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Question Number 92862 by mathocean1 last updated on 09/May/20

Exercise     (D):y=x−1  directed by   u^→ (1;1).  his normal vector is v^→ (2;−2).  1) Determinate the equation of  (Δ)   such as t_v^→  =S_((D)) °S_((Δ))   2)Determinate the nature and caracteristics  of this application h=S_((D)) °t_v^→

$$\mathrm{Exercise} \\ $$$$\: \\ $$$$\left(\mathrm{D}\right):\mathrm{y}=\mathrm{x}−\mathrm{1}\:\:\mathrm{directed}\:\mathrm{by}\:\:\:\overset{\rightarrow} {\mathrm{u}}\left(\mathrm{1};\mathrm{1}\right). \\ $$$$\mathrm{his}\:\mathrm{normal}\:\mathrm{vector}\:\mathrm{is}\:\overset{\rightarrow} {\mathrm{v}}\left(\mathrm{2};−\mathrm{2}\right). \\ $$$$\left.\mathrm{1}\right)\:\mathrm{Determinate}\:\mathrm{the}\:\mathrm{equation}\:\mathrm{of}\:\:\left(\Delta\right)\: \\ $$$$\mathrm{such}\:\mathrm{as}\:\mathrm{t}_{\overset{\rightarrow} {\mathrm{v}}} =\mathrm{S}_{\left(\mathrm{D}\right)} °\mathrm{S}_{\left(\Delta\right)} \\ $$$$\left.\mathrm{2}\right)\mathrm{Determinate}\:\mathrm{the}\:\mathrm{nature}\:\mathrm{and}\:\mathrm{caracteristics} \\ $$$$\mathrm{of}\:\mathrm{this}\:\mathrm{application}\:\mathrm{h}=\mathrm{S}_{\left(\mathrm{D}\right)} °\mathrm{t}_{\overset{\rightarrow} {\mathrm{v}}} \\ $$$$ \\ $$

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