Why sunlight is an essential source of life sustenance on Earth ?​

Answers

Answer 1

Answer:

The sun is important to Earth because it helps regulate the climate, is the main source of energy for producers in the ecosystems and it keeps the oceans from freezing, along with providing light. If just one of these factors changed dramatically, it would impact all life on Earth. Without the sun, the planet’s oceans would freeze, temperatures would drop and all life would die off without light or food.

The sun is important to every single aspect of life on the planet. Human life could not exist without it because it would cause all of the water and food sources to cease to exist. The sun is in no danger of disappearing any time soon. Scientists estimate the sun has at least another 5 billion years before it turns into a red giant and swallows up Mercury and Venus. It will also destroy all life on Earth because it will be close to the planet once that change occurs. The temperature of the sun will also increase tenfold from 18 million to 180 million degrees Fahrenheit. The increase in the sun’s size when it finally begins to change will be due to the heat increase causing expansion.

Without the sun, we would no energy to live, no plants to eat, no trees to give us oxygen or animals to roam. We would not have gravity to keep the earth in orbit. Without the sun, the earth would be dark and cold and life would quickly disappear.


Related Questions

Which of the following happens during an endothermic chemical change? (5 points)

Group of answer choices

Heat is released.

Net energy decreases.

Products have a higher total potential energy than the reactants.

Products have the same total potential energy as the reactants..

Answers

Answer: Products have a higher total potential energy than the reactants.

Explanation:

During endothermic reactions, energy is absorbed, meaning that the products will have more potential energy.

All of the following reactions are described as decomposition reactions except
O CuSO4.5H₂O(s) CuSO4(s) + 5H₂O(g).
O 2PbO₂ (s)
2PbO(s) + O₂(g).
O Fe(CO)(I)
Fe(s) + 5CO(g).
O H₂SO3(aq)
SO₂(g) + H₂O(l).
O NO₂(g) + H₂O(l) 4 NO(g) + 2HNO3(aq).

Answers

The reaction NO₂(g) + H₂O(l) 4 NO(g) + 2HNO3(aq) is not a Decomposition Reaction , Option E is the correct answer.

What is a Decomposition Reaction ?

A reaction in which a substance break down into two or more substances is called a Decomposition Reaction.

In the given question

the reactions

CuSO4.5H₂O(s)--> CuSO4(s) + 5H₂O(g).

2PbO₂ (s) --> 2PbO(s) + O₂(g).

Fe(CO)(I)-->Fe(s) + 5CO(g).

H₂SO3(aq)-- >SO₂(g) + H₂O(l)

These are all Decomposition Reaction.

The only reaction which is not is the Reaction E

NO₂(g) + H₂O(l) 4 NO(g) + 2HNO3(aq)

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different between effort and load​

Answers

Answer:

Is that load is a burden; a weight to be carried while effort is the work involved in performing an activity; exertion.

Explanation:

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Calculate the how many sodium atoms must react completely to give 33,6 dm³ hydro-
gen gas at STP.
2Na+ 2H₂O → 2NaOH + H₂(g)

Answers

To give 33.6 dm³ hydrogen gas at STP, 18.06 x 10²³ atoms of Na must react completely.

What is Mole concept ?

A mole is a unit of measurement used to measure the amount of any fundamental entity (atoms, molecules, ions) present in the substance.

As according to the given equation, 2 moles (ie 12.04 x 10²³ atoms) of Na-atoms produces 1 mole (22.4 ltr) of H₂-gas.

Hence, to produce 33.6 ltr (equivalent to 33.6 dm³) of H₂-gas produced by ;

   = 12.04 x 10²³ atoms of Na / 22.4 ltr of H₂-gas x 33.6 ltr

   = 18.06 x 10²³ atoms of Na

Hence, To give 33.6 dm³ hydrogen gas at STP, 18.06 x 10²³ atoms of Na must react completely.

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Name one similarity and one difference between visible light and sound.

Answers

Answer:

Light and sound both are waves, but sound requires a material medium to travel, and hence cannot travel in empty space while light can travel through vacuum but not through opaque materials. Both undergo refraction, diffraction and interference.

Explanation:

59:27
Heat that flows by conduction is the transfer of thermal energy between substances in contact. What must occur for
this to happen?
O The two systems must be the same temperature.
The two systems must not be touching each another.
O One system must have higher kinetic energy than the other system.
O The thermal energy of one system must be the same as the thermal energy of the other system.

Answers

Answer:

O One system must have higher kinetic energy than the other system.

Explanation:

Higher KE of the system means hotter......the hotter will transfer heat to the cooler by conduction when they are in contact.

Which of the following is the conjugate base of H3PO4?
2-
OA. HPO4²-
3-
O B. PO4³-
O C. H₂PO4
O D. H₂PO4+

Answers

Answer:

H2 PO4 -1 is the correct answer

An acid and a base which differ from each other by a proton are said to form a conjugate pair. Here the conjugate base of H₃PO₄ is H₂PO₄⁻. The correct option is C.

What is a conjugate base?

The entity produced when acid gives up a proton has a tendency to regain the proton and hence it behaves as a base. It is called the conjugate base of the parent acid. A base is a substance which acts as a proton acceptor.

Here the conjugate base of H₃PO₄ is formed when a proton is lost from it. So the lose of one proton forms the molecule H₂PO₄⁻ which is the conjugate base. An acid is a proton donor.

When a base accepts a proton it has a tendency to donate the proton and hence behaves as an acid. It is called the conjugate acid of the parent base.

Thus the correct option is C.

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How can materials be classified on the basis of conduction of heat?​

Answers

Explanation:

 On the basis of electrical conductivity, materials are classified as conductors, semi-conductors and non-conductors. Conductors : Substances through which electricity can easily pass through are known as conductors. For example, copper, silver, mercury etc are good conductors of electricity

Chemical equation of isopropyl alcohol and ethanoic acid

Answers

Answer:

chemical formula of isopropyl alcohol can also be written as: C3H7OH, CH3CHOHCH3 or (CH3)2CHOH.

chemical formula of ethanoic acid is CH₃COOH.

Is the chemical reaction faster when the metal is in dust form or when it's melted?​

Answers

Answer:

dust form

Explanation:

because dust spreads alot faster


The theory of relativity is stated as the equation E=mc² where:
E-energy
m = mass
c=speed of light
A scientist has data for the speed of light and energy variables. What form of the equation should the scientist use to determine the mass of an
object?

Answers

Answer:

don't know mass? or energy just search

Which of the following is true about population and resources?
A.
There is no relationship between population and the use of natural resources.
B.
People in the US use more resources per person than people in less developed countries.
C.
People in underdeveloped countries use more resources per person than people in the US.
D.
Each person in the world uses an equal amount of natural resources.

Answers

Answer:

B.

People in the US use more resources per person than people in less developed countries

Explanation:

What is the Percentage abundance of an isotope

Answers

Answer:

It is the proportion of atoms of an isotope in a sample of an element taken from the natural world.

Explanation:

a 40 g sample of water absorbs 500 calories of energy, how much did the water temp changed?​

Answers

2.99 °C is the change in temperature if a 40 g sample of water absorbs 500 calories of energy.

What is specific heat capacity?

The specific heat capacity is defined as the quantity of heat (J) absorbed per unit mass (kg) of the material when its temperature increases 1 K (or 1 °C), and its units are J/(kg K) or J/(kg °C).

Given data:

m = 40 g

Q = 500 J

Specific heat capacity of water = 4.18 J/g°C

Change in Temperature =?

The formula for Heat Energy is given by:

Q = mcp∆T

where: Q - Heat Energy

m - mass

cp - specific heat

∆T = change in temperature, [tex]T_2 - T_1[/tex]

Solution:

Substituting the value of m, specific heat capacity of water and Q in the formula,

500 J = (40 g)(4.18 J/g°C)(∆T)

∆T = 2.99 °C

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A student made a graph plotting the progress of a reaction over time. The student forgot to label the y-axis of the graph.

A graph is shown with two graph lines. One graph line starts at a higher position on the y axis and slopes downwards towards the right. The other graph line starts at a lower position on the y axis and slopes upwards towards the right. The two graph lines stop short of intersecting each other and continue as separate lines which gradually become straight and parallel to the x axis. A vertical line is shown at a point where the two graph lines finally became parallel to the x axis. This vertical line is labeled equilibrium. The title on the x axis is Time and an arrow pointing towards the right is shown above Time. The title on the y axis is left blank.

What best explains the label that the student should use on the y-axis? (5 points)

Group of answer choices

Amount, because as the amount of product decreases, the amount of reactant increases over time.

Reaction rate, because forward and backward reaction become equal at equilibrium.

Amount, because the amounts of reactants and products become constant after equilibrium is reached.

Reaction rate, as the rate of forward reaction increases and rate of backward reaction decreases over time.

Answers

Answer:

C

Explanation:

Recall that, at equilibrium, the concentration of the reactants and products stop changing because both the forward and reverse reaction rates are equal.

Therefore, Choice C is correct.

Choice A is incorrect because there is no indication that the upper line describes the products and the lower line describes the reactants.

Choice B is incorrect because the statement, while true, is not reflected by the graph. (The two lines after equilibrium are not at the same y-value.)

Choice D is incorrect because the forward reaction rate generally decreases as time increases due to the decrease in reactant concentration(s).

do you guys have an answer?

Answers

Answer:

5095

Explanation:

Answer:

the first pups are very similar in color so i would assume that the mom and dad are some color and breed, rather the second example would be a white and black dog with possible other colors between black and white

Explanation:

2. Calculate the mass, in grams, for 3.47 moles of each of the following:
a. lead(II) acetate
b. sodium chloride

Answers

Explanation:

1 moles Lead(II) Acetate to grams = 325.28804 grams

3.47 moles Lead(II) Acetate to grams = 325.28804 ×3.47 grams=1128.749 grams

1 moles sodium chloride to grams=58.5 grams

3.47 moles sodium chloride to grams=58.5×3.47 grams

=202.995 grams

law and the rate constant for the reaction.

PLEASE HELP!!!!.
A buffer solution was prepared by mixing 150.00 mL of 1.1341 mol/L of CH3COOH
and 100.00 mL of 0.831 mol/L of barium acetate. Determine the pH of the buffer
solution after the addition of 10.00 mL of 0.010 mol sulphuric acid. Kc for acetic acid
is 1.8 x 10-5

Answers

The pH of the buffer solution after the addition of sulfuric acid is determined as 4.43.

Initial moles of acid and base

The initial moles of acid and base conjugate is determined as follows;

n = CV

na₁ = (150 x 1.1341)/1000

na₁ = 0.17 mol

nb₁ = (100 x 0.831)/1000

nb₁ = 0.083 mol

Number of moles of the acid added

H₂SO4  ⇄ 2H²⁺  + SO₄²⁻

na₂ = (10 x 0.01)/1000

na₂ = 0.0001 mol

Final number of moles of the acid and base

nb = 0.083 - 2(0.0001) = 0.0829 mol

na = 0.17 + 2(0.0001) = 0.1702 mol

pH of the buffer solution

[tex]Ka = \frac{[CH_3COO][H^+]}{[CH_3COOH]} \\\\1.8\times 10^{-5} = \frac{0.0829(H^+)}{0.1702} \\\\H^+ = \frac{(1.8 \times 10^{-5})(0.1702)}{0.0829} \\\\H^+ = 3.696 \times 10^{-5}\\\\pH = -Log [H^+]\\\\pH = -Log (3.696 \times 10^{-5})\\\\pH = 4.43[/tex]

Thus, the pH of the buffer solution after the addition of sulfuric acid is determined as 4.43.

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The molecular geometry of the PF3 molecule is __________, and this molecule is ________.
O tetrahedral, unipolar
O trigonal pyramidal, nonpolar
O trigonal pyramidal, polar
O trigonal planar, nonpolar
O trigonal planar, polar

Answers

Answer:

C.) trigonal pyramidal, polar

Explanation:

Around the phosphorus central atom, there are 3 fluorine atoms and 1 lone pair. This makes the shape tetrahedral, but gives it a trigonal pyramidal geometry. The lone pair on the phosphorus disrupts the balance of the molecule and pulls the electrons towards it. This makes the molecule polar.

Explain how the period and group trends in atomic radii are related to electron configuration

Answers

Atomic radii decreases in a Period, but increase down a Group.

What is atomic radii?

Atomic Radii is the total distance from the nucleus of an atom to the outermost shell of its electron. Atomic radii decreases when we move from left to right in a Period due to addition of nuclear charge inside the nucleus but increase down a Group because of the addition of new shells

So we can conclude that Atomic radii decreases in a Period, but increase down a Group.

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Lenses:
reflect light.
can only be concave.
do not have an optical axis.
None of the choices are correct.

Answers

Answer:

B. Can only be concave

Explanation:

Statement A is false because lenses do not reflect light. Lenses do have an optical axis.

0.58 mol of Mg contains how many atoms? please show work

Answers

The number of atoms present in 0.58 mole of magnesium, Mg is 3.49×10²³ atoms

Avogadro's hypothesis

1 mole of Mg = 6.02×10²³ atoms

How to determine the atoms in 0.58 mole of Mg

1 mole of Mg = 6.02×10²³ atoms

Therefore,

0.58 mole of Mg = 0.58 × 6.02×10²³

0.58 mole of Mg = 3.49×10²³ atoms

Thus, 3.49×10²³ atoms are present in 0.58 mole of Mg

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Consider 2.00 moles of Argon, an ideal gas, at a density of 5.00 g/L and a pressure of 2.00 atm. What is the closest value to the temperature (in K) of this gas?

Answers

Answer:

194.73 K

Explanation:

Use the Ideal Gas Law:    PV = n RT

   R = .082057366  L Atm / k-mole

2 moles Argon weigh in at 79.896 gm

  79.896 gm / 5 gm/L = 15.9792 Liters

Ideal Gas Law:

(2)(15.9792) = 2 (.082057366) ( K)

194.73 K

Considering 2.00 moles of Argon, an ideal gas, at a density of 5.00 g/L and a pressure of 2.00 atm, the closest value to the temperature of the gas is approximately 39.01 K.

To find the temperature of the gas, we can use the ideal gas law equation:

PV = nRT

In this formula:

P = pressure (in atm)

V = volume (in L)

n = number of moles

R = ideal gas constant (0.0821 L·atm/mol·K)

T = temperature (in K)

Here it is given that:

P = 2.00 atm

V = 1 L

n = 2.00 moles

R = 0.0821 L·atm/mol·K

Now we can rearrange the equation to solve for T:

T = PV / (nR)

Substitute the given values:

T = (2.00 atm) x (16.00 L) ÷ (2.00 moles x 0.0821 L·atm/mol·K)

Calculate:

T ≈ 39.01 K

Thus, the closest value to the temperature of the gas is approximately 39.01 K.

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Calculate the volume of 0.10 g of titanium (4.51 g/cm³).

Answers

The volume of titanium with mass of 0. 10g and density of 4. 51 g/cm³ is 0. 02 cm³

What is volume?

Volume is known to be equal to the mass divided by the density.

It is written thus:

Volume = Mass / density

How to calculate the volume

The volume is calculated using the formula:

Volume = mass ÷ density

Given the mass = 0. 10g

Density = 4.51 g/cm³

Substitute the values into the formula

Volume of titanium = 0. 10 ÷ 4.51 = 0. 02 cm³

Thus, the volume of titanium with mass of 0. 10g and density of 4. 51 g/cm³ is 0. 02 cm³

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How is stoichiometry used to calculate energy absorbed when a mass of
liquid boils?
A. Grams liquid x mol/g x A Hreaction
B. Grams liquid x mol/g x A Hvap
OC. Grams liquid x mol/g x AHf
D. Grams liquid x mol/g x AHfusion

Answers

Answer: B. Grams liquid x mol/g x A Hvap

Stoichiometry used to calculate energy absorbed when a mass of liquid boils is Grams liquid × mol/g × ΔHvap.

What is Heat of vapourisation?

It is the amount of heat evolved when mole of liquid is boiled to form vapours. It is a function of pressure according to which the change will happen in the reaction.

Given is that a particular mass of liquid is boiling.

We have supposed that heat of vapourisation for the same liquid is ΔHvap mol/g. Now if ΔHvap is the heat for 1 mole per gram of the liquid then if the mass of liquid is given,

Energy absorbed can be calculated as = Grams liquid × mol/g × ΔHvap

We should know that when a liquid boils it transforms into gaseous state and the process is called as Vapourisation.

Therefore, Stoichiometry used to calculate energy absorbed when a mass of liquid boils is Grams liquid × mol/g × ΔHvap.

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If you want to prepare 80.0 mL of 4.00M acid ,How many mL of 12.4 M HCl are required ?

Answers

[tex]M_{A}V_{A}=M_{B}V_{B}\\(80.0)(4.00)=V_{B}(12.4)\\V_{B}=\frac{(80.0)(4.00)}{12.4} \approx \boxed{25.8 \text{ mL}}[/tex]

what are the four types of severe storms

Answers

Storms are disturbances in atmospheric conditions. The four severe storms are thunderstorms, lightning, heavy rain, and blizzards.

What are blizzards?

Blizzards are the type of storm that includes high wind at 40 km/h and also have snow and cold air that makes the temperature drop and causes poor visibility.

Thunderstorms and lightning occur with high electrical charge release during high wind and rain. Heavy rains are severe types of storms as they can cause a flood.

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Which changes involve forming or breaking chemical bonds?

burning and digesting

boiling and melting

burning and melting

rusting and cutting

Answers

Answer: burning and digesting

Both of these are chemical changes.

Answer:

burning and digesting

Explanation:

What forms white light?

Combination of all the wavelengths of ultraviolet light
Combination of all the wavelengths of visible light
Absorption of electromagnetic rays
Absorption of infrared rays

Answers

Answer:

Combination of all the wavelengths of visible light.

Explanation:

Hope it helps you :))))

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It took 55 days for a radioactivity of 1.75 x 1012 Bq to remain 0.135 Ci. What is the half-life of this radioactivity?

Answers

From the calculations, the half life of the material is 6.5 days.

What is radioactivity?

The term radioactivity has to do with the spontaneous disintegration of a specie.

Uisng the formula;

N=Noe^-kt

N= amount at time t = 0.135 Ci or 4.995 ×10^9 Bq

No = amount initially present =  1.75 x 10^12 Bq

k = rate constant = ?

t = time taken = 55 days

Hence;

4.995 ×10^9  = 1.75 x 10^12e^-55k

4.995 ×10^9/1.75 x 10^12 = e^-55k

2.85 * 10^-3 = e^-55k

ln2.85 * 10^-3 = -55k

k = ln2.85 * 10^-3/-55

k = 0.1066 day-1

Half life = 0.693/ 0.1066 day-1

= 6.5 days

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