Let V = P₂(R) denote the space of real-valued polyomials of degree at most 2, and let S = {x, 1x, 1 — x²} (a) Show that S is a basis for V. (b) Let T : V → V be given by Tp(x) = xp(x). Find the matrix of T with respect to S. (c) Compute kerT. Is T invertible?

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Chapter2: Second-order Linear Odes
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Let V = P₂(R) denote the space of real-valued polyomials of degree at most 2, and let
S = {x, 1-x, 1 – x²}
(a) Show that S is a basis for V.
(b) Let T : V → V be given by Tp(x) = xp(x). Find the matrix of T with respect
to S.
(c) Compute kerT. Is T invertible?
Transcribed Image Text:Let V = P₂(R) denote the space of real-valued polyomials of degree at most 2, and let S = {x, 1-x, 1 – x²} (a) Show that S is a basis for V. (b) Let T : V → V be given by Tp(x) = xp(x). Find the matrix of T with respect to S. (c) Compute kerT. Is T invertible?
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