Linear algebra 11. A logging company logs in 3 different regions, with the following species mix and densities: Volume/hectare 330 m3/ha 390 m3/ha 290 m2/ha | Region West North East % Pine 70 10...
11. A logging company logs in 3 different regions, with the following species mix and densities: Volume/hectare 330 m3/ha 390 m3/ha 290 m2/ha | Region West North East % Pine 70 10 96 Spruce | % Fir 10 30 75 20 60 20 Create a linear map where input vectors is the hectares logged in each region, and output vectors are the cubic meters of each type of wood obtained. 12. When forces f,f,,f (in Newtons) are applied at points 1, 2, and 3 on a structural beam, the deflection (in centimeters) of the beam at each point is given in the table below. 1 N applied at point 1 1 N applied at point 2 1N applied at point 3 Point 1 .005 cm Point 2 002 cm Point 3 001 cm 001 cm 002 cm 005 cm 002 cm 004 cm 002 cm Create a linear map where input vectors are the forces applied at each point, and output vectors are the deflections at each point.
11. A logging company logs in 3 different regions, with the following species mix and densities: Volume/hectare 330 m3/ha 390 m3/ha 290 m2/ha | Region West North East % Pine 70 10 96 Spruce | % Fir 10 30 75 20 60 20 Create a linear map where input vectors is the hectares logged in each region, and output vectors are the cubic meters of each type of wood obtained. 12. When forces f,f,,f (in Newtons) are applied at points 1, 2, and 3 on a structural beam, the deflection (in centimeters) of the beam at each point is given in the table below. 1 N applied at point 1 1 N applied at point 2 1N applied at point 3 Point 1 .005 cm Point 2 002 cm Point 3 001 cm 001 cm 002 cm 005 cm 002 cm 004 cm 002 cm Create a linear map where input vectors are the forces applied at each point, and output vectors are the deflections at each point.