A family has a furnace that uses natural gas to heat their home. They are moving to an area that offers the option of using energy from a solar power plant to heat their home. Which disadvantage will the family most likely face by making this switch?

a less reliable production of heat
higher costs for the monthly heating bill
an increase in waste production
smaller quantities of heat

Answers

Answer 1
“a less reliable production of heat” is your answer. somebody actually answered this question before on this app, and got it correct. hope this helps :)
Answer 2
Final answer:

The family is most likely to face higher costs for the monthly heating bill by switching to energy from a solar power plant. Although solar power is a renewable and clean energy source, the initial installation and maintenance costs of solar panels can be expensive, resulting in higher monthly bills compared to using natural gas.

Explanation:

Solar power harnesses energy from the sun's radiation to generate electricity or heat. Photovoltaic cells convert sunlight into electricity, while solar thermal systems use sunlight to produce steam for electricity generation or provide direct heating. Solar power is a sustainable and renewable energy source with minimal environmental impact.

The family is most likely to face higher costs for the monthly heating bill by switching to energy from a solar power plant. Although solar power is a renewable and clean energy source, the initial installation and maintenance costs of solar panels can be expensive, which can result in higher monthly bills compared to using natural gas. Additionally, the family may also face limitations in the amount of heat produced as solar power can be dependent on weather conditions.


Related Questions

what occurs when a reaction reaches equilibrium

Answers

Answer: the rate of the forward reaction is equal to the rate of the reverse reaction

Explanation:

Final answer:

A chemical reaction reaches equilibrium when the rates of the forward and reverse reactions are equal, causing the reactant and product concentrations to remain constant, signifying a dynamic equilibrium. If disturbed, the system will adjust to restore equilibrium.

Explanation:

When a chemical reaction reaches equilibrium, it means that the rate of the forward reaction is equal to the rate of the reverse reaction. This state is referred to as a dynamic equilibrium because the reactions continue occurring but the concentrations of the reactants and products remain unchanged. The reaction quotient (Q) equates to the equilibrium constant (K) at this point, and the system's macroscopic properties stay constant. If the system at equilibrium is disturbed by changing conditions, such as a change in reactant concentration, the system will adjust itself to re-establish equilibrium according to Le Chatelier's principle.

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a racing car travels 340 miles in 120 minutes. what speed is traveling at?

Answers

Answer:

It is traveling at 170 miles per hour.

Explanation:

divide 340 by 2 because right now it's at 340 miles per two hours.

You get 170 miles per hour.

A racing car travels 340 miles in 120 minutes. The speed travelled by the car are 2.83 Miles / minutes.

What is speed?

Speed is defined as a measurement of the length of time it takes for an object to travel a certain distance. The amount of something that happens or changes in a unit of time is referred to as its rate. You can determine an object's speed if you know how far it moves in a specific amount of time. The distance an object travels in a given amount of time is its speed.

Speed can be expressed as

Speed = Distance / Time

Given, Distance = 340 miles

Time = 120 minutes

Speed = 340 miles / 120 minutes

Speed  = 2.83 Miles / minutes

Thus, a racing car travels 340 miles in 120 minutes. The speed travelled by the car are 2.83 Miles / minutes.

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A plane flew for 2 hours at 467 mph and 5 hours at 536 mph. How far did the plane fly in miles

Answers

Answer:

The plane flew for a total of 3, 614 miles.

Explanation:

Speed, V = [tex]\frac{distance}{time}[/tex]

Since units is given in miles per hour (mph), there isn't any need to convert to standard units.

Solving for distance = speed × time

∴ Total distance travelled

= (2 × 467) + (5 × 536)

=3, 614 miles.

Answer:

The plane flew 3614 miles

Explanation:

3) Lithium metal (Li) react with hydrosulfuric acid (HS) to produce hydrogen gas and magnesium chloride (Li 2 S) . How many grams of Lithium metal are required to react completely with excess acid to produce 4.5 L of Hydrogen at 315K and 1.258 atm? Remember to balance the equation .

Answers

Answer:

3.066g

Explanation:

Step 1:

The balanced equation for the reaction. This is given below:

2Li + H2S —> Li2S + H2

Step 2:

Data obtained from the question.

Volume (V) of H2 = 4.5L

Temperature (T) = 315K

Pressure (P) = 1.258 atm

Note:

Gas constant (R) = 0.0821atm.L/Kmol

Number of mole (n) of H2 =..?

Step 3:

Determination of the number of mole of H2 produced.

This can be obtained by using the ideal gas equation as follow

PV = nRT

Divide both side by RT

n = PV /RT

n = 1.258 x 4.5 / 0.0821 x 315

n = 0.219 mole

Therefore, 0.219 mole of H2 is produced.

Step 4:

Determination of the number of mole of Li that will produce 0.219 mole of H2.

This is shown below:

2Li + H2S —> Li2S + H2

From the balanced equation above,

2 moles of Li reacted to produce 1 mole of H2.

Therefore, Xmol of Li will react to produce 0.219 mole of H2 i.e

Xmol of Li = 2 x 0.219

Xmol of Li = 0.438 mole

Step 5:

Conversion of 0.438 mole of Li to grams.

Number of mole of Li = 0.438 mole

Molar Mass of Li = 7g/mol

Mass = number of mole x molar Mass

Mass of Li = 0.438 x 7

Mass of Li = 3.066g

Therefore, 3.066g if Li is needed for the reaction.

How many grams of Fe2O3 will be produced from
24.0 g of Fe and 5.00 g of O2?

Answers

Answer:

16.6g

Explanation:

How much kinetic energy does a truck with a mass of 2500 kg moving at 45 m have

Answers

Answer:

Kinetic energy, [tex]K=2.53\times 10^6\ J[/tex]

Explanation:

We have,

Mass of the truck is 2500 kg. It is moving with a speed of 45 m/s.

It is required to find the kinetic energy acting on the truck. As it is moving with some velocity, it will have kinetic energy. The kinetic energy of an object is given by :

[tex]K=\dfrac{1}{2}mv^2[/tex], m is mass and v is velocity

[tex]K=\dfrac{1}{2}\times 2500\times 45^2\\\\K=2.53\times 10^6\ J[/tex]

So, the kinetic energy of the truck is [tex]2.53\times 10^6\ J[/tex].

How can natural resources cause a conflict in a country

Answers

Answer:

If there are resource shortages, many species (not just humans) may not have the things they need to survive, and can result in conflicts.

Explanation:

In a hair dryer, if current follows a SINGLE path through the heater and the fan, the circuit in the hair dryer is connected____

Answers

Answer:

heat energy

Explanation:

Final answer:

In a hair dryer, if the current follows a single path through the heater and the fan, the circuit in the hair dryer is connected in a series.

Explanation:

In a hair dryer, if the current follows a single path through the heater and the fan, the circuit in the hair dryer is connected in a series.

When components in a circuit are connected in series, they are connected end-to-end, with the current having only one path to flow through. In this case, the current flows through the heater and the fan in a single loop.

Series circuits are commonly used in hair dryers and other electrical appliances, as they ensure that all components receive the same current.

What is the correct formula that would result from the combination of the two ionic species?

K1+ and NO1-2

Answers

The combination of K1+ (potassium ion) and NO1-2 (nitrate ion) results in the formation of a stable compound with the formula KNO3.

The combination of the ionic species K1+ (potassium ion) and NO1-2 (nitrate ion) results in the formation of a stable compound through ionic bonding. The chemical formula for this compound is KNO3.

In KNO3, the potassium ion (K1+) donates one electron to the nitrate ion (NO1-2), forming a positively charged potassium ion and a negatively charged nitrate ion. The ionic bond between them is strong and results in the overall neutral charge of the compound.

Potassium nitrate (KNO3) is a well-known salt with various applications. It is commonly used in fertilizers, food preservation, and the manufacturing of fireworks. The balanced formula reflects the conservation of charge in the chemical reaction, ensuring that the total positive charge from potassium ions is equal to the total negative charge from nitrate ions.

In summary, the correct formula for the compound formed by the combination of K1+ and NO1-2 ions is KNO3, where the potassium ion and nitrate ion combine through ionic bonding to create a stable, electrically neutral compound.

Final answer:

The combination of potassium  and nitrite nitrite  forms the ionic compound KNO2, which is known as potassium nitrite.When combining these two nitrite , it is essential to balance the charges to form a neutral compound.

Explanation:

The correct formula that would result from the combination of the ionic species potassium and nitrite  is KNO2. To write the formula of an ionic compound, the total positive charge must balance the total negative charge. When a metal reacts with a non-metal, the electrons that are in the metal are transferred to the non-metal which then forms an ion. The compound in the results is called an ionic compound. Because potassium has a charge of 1+ and nitrite has a charge of 1−, they combine in a 1:1 ratio to form potassium nitrite.

The specific heat of silver is 0.24 J/g°C. If 15.4 g of silver absorb 332 J heat, how much will the temperature of the silver increase?

Answers

Final answer:

To calculate the temperature increase, use the heat equation q = m × c × ΔT. Given that 15.4 g of silver absorb 332 J and the specific heat is 0.24 J/g°C, solving for ΔT yields a temperature increase of approximately 89.8°C.

Explanation:

To calculate how much the temperature of the silver will increase when it absorbs heat, you can use the formula:

q = m × c × ΔT

where

q is the heat absorbed in joules (J)m is the mass in grams (g)c is the specific heat in joules per gram per degree Celsius (J/g°C), andΔT is the change in temperature in degrees Celsius (°C).

We can rearrange the formula to solve for ΔT (change in temperature):

ΔT = q / (m × c)

In this case

q = 332 Jm = 15.4 gc = 0.24 J/g°C

Therefore, the change in temperature is:

ΔT = 332 J / (15.4 g × 0.24 J/g°C) = 332 J / (3.696 J/°C) ≈ 89.8°C

The temperature of the silver will increase by approximately 89.8°C.

An ionic compound is typically formed between?

Answers

Answer:

Da Answer

Explanation:

Ionic bonds formed through an electrostatic attraction between two oppositely charged ions. Ionic bonds are formed between a cation, which is usually a metal, and an anion, which is usually a nonmetal.

An ionic compound is typically formed between a metal, which becomes a cation, and a nonmetal, which becomes an anion. The ions are held together by electrostatic attractions known as ionic bonds, producing a neutral compound.

An ionic compound is typically formed between a metal and a nonmetal. This occurs when the metal atom loses one or more electrons, forming a positively charged ion known as a cation, while the nonmetal atom gains those electrons, forming a negatively charged ion known as an anion. The resulting ionic compound is stabilized by the electrostatic attractions (ionic bonds) between the oppositely charged ions.

For example, sodium metal (Na), which is from group 1 of the periodic table, tends to lose one electron and become a sodium cation (Na+). Chlorine gas (Cl2), from group 17 of the periodic table, can accept one electron to form two chloride anions (Cl-). When these ions combine, they form sodium chloride (NaCl), where each sodium ion is paired with a chloride ion, making the compound neutral as a whole, with a zero net charge.

The environment with the greatest biodiversity is the one with the greatest variety of

Answers

Final answer:

The greatest biodiversity is found in environments with a wide variety of ecosystems, especially in the tropics. Biodiversity, which includes all life forms and ecosystems, is crucial for ecological balance and human well-being. Despite its importance, biodiversity is at risk due to inadequate knowledge and human activities.

Explanation:

The environment with the greatest biodiversity is the one with the greatest variety of ecosystems. Biodiversity encompasses all of the variety of life that exists on Earth, including the diversity of genes, species, and ecosystems. It's well-documented that biodiversity is highest in the tropics, which is home to numerous endemic species and biodiversity hotspots. The variety of ecosystems ranging from coral reefs to prairies contributes to this richness in species. Yet, despite the high biodiversity in such regions, there is also a significant risk of biodiversity loss due to limited knowledge about these species and the impact of human activity.

The importance of biodiversity extends beyond the ecological realm and significantly affects human health and agriculture. A diverse array of species contributes to the robustness of ecosystems, which is essential for the survival and welfare of human populations. The loss of biodiversity can upset the interconnectedness of species, leading to detrimental impacts on the environment and human societies.

Calculate the equilibrium constant, k, at 25°c for the galvanic cell reaction shown below: 8 h+(aq) + 5 fe2+(aq) + mno4-(aq) → mn2+(aq) + 5 fe3+(aq) + 4 h2o(l) e° = +0.74 v enter your answer in exponential format (sample 1.23e-4) with two decimal places and no units.

Answers

Answer:

Equilibrium Constant = (3.60 × 10⁶²)

Explanation:

The change in Gibb's free energy for a galvanic cell is given as

Δ = -nFE°

where n = number of electrons transferred = 5 for this reaction

F = Faraday's constant = 96500 C

E° = cell potential = +0.74 V

But the change in Gibb's free energy for galvanic cell reaction is also given as

ΔG = -RT In K

R = molar gas constant = 8.314 J/mol.K

T = absolute temperature in Kelvin = 25 + 273.15 = 298.15 K

K = Equilibrium constant.

Equating these two expressions

-nFE° = - RT In K

RT In K = nFE°

In K = (nFE°) ÷ (RT)

In K = (5 × 96500 × 0.74) ÷ (8.314 × 298.15)

In K = 144.04

K = e^(144.04)

K = (3.60 × 10⁶²)

Hope this Helps!!!

The equilibrium constant for the galvanic cell has been [tex]\rm \bold{e^1^4^4^.^0^4}[/tex].

Gibb's free energy has been defined as the reversible work performed by the thermodynamic system.

The Gibbs free energy can be given as:

[tex]\Delta[/tex]G = -nF[tex]\rm E^\circ[/tex]

The [tex]\Delta[/tex]G for the galvanic cell can also be given as:

[tex]\Delta[/tex]G = -RT ln K

Thus, for the galvanic cell:

-nF[tex]\rm E^\circ[/tex] = -RT ln K

There has been the transfer of 5 moles of electrons, thus:

- 5 mol × 96500 C × 0.74 V = - 8.314 J/mol.K × 298.15 K × In Equilibrium constant (K)

357,050 = 2,478.8191 K

In K = 144.04

K = [tex]\rm e^1^4^4^.^0^4[/tex]

The equilibrium constant for the galvanic cell has been [tex]\rm e^1^4^4^.^0^4[/tex].

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What was the initial volume of gas if a new volume of 3.00 liters is obtained when the pressure is decreased from 3.00 atm to 1.00 atm at constant temperature? ​

Answers

Answer:

1 L

Explanation:

V1=P2V2/P1

Checking this, it is correct because P and V at constant T has an inverse relationship.

- Hope that helps! Please let me know if you need further explanation.

How many grams of HF are needed to react with 3.0 moles of Sn?

Answers

Answer:

120g

Explanation:

Step 1:

We'll begin by writing the balanced equation for the reaction.

Sn + 2HF —> SnF2 + H2

Step 2:

Determination of the number of mole HF needed to react with 3 moles of Sn.

From the balanced equation above,

1 mole of Sn and reacted with 2 moles of HF.

Therefore, 3 moles Sn will react with = 3 x 2 = 6 moles of HF.

Step 3:

Conversion of 6 moles of HF to grams.

Number of mole HF = 6 moles

Molar Mass of HF = 1 + 19 = 20g/mol

Mass of HF =..?

Mass = number of mole x molar Mass

Mass of HF = 6 x 20

Mass of HF = 120g

Therefore, 120g of HF is needed to react with 3 moles of Sn.

how do biotic and abiotic factors affect an organism’s survival?

Answers

Explanation:

Biotic factor affect an organisms survival

The biotic factors in an ecosystem are the living organisms, such as animals. Biotic factors in an ecosystem are the participants in the food web, and they rely on each other for survival. These living organisms affect each other and influence the health of the ecosystem.

Abiotic factor affect an organisms survival

Abiotic factors are all of the non-living things in an ecosystem. Both biotic and abiotic factors are related to each other in an ecosystem, and if one factor is changed or removed, it can affect the entire ecosystem. Abiotic factors are especially important because they directly affect how organisms survive.

how many moles of cacl2 will be produced from 3.572 g of ca(oh)2 reacting with hcl

Answers

Answer:

0.04821 mol CaCl₂

Explanation:

Ca(OH)₂  +  2 HCl  ⇒  CaCl₂  +  H₂O

This is your reaction.

We need the chemical equation to know the stoichiometry (the numbers that in front of the compounds).  Since we are converting from Ca(OH)₂ to CaCl₂, you only need to focus on these compounds.  There are no numbers in front of Ca(OH)₂ and CaCl₂, so the ratio of the compounds is 1:1.

Now, convert grams of Ca(OH)₂ to moles of Ca(OH)₂.  The molar mass is 74.09 g/mol.

[tex]3.572 g*\frac{mol}{74.09g} =0.04821 mol[/tex]

Using moles of Ca(OH)₂ and the ratio from the stoichiometry, convert moles of Ca(OH)₂ to moles of CaCl₂.  Since the ratio is 1:1, the moles will be equal.

[tex]0.04821mol*\frac{1mol}{1mol} =0.04821mol[/tex]

You will produce 0.04821 moles of CaCl₂.

0.04821 mol CaCl₂ will be produced from 3.572 g of [tex]Ca(OH)_2[/tex] reacting with HCl.

Reaction:-

 Ca(OH)₂  +  2 HCl  ⇒  CaCl₂  +  H₂O

The ratio of the compounds is 1:1 because we are converting from  Ca(OH)₂ to CaCl₂. There are no numbers in front of Ca(OH)₂  and CaCl₂ because we are converting from  Ca(OH)₂ to CaCl₂.

Now, convert grams of Ca(OH)₂ to moles of Ca(OH)₂.  The molar mass of Ca(OH)₂ is 74.09 g/mol.

[tex]Number\ of \ moles=\frac{Mass}{Molar\ mass}[/tex]

                             [tex]\frac{3.572\ g}{74.093\ g/mol} \\=0.0482\ mol[/tex]

Hence, the 0.0482 moles of CaCl₂ will be produced.

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A sample of a halogen gas has a mass of 0.239 g and exerts 600.0 Torr at 140C in a 100.0 mL flask.
a. Calculate the molar mass of the halogen.
b. Calculate the density of the gas at 1.00 atm and 298 K.
show work please

Answers

Answer:

Molar mass = 102.5 g/mol

Density = 4.19 g/L

Explanation:

To find the molar mass, we first need to find how many moles are in the sample. To do this, we can use the PV=nRT equation.

P = 600 torr * (1 atm/760 torr) = 0.79 atm

V = .1 L

n = this is the number of moles and what you are solving for

R = gas constant = 0.08206 L*atm/moles*K

T = 140 C + 273 = 413 K

Plug these values into the PV=nRT equation:

n = (.1 L*.79 atm)/(0.08206*413 K)/

n = .00233 moles

To find the molar mass divide the grams by the moles

0.239 g / .00233 moles = 102.5 g/mol

For the second part of the problem, you need to use this equation:

d (denstiy) = (P*molar mass)/ R*T

d = (1 atm * 102.5 g/mol) / (.08206*298 K)

d = 4.19 g/L

Final answer:

The molar mass of the halogen gas is 12.39 g/mol. The density of the gas at 1.00 atm and 298 K is 0.505 g/L.

Explanation:

a. To calculate the molar mass of the halogen gas, we can use the ideal gas law equation:



PV = nRT



Where P is the pressure, V is the volume, n is the number of moles, R is the gas constant, and T is the temperature in Kelvin.



First, let's convert the temperature from Celsius to Kelvin:



T = 140 °C + 273.15 = 413.15 K



Next, let's convert the pressure from Torr to atm:



P = 600.0 Torr / 760.0 Torr/atm = 0.7895 atm



Now, let's rearrange the ideal gas law equation to solve for the number of moles:



n = PV / RT



Substituting the given values:



n = (0.7895 atm * 0.1000 L) / (0.0821 atm L/mol K * 413.15 K)



n = 0.01928 mol



Finally, let's calculate the molar mass by dividing the mass of the sample by the number of moles:



Molar mass = 0.239 g / 0.01928 mol = 12.39 g/mol



b. The density of a gas can be calculated using the ideal gas law equation:



density = (molar mass * pressure) / (gas constant * temperature)



Using the given values:



density = (12.39 g/mol * 1.00 atm) / (0.0821 atm L/mol K * 298 K)



density = 0.505 g/L

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To compress nitrogen at 1 atm from 750 mL to 500 ml, what must the new pressure be if the temperature
is kept constant.

Answers

Answer: The new pressure if the temperature is kept constant is 1.5 atm

Explanation:

To calculate the new pressure, we use the equation given by Boyle's law. This law states that pressure is directly proportional to the volume of the gas at constant temperature.

The equation given by this law is:

[tex]P_1V_1=P_2V_2[/tex]

where,

[tex]P_1\text{ and }V_1[/tex] are initial pressure and volume.

[tex]P_2\text{ and }V_2[/tex] are final pressure and volume.

We are given:

[tex]P_1=1atm\\V_1=750mL\\P_2=?\\V_2=500mL[/tex]

Putting values in above equation, we get:

[tex]1\times 750mL=P_2\times 500mL\\\\P_2=1.5atm[/tex]

Thus new pressure if the temperature is kept constant is 1.5 atm

Final answer:

To compress nitrogen at 1 atm from 750 mL to 500 ml, while keeping the temperature constant, the new pressure must be 1.5 atm. This is calculated using Boyle's Law, which states that the pressure and volume of a gas have an inverse relationship when the temperature is held constant.

Explanation:

To solve this problem, we need to use Boyle's Law, which states that the pressure and volume of a gas have an inverse relationship when the temperature is kept constant. This means if you increase the volume, the pressure decreases and vice versa. The formula for Boyle's Law is P1V1 = P2V2.

In this problem: P1 = initial pressure = 1 atm. V1 = initial volume = 750 mL. V2 = final volume = 500 mL. We are asked to find P2 (final pressure).

Using Boyle's Law (P1V1 = P2V2), we can set up our equation like this: 1 atm * 750 mL = P2 * 500 mL. Solving for P2, we find that P2 = (1 atm * 750 mL) / 500 mL = 1.5 atm.

So, to compress nitrogen at 1 atm from 750 mL to 500 ml, the new pressure must be 1.5 atm when the temperature is kept constant.

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What is the volume of 64 g of oxygen gas 02 at STP

Answers

Answer:

The volume would be 44.8 L

Explanation:

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5. Rocks and sediment change their form as they move through the rock cycle. Which change
involves melting?
O
lava to rock
O magma to lava
O
rock to magma
rock to sediment
Submit
.

Answers

Answer:

Rock to Magma

Explanation:

Lava to Rock is incorrect because its "Freezing" The Lava

Magma to Lava basically a name change. No type change.

Rock to Sediment is Erosion of the rock.

Rock to Magma Is the Rock being super-heated, melting it. Similar to Ice and water but more extreme.

Rocks and sediment change their form as they move through the rock cycle.Rock to magma  change involves melting. Therefore, option C is correct.

What causes rock to change into magma?

Any rock type can be altered to form a metamorphic rock by extreme pressure from burial, increasing temperature at depth, and a long period of time. If the newly formed metamorphic rock is allowed to continue heating, it will eventually melt and become molten (magma).

The rock is pulled down by movements in the earth's crust and becomes increasingly hot as it descends. It takes temperatures ranging from 600 to 1,300 degrees Celsius (1,100 to 2,400 degrees Fahrenheit) to melt a rock, transforming it into magma (molten rock).

Rock to magma is the Rock being overheated and melting? Ice and water are similar, but more extreme.

Thus, option C is correct.

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How does the distance between the planet Earth and the Sun compare with the distances between the planet Earth and other stars?
A.
About half of the other stars are closer to Earth than the Sun.
B.
The other stars are many thousands of times closer to Earth than the Sun.
C.
The Sun and all the other stars are the same distance from Earth.
D.
The Sun is many thousands of times closer to Earth than any other star.
Reset Submit

Answers

Answer:

d

Explanation:

The distance between the planet earth and the sun compared with the distances between the planet Earth and other stars is the Sun is many thousands of times closer to Earth than any other star. The correct option is D.

What are a planet and a sun?

In one year, the Earth completes its orbit around the Sun. The plane of the Earth's route around the Sun has a slope on its rotation axis. As the Earth revolves around the Sun, this angle of the Earth is affected by the seasons. All planetary growth is supported by the energy provided by the Sun.

We are moving away from the Sun extremely slowly due to a certain impact. That is how the Sun and the Earth interact tidally. The Earth is pushed further away from the Sun as a result of the Sun's revolution slowing down. You may read more about tides and how the Earth-Moon system affects them here.

Therefore, the correct option is D. The Sun is many thousands of times closer to Earth than any other star.

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which nuclide is most likely to be radioactive and synthetic
24/12 Mg
237/93Mg
195/78Mg
230/84Mg

Answers

Answer:

237/93 np

Explanation:

sub to tkwick

How are atmospheric carbon dioxide levels and average global temperature related?
A. There is a positive relationship.
B. Temperature is the clear cause of carbon dioxide levels.
C. They are not related.
D. There is a negative correlation.

Answers

Answer:

B Temperature is clear cause of carbon dioxide levels

Answer:

B Temperature is clear cause of carbon dioxide levels

Explanation:

Increases in greenhouse gases such as carbon dioxide (CO2) result in the atmosphere retaining more heat.

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the width of a garden is (4x-1) feet and the length is 2x feet. Find the perimeter of the garden.​

Answers

Answer:

6x-1 feet

Explanation:

perimeter = ( 4x-1 ) + 2x

= 6x-1 feet

any measurement that includes both magnitude and direction is called a

Answers

Answer:

Vector

Explanation:

Final answer:

A measurement that includes both magnitude and direction is called a vector. It's a quantity fully defined by these two properties. Examples are force, velocity, and displacement.

Explanation:

Any measurement that includes both magnitude and direction is called a vector. A vector is a quantity that is fully explained by both direction and magnitude. For instance, force is a good example of a vector because it includes information about the intensity of force (magnitude) and the direction in which it's applied. Other examples of vectors include velocity and displacement.

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all plants and animals have mechanisms or ways to

a. transport nutrients within the cell
b. perform photosynthesis
c. regulate nerves
d. produce flowers

Answers

Answer:

I think A sorry if its wrong

Explanation:

All plants and animals have mechanisms or ways to transport nutrients within the cell. The correct option is a.

What is the transport of nutrients?

Water is a nutrient that aids in the movement of substances through our bodies and the control of body temperature. The growth, development, and maintenance of the tissues and cells in our bodies depend on minerals like calcium and iron.

While the Phloem carries organic nutrients in plants, the Xylem carries water and minerals.

Animals' intestines absorb the water we drink, which is then transported throughout the body as bodily fluids like blood. These carry out a variety of tasks that keep us alive. They provide the cells with oxygen and nutrition and remove waste products, which are eventually expelled through urination.

Therefore, the correct option is a. transport nutrients within the cell

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A 56.8g sample of aluminum is heated from 79.5°C to 143.7°C. The specific heat capacity of aluminum is 0.900 J/(g*K). Calculate the heat absorbed.
A) 3280 J
B) 4440 J
C) 6220 J
D) 11400 J

Answers

Answer:

I think the answer is A.

The heat absorbed should be option A. 3,280 J.

Calculation of the heat absorbed:

Since A 56.8g sample of aluminum is heated from 79.5°C to 143.7°C. The specific heat capacity of aluminum is 0.900 J/(g*K).

So based on this, the following formula should be applied

= Mass of substance * specific heat * change in temperature

= 56.8 * 0.900 J * (143.7 - 79.5)

= 56.8 * 0.900 J * 64.2

= 3,280 J

hence, the first option is correct.

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7) What is the hydrogen concentration of a solution with a pH of 2.1? *

Answers

The correct answer is Hydrogen concentration = 7.94×10^-3 M

What is hydrogen concentration?

The hydrogen ion concentration generally found in many chemical and biological systems are very small, and often in the range of 10 -2 to 10 -12 mol L -1.pH = -log[H+]2.1 = -log[H+]2.1/-log = -log[H+]/-log10^-2.1 = [H+][H+] = 7.94×10^-3M

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Students are provided with a choice of two solutions. Each one is used to test the presence of a different chemical. How could students use one of these solutions to gather evidence for the action of photosynthesis?

Answers

Answer:

use fehling's Solution on the plant leaves exposed to light and on the plant leaves covered in aluminium foil for a week

Explanation:

This can be found out by using fehling's Solution on the plant leaves exposed to light and on the plant leaves covered in aluminium foil for a week.

This will gather evidence for the action of photosynthesis.

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