Biodiversity
BIOXII15: BIODIVERSITY AND CONSERVATION

345005 In the species-area relationship, ' \(Z\) ' represents

1 Regression coefficient
2 Species coefficient
3 Speices richness
4 None of the above
BIOXII15: BIODIVERSITY AND CONSERVATION

345006 Alexander Von Humbolt described for the first time:

1 Laws of limiting factor
2 Species area relationships
3 Population Growth equation
4 Ecological Biodiversity
BIOXII15: BIODIVERSITY AND CONSERVATION

345007 The given graph represents
supporting img

1 Population growth
2 Enzyme activity
3 Species area relationship
4 Growth of organisms
BIOXII15: BIODIVERSITY AND CONSERVATION

345008 Which one is incorect w.r.t to equation for \(\mathrm{S}=\mathrm{CA}\) Sps.- area relationship explained by Von Humboldt.

1 \(\mathrm{S}=\) Sps. richness
2 \(\mathrm{S}=\) Slope of line
3 \(Z=\) regression coefficient
4 \(\mathrm{e}=\mathrm{Y}\) - intercept
BIOXII15: BIODIVERSITY AND CONSERVATION

345005 In the species-area relationship, ' \(Z\) ' represents

1 Regression coefficient
2 Species coefficient
3 Speices richness
4 None of the above
BIOXII15: BIODIVERSITY AND CONSERVATION

345006 Alexander Von Humbolt described for the first time:

1 Laws of limiting factor
2 Species area relationships
3 Population Growth equation
4 Ecological Biodiversity
BIOXII15: BIODIVERSITY AND CONSERVATION

345007 The given graph represents
supporting img

1 Population growth
2 Enzyme activity
3 Species area relationship
4 Growth of organisms
BIOXII15: BIODIVERSITY AND CONSERVATION

345008 Which one is incorect w.r.t to equation for \(\mathrm{S}=\mathrm{CA}\) Sps.- area relationship explained by Von Humboldt.

1 \(\mathrm{S}=\) Sps. richness
2 \(\mathrm{S}=\) Slope of line
3 \(Z=\) regression coefficient
4 \(\mathrm{e}=\mathrm{Y}\) - intercept
BIOXII15: BIODIVERSITY AND CONSERVATION

345005 In the species-area relationship, ' \(Z\) ' represents

1 Regression coefficient
2 Species coefficient
3 Speices richness
4 None of the above
BIOXII15: BIODIVERSITY AND CONSERVATION

345006 Alexander Von Humbolt described for the first time:

1 Laws of limiting factor
2 Species area relationships
3 Population Growth equation
4 Ecological Biodiversity
BIOXII15: BIODIVERSITY AND CONSERVATION

345007 The given graph represents
supporting img

1 Population growth
2 Enzyme activity
3 Species area relationship
4 Growth of organisms
BIOXII15: BIODIVERSITY AND CONSERVATION

345008 Which one is incorect w.r.t to equation for \(\mathrm{S}=\mathrm{CA}\) Sps.- area relationship explained by Von Humboldt.

1 \(\mathrm{S}=\) Sps. richness
2 \(\mathrm{S}=\) Slope of line
3 \(Z=\) regression coefficient
4 \(\mathrm{e}=\mathrm{Y}\) - intercept
BIOXII15: BIODIVERSITY AND CONSERVATION

345005 In the species-area relationship, ' \(Z\) ' represents

1 Regression coefficient
2 Species coefficient
3 Speices richness
4 None of the above
BIOXII15: BIODIVERSITY AND CONSERVATION

345006 Alexander Von Humbolt described for the first time:

1 Laws of limiting factor
2 Species area relationships
3 Population Growth equation
4 Ecological Biodiversity
BIOXII15: BIODIVERSITY AND CONSERVATION

345007 The given graph represents
supporting img

1 Population growth
2 Enzyme activity
3 Species area relationship
4 Growth of organisms
BIOXII15: BIODIVERSITY AND CONSERVATION

345008 Which one is incorect w.r.t to equation for \(\mathrm{S}=\mathrm{CA}\) Sps.- area relationship explained by Von Humboldt.

1 \(\mathrm{S}=\) Sps. richness
2 \(\mathrm{S}=\) Slope of line
3 \(Z=\) regression coefficient
4 \(\mathrm{e}=\mathrm{Y}\) - intercept