Problem 1PP: Let b1=[100], b2=[340], b3=[363], and x=[823]. a. Show that the set B = {b1, b2, b3} is a basis of... Problem 2PP: The set B = {1 + t, 1 + t2, t + t2} is a basis for p2. Find the coordinate vector of p(t) = 6 + 3t ... Problem 1E: In Exercises 1-4, find the vector x determined by the given coordinate vector [ x ]B and the given... Problem 2E: In Exercises 1-4, find the vector x determined by the given coordinate vector [ x ]B and the given... Problem 3E: In Exercises 1-4, find the vector x determined by the given coordinate vector [ x ]B and the given... Problem 4E: In Exercises 1-4, find the vector x determined by the given coordinate vector [ x ]B and the given... Problem 5E: In Exercises 5-8, find the coordinate vector [ x ]B of x relative to the given basis B =... Problem 6E: In Exercises 5-8, find the coordinate vector [ x ]B of x relative to the given basis B =... Problem 7E: In Exercises 5-8, find the coordinate vector [ x ]B of x relative to the given basis B =... Problem 8E: In Exercises 5-8, find the coordinate vector [ x ]B of x relative to the given basis B =... Problem 9E: In Exercises 9 and 10, find the change-of-coordinates matrix from B to the standard basis in n. 9.... Problem 10E: In Exercises 9 and 10, find the change-of-coordinates matrix from B to the standard basis in n. 10.... Problem 11E: In Exercises 11 and 12, use an inverse matrix to find [ x ]B for the given x and B. 11.... Problem 12E: In Exercises 11 and 12, use an inverse matrix to find [ x ]B for the given x and B. 12.... Problem 13E: The set B = {1 + t2, t + t2, 1 + 2t + t2} is a basis for p2. Find the coordinate vector of p(t) = 1... Problem 14E: The set B = {1 t2, t t2, 2 2t + t2} is a basis for p2. Find the coordinate vector of p(t) = 3 + t... Problem 15E: In Exercises 15 and 16, mark each statement True or False. Justify each answer. Unless stated... Problem 16E: In Exercises 15 and 16, mark each statement True or False. Justify each answer. Unless stated... Problem 17E: The vectors v1=[13], v2=[28], v3=[37] span 2 but do not form a basis. Find two different ways to... Problem 18E: Let B = {b1,...,bn} be a basis for a vector space V. Explain why the B-coordinate vectors of... Problem 19E: Let S be a finite set in a vector space V with the property that every x in V has a unique... Problem 20E: Suppose {v1,...,v4} is a linearly dependent spanning set for a vector space V. Show that each w in V... Problem 21E: Let B={[14],[29]}. Since the coordinate mapping determined by B is a linear transformation from 2... Problem 22E: Let B = {b1,...,bn} be a basis for n. Produce a description of an n n matrix A that implements the... Problem 23E: Exercises 23-26 concern a vector space V, a basis B = {b1,..., bn}, and the coordinate mapping x [... Problem 24E: Exercises 23-26 concern a vector space V, a basis B = {b1,..., bn}, and the coordinate mapping x [... Problem 25E: Exercises 23-26 concern a vector space V, a basis B = {b1,..., bn}, and the coordinate mapping x [... Problem 26E: Exercises 23-26 concern a vector space V, a basis B = {b1,..., bn}, and the coordinate mapping x [... Problem 27E: In Exercises 27-30, use coordinate vectors to test the linear independence of the sets of... Problem 28E: In Exercises 27-30, use coordinate vectors to test the linear independence of the sets of... Problem 29E: In Exercises 27-30, use coordinate vectors to test the linear independence of the sets of... Problem 30E: In Exercises 27-30, use coordinate vectors to test the linear independence of the sets of... Problem 31E: Use coordinate vectors to test whether the following sets of polynomials span p2. Justify your... Problem 32E: Let p1 (t) = 1 + t2, p2(t) = t 3t2, p3 (t) = 1 + t 3t2. a. Use coordinate vectors to show that... Problem 33E: In Exercises 33 and 34, determine whether the sets of polynomials form a basis for 3. Justify your... Problem 34E: In Exercises 33 and 34, determine whether the sets of polynomials form a basis for 3. Justify your... Problem 35E Problem 36E: [M] Let H = Span{v1,v2, v3} and B ={v1,v2, v3}. Show that B is a basis for H and x is in H, and find... Problem 37E: [M] Exercises 37 and 38 concern the crystal lattice for titanium, which has the hexagonal structure... Problem 38E: [M] Exercises 37 and 38 concern the crystal lattice for titanium, which has the hexagonal structure... format_list_bulleted