Type “personal ecological footprint calculator” into a search engine and use one of the resulting calculators to estimate your footprint. Is your current lifestyle sustainable? If not, what choices can you make to influence your own ecological footprint?

Short Answer

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The ecological footprint estimates by calculating what an individual eats, energy consumption, and waste generation for their sustainable lifestyle.

Step by step solution

01

Ecology

The branch of science in which the balance among the interactive relationship of living beings and surroundings is studied is called ecology.

Some applications associated with ecology are soil conservation, land utilization, agriculture, pollution, natural resource management, and human social interaction.

02

Resources

In biology and ecology, the available supply of valuable environmental substances on earth that satisfies the needs of living beings is called resources.

The natural (resources that nature gifts in larger quantities and utilized by people without alteration) and human or man-made (resources that humans make from natural resources) resources are classified as two different kinds of resources found on earth.

The natural resources examples are sun, forest, animals, soil, air, rock, crude oil, and water resources. Human-made resources are roads, vehicles, machinery, money, metals, papers, rubber, and brass.

03

Ecological footprint

Interdisciplinary fields, such as environmental science, define ecological footprint as a scientific concept that tells about the land, water, and resources that individuals demand from nature to support their lifestyle.

The calculation of ecological footprint determines its influence on an individual’s life. One can make choices of demand from nature like the amount of food supply and consumption, energy utilization, number of children, and amount of waste generation to reduce the ecological footprint.

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Most popular questions from this chapter

In 2014, the United States had a population of 320 million people. If the (annual) per capita change in population size (r∆t) was 0.005, how many people were added to the population that year (ignoring immigration and emigration)? What would you need to know to determine whether the United States is currently experiencing exponential growth?

Explain why a population that fits the logistic growth model increases more rapidly at intermediate size than at relatively small and large sizes.

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To estimate which age cohort in a population of females produces the most female offspring, you need information about the number of offspring produced per capita within that cohort and the number of individuals alive in the cohort. Make this estimate for Belding’s ground squirrels by multiplying the number of females alive at the start of the year (column 2 in Table 53.1) by the average number of female offspring produced per female (column 5 in Table 53.1). Draw a bar graph with female age in years on the x-axis (0–1, 1–2, and so on) and total number of female offspring produced for each age cohort on the y-axis. Which cohort of female Belding’s ground squirrels produces the most female young?

According to the logistic growth equation\(\frac{{dN}}{{dt}} = rN\frac{{(K - N)}}{K}\)

(A) the number of individuals added per unit time is greatest when Nis close to zero.

(B) the per capita population growth rate increases as Napproaches K.

(C) population growth is zero when Nequals K.

(D) the population grows exponentially when Kis small

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