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APES - Fall Final FRQ and Math Problems All Solved Correct Updated.

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Subido en
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Escrito en
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Chapter 1 Math Connection: If a made-up population has a crude birth rate of 39 and a crude death rate of 14, calculate the percent annual natural increase. Calculate the doubling time using the rule of 70. - Answer 2.5% 39 births - 14 deaths/100 x 100% = 2.5% 28 years DT = 70/2.5% = 28 years Chapter 1 Math Connection: Imagine that within a population of humans, there were 28 births per 1000 people (crude birth rate) and 10 deaths per 1000 people (crude death rate). Calculate the annual natural increase for this population. Calculate the doubling time using the rule of 70. - Answer 1.8% 28 births - 10 deaths/1000 x 100% = 1.8% 39 years 70/1.8% = 39 years Chapter 2 Math Connection: A watt is a measurement of power that expresses the rate at which a device uses electricity. For example, a 60-watt lightbulb draws a constant 60 watts of electricity while it is turned on. Electricity is measured in kilowatt hours. One kWh represents the amount of energy needed by a 1000-watt device to operate for one hour. Leaving a 100-watt lightbulb on for 10 hours consumes 1 kWh of energy. Coal burning powerplants generate a constant output of electricity. Calculate the amount of power in kWh produced from burning one ton of coal. Use the following: 1 ton = 2000 lbs 12,500 BTU = 1 lb 1 kWh = 3412 BTU - Answer 7327 kWh electricity 1 ton coal x 2000lbs/1 ton x 12,500BTU/1lb x 1kWh/3412BTU Chapter 2 Math Connection: For a coal burning plant to produce 10,619 kWh of electricity, how many tons of coal would be necessary.

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APES MATH
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APES MATH

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Subido en
15 de diciembre de 2025
Número de páginas
25
Escrito en
2025/2026
Tipo
Examen
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APES - Fall Final FRQ and Math
Problems All Solved Correct 2025-
2026 Updated.
Chapter 1 Math Connection:

If a made-up population has a crude birth rate of 39 and a crude death rate of 14, calculate the

percent annual natural increase.

Calculate the doubling time using the rule of 70. - Answer 2.5%

39 births - 14 deaths/100 x 100% = 2.5%

28 years

DT = 70/2.5% = 28 years



Chapter 1 Math Connection:

Imagine that within a population of humans, there were 28 births per 1000 people (crude birth
rate) and 10 deaths per 1000 people (crude death rate).

Calculate the annual natural increase for this population.

Calculate the doubling time using the rule of 70. - Answer 1.8%

28 births - 10 deaths/1000 x 100% = 1.8%

39 years

70/1.8% = 39 years



Chapter 2 Math Connection:

A watt is a measurement of power that expresses the rate at which a device uses electricity. For
example, a 60-watt lightbulb draws a constant 60 watts of electricity while it is turned on.
Electricity is measured in kilowatt hours. One kWh represents the amount of energy needed by
a 1000-watt device to operate for one hour. Leaving a 100-watt lightbulb on for 10 hours
consumes 1 kWh of energy. Coal burning powerplants generate a constant output of electricity.
Calculate the amount of power in kWh produced from burning one ton of coal. Use the
following:

1 ton = 2000 lbs

12,500 BTU = 1 lb

1 kWh = 3412 BTU - Answer 7327 kWh electricity

1 ton coal x 2000lbs/1 ton x 12,500BTU/1lb x 1kWh/3412BTU

,1 ton = 2000 lbs

12,5000 BTU = 1 lb

1 kWh = 3412 BTU - Answer 1.45 tons of coal

10,619 kWh x 3412BTU/1 kWh x 1lb/12,500BTU x 1 ton/2000lbs = 36,232,028/25,000,000 =
1.45 tons



Chapter 3 Math Connection:

In a laboratory Petri dish with on area of 58 cm?,a population of E. coli bacteria colonies is

estimated at 2320 colonies. How many colonies are there per cm²? - Answer 2320
colonies/58 cm² = 40 colonies per cm²



Chapter 3 Math Connection:

What is the percent change in E. coli colonies?

(52 colonies and 40 colonies) - Answer 30% increase

(52 colonies - 40 colonies)/40 colonies x 100 = 12 colonies/40 colonies x 100 = 30% increase



Chapter 3 Math Connection:

What is the percent difference in colonies of E. coli?

(52 colonies and 40 colonies) - Answer 26.1% difference

(52 colonies - 40 colonies)/(52 colonies + 40 colonies)/2 x 100 = 12 colonies/46 colonies x 100 =
26.1% difference



Chapter 3 Math Connection:

If the population density of White-Toiled Deer in 2015 is 329 per mile? and 632? per mile² in
2022, calculate the percent change and percent difference:

PC: - Answer 92%

1 original - new 1 / original x 100%

329 deer/mi² - 632 deer/mi² /329 deer/mi² x 100% = 92%



Chapter 3 Math Connection:

If the population density of White-Toiled Deer in 2015 is 329 per mile? and 63? per mile² in
2022, calculate the percent change and percent difference:

PD: - Answer 63.1%

, Consider the following data table indicating a total of 11 possible species of bottom dwelling
invertebrates found.

Mayflies - 1 - ?

Stoneflies - 3 - ?

Caddisflies - 5 - ?

Dobson flies - 0 - ?

Midges - 6 - ?

Craneflies - 1 - ?

Dragonflies - 3 - ?

Scuds - 6 - ?

Pouch snails - 6 - ?

Tubiflex worms - 8 - ?

Leeches - 5 - ?

N=?

Sum n(n-1) = ? - Answer Invertebrates - # of orgs - n(n-1)

Mayflies - 1 - 0

Stoneflies - 3 - 6

Caddisflies - 5 - 20

Dobson flies - 0 - 0

Midges - 6 - 30

Craneflies - 1 - 0

Dragonflies - 3 - 6

Scuds - 6 - 30

Pouch snails - 6 - 30

Tubiflex worms - 8 - 56

Leeches - 5 - 20

N = 44

Sum n(n-1) = 198



Chapter 4 Math Connection:

Plug in the total for "N" and the total for "n(n-1)":
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