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coldgirl [10]
3 years ago
13

If a disease killed all the mice in a food web how would that effect owls

Chemistry
2 answers:
VikaD [51]3 years ago
8 0
I would assume they would find another food source or die out. 
VARVARA [1.3K]3 years ago
4 0
If a disease killed all of the mice then the owl population would decrease because the owls rely on mice as a food source.
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explain why temperature is not as hot during the summer when a city is on a body of water (for example San Diego vs. Imperial Va
natita [175]

Answer:

because the water brings a cool breeze when the wind blows

Explanation:

4 0
3 years ago
PLEASE HELP!!
uranmaximum [27]

Answer: - 25.8 kJ

The overall process of interest in the question is the following

Hg (g) (650 K) → Hg (l) (297 K)

However, for mercury to pass from a gaseous state in 650 K to a liquid state in 297 K, it must go through a series of steps:

Step 1. Gaseous mercury at 650 K should cool down to 629.88 K, temperature corresponding to the vaporization temperature  of this substance.

Step 2. Gaseous mercury goes to liquid state at 629.88 K .

Step 3. The liquid mercury at 629.88 K is cooled until it reaches 297 K.

This series of steps can be represented through the following <u>diagram</u>:

Hg (g) (650 K) → Hg (g) (629.88 K) → Hg (l) (629.88 K) → Hg (l) (297 K)

                        (1)                             (2)                           (3)

Then the total heat involved in the process will be equal to the sum of the heats inherent to steps 1, 2 and 3. We proceed to calculate the heats for each of the steps.

Step 1:

The heat in step 1 will be given by

Q = n Cp ΔT

where n is the number of moles of mercury, Cp is the heat capacity and ΔT is equal to the difference between the temperatures at the end (T₂) and at the beginning of the process (T₁), that is to say

ΔT = T₂ - T₁

You should know that the <u>heat capacity or thermal capacity is the energy needed to increase the temperature of a certain substance in a unit of temperature.</u> The heat capacity of mercury is Cp = 27.983 J / mol K

Then the heat in step 1 will be,

Q₁ =  75.0 g x \frac{1 mol}{200.59 g} x 27.983 \frac{J}{mol K} x (629.88 K - 650 K)

→ Q₁ = - 210.5 J

Step 2:

In this step a change in the state of the mercury occurs, since it condenses from a gaseous state to a liquid state. In this case the heat involved in the process will be given by ,

Q = - n ΔHvap

where ΔHvap is the enthalpy of vaporization. <u>The enthalpy of vaporization is the amount of energy necessary for the mass unit of a substance that is in equilibrium with its own vapor at a pressure of one atmosphere to pass completely from the liquid state to the gaseous state.</u> Therefore, to determine the energy necessary for the mercury to pass from gaseous state to liquid,<u> the negative of the enthalpy of vaporization must be taken</u>, as it is done in the previous equation with the minus sign that is placed.

The enthalpy of vaporization of mercury is ΔHvap = 59.11 kJ/mol

Then the heat in step 2 will be,

Q₂ =  - 75.0 g x \frac{1 mol}{200.59 g} x 59.11 \frac{kJ}{mol}

→ Q₂ = 22.10 kJ → Q₂ = 22100 J

Step 3:

The heat in step 3 will be

Q₃ = n Cp ΔT  = 75.0 g x \frac{1 mol}{200.59 g} x 27.983 \frac{J}{mol K} x (297 K - 629.88 K)

→ Q₃ = - 3483 J

Finally the heat involved in the overall process will be ,

Q = Q₁ + Q₂ + Q₃ = - 210.5 J - 22100 J - 3483 J = - 25794 J

→ Q = - 25.8 kJ

So,<u> the heat lost when 75.0 g of mercury vapor at 650 K condenses to a liquid at 297 K is - 25.8 K</u>

3 0
3 years ago
The process that occurs when physical forces break rock into smaller pieces without changing the rock's chemical composition is
sp2606 [1]

Answer:

A) Mechanical Weathering

Pls Mark As Brainliest!!!!!!!!!!!!!

Explanation:

Mechanical weathering breaks rocks into smaller pieces without changing their composition. Ice wedging and abrasion are two important processes of mechanical weathering. Chemical weathering breaks down rocks by forming new minerals that are stable at the Earth's surface

4 0
3 years ago
A species with a charge of -1 contains 57 electrons and 80 neutrons. What is the identity of the species. Note: The species show
Inga [223]

In a neutral atom, the number of protons is equal to the number of electrons.

Given that the charge on the ion of the element is -1. This means that there is one electron more than the number of protons in the element.

The atomic number = Number of protons = 57 -1 = 56

Element with atomic number 56 is Barium.

Mass number of the element = Number of protons + Number of neutrons

                                                = 56 + 80 = 136

So the identity of the species: ^{136}Ba^{-}

3 0
3 years ago
PLEASE HELP ME!!
Otrada [13]

Answer:precipitation happens because of the water vapor from the oceans or waters that concern into water and get to the cloud they condense and it rains or it precipitates

Explanation:

4 0
3 years ago
Read 2 more answers
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