User:IssaRice/Linear algebra/Dual basis: Difference between revisions
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<math>\varphi_1(a \times CO_2 + b \times CO) = a</math> | <math>\varphi_1(a \times CO_2 + b \times CO) = a</math> | ||
<math>\varphi_2(a \times CO_2 + b \times CO) = b</math> | <math>\varphi_2(a \times CO_2 + b \times CO) = b</math> | ||
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<math>\varphi_1(c \times C + d \times O) = c</math> | <math>\varphi_1(c \times C + d \times O) = c</math> | ||
<math>\varphi_2(c \times C + d \times O) = d</math> | <math>\varphi_2(c \times C + d \times O) = d</math> | ||
Revision as of 05:30, 30 July 2019
see p. 224 of https://terrytao.files.wordpress.com/2011/06/blog-book.pdf
the following example is based on p. 115 of https://terrytao.files.wordpress.com/2016/12/linear-algebra-notes.pdf
Let be the space of all mixtures of CO2 and CO, and let and .
The change of coordinate matrix, from to , is then .
The change of coordinate matrix, from to , is the inverse of , and we have .
Now let us extend this example to discuss dual spaces.
Given some mixture (i.e. linear combination) , the dual basis of consists of two linear functionals such that
Similarly, given some mixture , the dual space of consists of two linear functionals such that