344997 The relation between species richness and area is described on a logarithmic scale by the equation ____ Where \(\mathrm{S}=\) Species richness, \(\mathrm{A}=\) area, \(\mathrm{Z}=\) Slope of the line (regression co-efficient), \(\mathrm{C}=\mathrm{Y}\) - intercept
344997 The relation between species richness and area is described on a logarithmic scale by the equation ____ Where \(\mathrm{S}=\) Species richness, \(\mathrm{A}=\) area, \(\mathrm{Z}=\) Slope of the line (regression co-efficient), \(\mathrm{C}=\mathrm{Y}\) - intercept
344997 The relation between species richness and area is described on a logarithmic scale by the equation ____ Where \(\mathrm{S}=\) Species richness, \(\mathrm{A}=\) area, \(\mathrm{Z}=\) Slope of the line (regression co-efficient), \(\mathrm{C}=\mathrm{Y}\) - intercept
344997 The relation between species richness and area is described on a logarithmic scale by the equation ____ Where \(\mathrm{S}=\) Species richness, \(\mathrm{A}=\) area, \(\mathrm{Z}=\) Slope of the line (regression co-efficient), \(\mathrm{C}=\mathrm{Y}\) - intercept
344997 The relation between species richness and area is described on a logarithmic scale by the equation ____ Where \(\mathrm{S}=\) Species richness, \(\mathrm{A}=\) area, \(\mathrm{Z}=\) Slope of the line (regression co-efficient), \(\mathrm{C}=\mathrm{Y}\) - intercept