
T
−
1
x
.
c. What does the inverse function represent in the context of this problem?
d. Find
T
−
1
170
and interpret its meaning in context. Round to the nearest whole unit.
3.1 Limits
1. If lim f(x)=-6 and lim f(x)=5, then lim f(x). Explain your choice.
x+3°
x+3*
x+3
(a) Is 5
(c) Does not exist
(b) is 6
(d) is infinite
1 pts
Let F and G be vector fields such that ▼ × F(0, 0, 0) = (0.76, -9.78, 3.29), G(0, 0, 0) = (−3.99, 6.15, 2.94), and
G is irrotational. Then sin(5V (F × G)) at (0, 0, 0) is
Question 1
-0.246
0.072
-0.934
0.478
-0.914
-0.855
0.710
0.262
.
2. Answer the following questions.
(A) [50%] Given the vector field F(x, y, z) = (x²y, e", yz²), verify the differential identity
Vx (VF) V(V •F) - V²F
(B) [50%] Remark. You are confined to use the differential identities.
Let u and v be scalar fields, and F be a vector field given by
F = (Vu) x (Vv)
(i) Show that F is solenoidal (or incompressible).
(ii) Show that
G =
(uvv – vVu)
is a vector potential for F.
College Algebra with Modeling & Visualization (5th Edition)
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