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irina1246 [14]
1 year ago
4

sustainable development refers to development that meets society's current needs and sustainable development refers to developme

nt that meets society's current needs and does not impede future generations from meeting theirs maintains a consistent energy-in energy-out balance annually caps energy use at current annual levels gradually reduces energy use over time
Chemistry
1 answer:
Sloan [31]1 year ago
3 0

The correct option is to <u>gradually reduce energy use over time. </u>Sustainable development aims to ensure that current needs are met while also protecting the ability of future generations to meet their own needs.

Reducing energy use over time is a key component of this, as it helps to reduce our current dependence on non-renewable resources and makes sure that these resources are not depleted for future generations. Additionally, reducing energy use over time can help to reduce carbon emissions and other environmental impacts, making it an important part of sustainable development.

<h3>The Importance of Sustainable Development for Future Generations</h3>

Sustainable development is an approach that considers the long-term effects of current actions and decisions. It recognizes that our current actions should not compromise the ability of future generations to meet their needs.

This means that energy use should be minimized, and should not exceed the current annual levels. Additionally, energy use should be gradually reduced over time, to ensure that it does not exceed current levels. This approach also maintains a consistent energy-in energy-out balance annually, so that energy use is managed in a sustainable way.

<h3>Complete Question:</h3>

Sustainable development refers to development that meets society's current needs and:

  • Does not impede future generations from meeting theirs.
  • Gradually reduces energy use over time.
  • Caps energy use at current annual levels.
  • Maintains a consistent energy-in energy-out balance annually.

Learn more about the sustainable development :

brainly.com/question/17561826

#SPJ4

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What is the volume of 1.50 lb (pounds) of mercury? The density of mercury is 13.546 g/mL. Use the conversion that 1 kg = 2.20 lb
Arada [10]

Answer:

50.3mL of mercury are in 1.50lb

Explanation:

Punds are an unit of mass. To convert mass to volume we must use density (13.546g/mL). Now, As you can see, density is in grams but the mass of mercury is in pounds. That means we need first, to convert pounds to grams to use density and obtain volume of mercury.

<em>Mass mercury in grams:</em>

1.50lb * (1kg / 2.20lb) = 0.682kg = 682g of mercury.

<em>Volume of mercury:</em>

682g Mercury * (1mL / 13.546g) =

<h3>50.3mL of mercury are in 1.50lb</h3>
7 0
4 years ago
How many grams of chlorine must be added to a balloon containing 8.00 grams of helium to double its volume?
Andrew [12]
The mole number of helium is 8/4=2 mol. Under same condition, the volume of gas is related to the mole number of the gas. So the mole number of chlorine is also 2 mol which is 142 g.
4 0
4 years ago
7.5 moles of nitrogen gas (N2) is formed in the following reaction. How many grams
AfilCa [17]

Answer:

Mass = 255 g

Explanation:

Given data:

Number of moles of nitrogen = 7.5 mol

Mass of ammonia formed = ?

Solution:

Chemical equation:

3H₂ + N₂      →    2NH₃

Now we will compare the moles of nitrogen and ammonia.

             N₂         :        NH₃

               1          :         2

              7.5       :       2/1×7.5 = 15

Mass of ammonia:

Mass = number of moles × molar mass

Mass = 15 mol × 17 g/mol

Mass = 255 g

6 0
3 years ago
Which substance in each of the following pairs would you expect to have the higher boiling point? Explain why.
satela [25.4K]

Explanation:

Boiling point is defined as the temperature when the vapor pressure of liquid becomes equal to the atmospheric pressure surrounding the liquid. And, during this temperature liquid state of substance changes into vapor state.

More stronger is the presence of intermolecular forces within the molecules of a compound more heat is required by it to break the bond. Hence, boiling point will also increase.

(a)  As both Ne and Xe are noble gases and has intermolecular dispersion forces. But as the atomic size of Xe is more than the atomic size of Ne and we know that dispersion forces increases with increase in size.

Hence, boiling point of Xe will be more than the boiling point of Ne.

(b)   Both CO_{2} and CS_{2} are non-polar in nature with intermolecular dispersion forces. So, more is the molecular weight of a compound more heat will be required by it in order to break the bonds.

As molecular weight of CS_{2} is more than the molecular weight of CO_{2}. Hence, CS_{2}  will have high boiling point.

(c)  Molecular weight of CH_{4} is 16 g/mol and molecular weight of Cl_{2} is 35 g/mol.

Hence, Cl_{2} will have high boiling point due to the presence of high molecular weight as compared to CH_{4} and more strong dispersion forces.

(d) F_{2} is a covalent compound so, it will also be non-polar in nature. Hence, it has weak intermolecular dispersion forces. On the other hand, LiF is an ionic compound and it has strong intermolecular forces of attraction due to the presence of opposite charges on the combining atoms.

Hence, LiF will have high boiling point as compared to F_{2}.

(e)  Both NH_{3} and PH_{3} are polar molecules in which dipole-dipole forces does exist. Since, nitrogen atom is more electronegative than phosphorous atom so, it will have stronger hydrogen bonding and strong intermolecular forces.

Hence, NH_{3} will have high boiling point as compared to PH_{3}.

8 0
3 years ago
What was the original pressure in a rigid container if the new pressure is 82.5atm and the temperature was raised from 44C to 67
zhenek [66]

Answer: 54 atm

Explanation:

I did 67/82.5 then got 0.8121212121. I them divided 44 by 0.81212121 and got 54.1791044776

4 0
3 years ago
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