Problem 1QC: Explain why Theorem 15.7 reduces to the Chain Rule for a function of one variable in the case that z... Problem 2QC: Suppose w = f(x, y, z), where x = g(s, t), y = h(s, t), and z = p(s, t). Extend Theorem 15.8 to... Problem 3QC: If Q is a function of w, x, y, and z, each of which is a function of r, s, and t, how many dependent... Problem 4QC: Use the method of Example 5 to find dy/dx when F(x, y) = x2+xyy37=0.Compare your solution to Example... Problem 1E: Suppose z = f(x, y), where x and y are functions of t. How many dependent, intermediate, and... Problem 2E: Let z be a function of x and y, while x and y are functions of t. Explain how to find dzdt. Problem 3E: Suppose w is a function of x, y and z, which are each functions of t. Explain how to find dwdt. Problem 4E: Let z = f(x, y), x = g(s, t), and y = h(s, t). Explain how to find z/t. Problem 5E: Given that w = F(x, y, z), and x, y, and z are functions of r and s, sketch a Chain Rule tree... Problem 6E: Suppose F(x, y) = 0 and y is a differentiable function of x. Explain how to find dy/dx. Problem 7E: Evaluate dz/dt, where z = x2+y3, x = t2 and y = t, using Theorem 15.7 Check your work by writing z... Problem 8E Problem 9E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 9.... Problem 10E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 10.... Problem 11E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 11.... Problem 12E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 12.... Problem 13E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 13.... Problem 14E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 14.... Problem 15E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 15.... Problem 16E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 16.... Problem 17E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 17.... Problem 18E: Chain Rule with one independent variable Use Theorem 15.7 to find the following derivatives. 18.... Problem 19E: Chain Rule with several independent variables Find the following derivatives. 19.zs and zr, where z... Problem 20E: Chain Rule with several independent variables Find the following derivatives. 20.zs and zt, where z... Problem 21E: Chain Rule with several independent variables Find the following derivatives. 21.zs and zt, where z... Problem 22E: Chain Rule with several independent variables Find the following derivatives. 22.zs and zt, where z... Problem 23E: Chain Rule with several independent variables Find the following derivatives. 23.zs and zt, where z... Problem 24E Problem 25E: Chain Rule with several independent variables Find the following derivatives. 25.ws, and wt where... Problem 26E Problem 27E: Changing cylinder The volume of a right circular cylinder with radius r and height h is V = r2h.... Problem 28E: Changing pyramid The volume of a pyramid with a square base x units on a side and a height of h is... Problem 29E: Derivative practice two ways Find the indicated derivative in two ways: a.Replace x and y to write z... Problem 30E: Derivative practice two ways Find the indicated derivative in two ways: a.Replace x and y to write z... Problem 31E: Making trees Use a tree diagram to write the required Chain Rule formula. 27.w is a function of z,... Problem 32E Problem 33E Problem 34E Problem 35E: Implicit differentiation Given the following equations, evaluate dy/dx. Assume that each equation... Problem 36E: Implicit differentiation Given the following equations, evaluate dy/dx. Assume that each equation... Problem 37E: Implicit differentiation Given the following equations, evaluate dy/dx. Assume that each equation... Problem 38E: Implicit differentiation Given the following equations, evaluate dy/dx. Assume that each equation... Problem 39E: Implicit differentiation Given the following equations, evaluate dy/dx. Assume that each equation... Problem 40E: Implicit differentiation Given the following equations, evaluate dy/dx. Assume that each equation... Problem 41E Problem 42E Problem 43E Problem 44E Problem 45E Problem 46E Problem 47E Problem 48E Problem 49E Problem 50E: Derivative practice Find the indicated derivative for the following functions. 42.z/p, where z =... Problem 51E: Derivative practice Find the indicated derivative for the following functions. 43. dw/dt,, where w =... Problem 52E: Derivative practice Find the indicated derivative for the following functions. 44.w/x, where w = cos... Problem 53E: Derivative practice Find the indicated derivative for the following functions. 45.zx,where1x+1y+1z=1 Problem 54E Problem 55E: Change on a line Suppose w=(x,y,z) and is the line r(t)=at,bt,ct, for t a. Find on w(t) (in... Problem 56E Problem 57E: Implicit differentiation with three variables Use the result of Exercise 56 to evaluate z/x andz/y... Problem 58E Problem 59E Problem 60E: More than one way Let exyz = 2. Find zx and zy in three ways (and check for agreement). a. Use the... Problem 61E: Walking on a surface Consider the following surfaces specified in the form z = f(x, y) and the... Problem 62E: Walking on a surface Consider the following surfaces specified in the form z = f(x, y) and the... Problem 63E: Walking on a surface Consider the following surfaces specified in the form z = f(x, y) and the... Problem 64E: Walking on a surface Consider the following surfaces specified in the form z = f(x, y) and the... Problem 65E: Conservation of energy A projectile with mass m is launched into the air on a parabolic trajectory.... Problem 66E: Utility functions in economics Economists use utility functions to describe consumers relative... Problem 67E: Constant volume tori The volume of a solid torus is given by V=(2/4)(R+r)(Rr)2, where r and R are... Problem 68E: Body surface area One of several empirical formulas that relates the surface area S of a human body... Problem 69E: The Ideal Gas Law The pressure, temperature, and volume of an ideal gas are related by PV = kT,... Problem 70E Problem 71E Problem 72E: Change of coordinates Recall that Cartesian and polar coordinates are related through the... Problem 73E: Change of coordinates continued An important derivative operation in many applications is called the... Problem 75E Problem 76E Problem 77E format_list_bulleted