Consider the following unbalanced redox reaction:
Cr2O72- (aq) + NO2 (aq) – Cr3+ (aq) + NO3(aq)
What is the oxidizing agent in the reaction?

Answers

Answer 1
Final answer:

The oxidizing agent in the reaction Cr2O72- (aq) + NO2 (aq) – Cr3+ (aq) + NO3 (aq) is Cr2O72-, as it is reduced, meaning it accepts electrons, going from a chromium oxidation state of +6 to +3.

Explanation:

In a redox reaction, the oxidizing agent is the substance that is reduced, meaning it gains electrons. In the unbalanced reaction: Cr2O72- (aq) + NO2 (aq) – Cr3+ (aq) + NO3(aq), the Cr2O72- ions are reduced to Cr3+ ions.

This is determined through the observation of the oxidation states of the substances before and after the reaction. The oxidation state of chromium in Cr2O72- is +6, while it is +3 in Cr3+. This reduction in oxidation state indicates that Cr2O72- accepted electrons, meaning it is the oxidizing agent in this reaction.

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Related Questions

30 POINTS WILL GIVE BRAINLIEST

_____ numbers are based on the distribution of electrons in a molecule.
Question 4 options:

coefficient

oxidation

electron

chemical

Answers

Coefficient numbers are always in front of the element and show how much of the element there is

What is true of a covalent bond? (03.03)

It is the electrostatic attraction between oppositely charged particle

It is the sharing of electrons by overlapping orbitals

It involves the exchange of electrons from one atom to another

It involves the sharing of neutrons between two nuclei

Answers

Answer:

I think B..

Explanation:

It is the sharing of electrons from one atom to another .

Answer:

The answer is b: It is the sharing of electrons by overlapping orbitals

Explanation:

The ionic bong involves the exchange of electrons from one atom to another to keep eight particles in their outermost orbit. In this way the atoms become stable.  This happens between a metal, which losing electrons becomes a cation that now has a positive charge, and a non-metal, which accepting electrons becomes an anion that now has a negative charge. So the ionic bond is the electrostatic attraction between oppositely charged particle (cation and anion).

No chemical bond involves sharing neutrons between two nuclei. Chemical bonds occur between the electrons of atoms, which are found in the outer layer around the nuclei.

So, the correct answer is b: It is the sharing of electrons by overlapping orbitals.  This happens between two non-metallic elements.

A]a[B]b [C]c [D]d
When the Keq value is large, the number representing [A]a[B]b must be ____ (smaller / larger) than the number representing [C]c[D]d. This relationship means that the ____(products/ reactants) must be favored and that the mixture at equilibrium is largely ___ (products/ reactants).

Answers

Answer:

When the Keq value is large, the number representing [A]a[B]b must be smaller than the number representing [C]c[D]d. This relationship means that the products must be favored and that the mixture at equilibrium is largely products.

Explanation:

For the equilibrium:

aA + bB ⇄ cC + dD,

Keq = ([C]^c x [D]^d)/([A]ᵃ[B]ᵇ),

For large value of Keq, the value of [C]^c x [D]^d) is larger than that of ([A]ᵃ[B]ᵇ).

So, When the Keq value is large, the number representing [A]a[B]b must be smaller than the number representing [C]c[D]d.

For large value of Keq, the products are favored as the concentration of products is larger than that of reactants at equilibrium.

So, This relationship means that the products must be favored and that the mixture at equilibrium is largely products.

Answer:

1.smaller

2.products

3.products

Explanation:

why leather gets hardered after tanning​

Answers

Answer:

Mutual coagulation takes place

Explanation:

Leather gets hardened after tanning​ because mutual coagulation takes place.

. In lab we used 40 ml of 6M NaOH in making soap.
How many moles of NaOH was in this volume?​

Answers

Hey there!:

Molarity of NaOH = 6 M or 6 mol/L

Volume of NaOH = 40 mL

Therefore , number of moles of NaOH:

40 mL  =( 6 mol / 1000 mL)*40=

6/ 1000 * 40 =>  0.24 moles of NaOH

Hope this helps!

The moles of NaOH will be 0.24 moles.

What is a mole?

A mole would be defined as the quantity of a material that includes precisely 6.02214076 X 1023 of the particular chemical elementary entities.

Calculation of mole

Given data:

Volume = 40 ml

Molarity = 6M

Mole can be determined by using the formula:

Molarity = moles of solute / solution (L)

6 M = Moles of solute  ×1000/ 40

Moles of solute = 0.24 moles

Therefore, the moles of NaOH will be 0.24 moles.

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What is heat vaporization?

Answers

Answer:

D

Explanation:

there is no explanation, I researched the topic

answer : D

sources: google

how many cups are in 4 liters? 1 L=4.2cups

Answers

Answer:

16.8 cups

Explanation:

We are given that there are 4.2 cups in in 1 liter of a liquid and we are to find out the number of cups that there will be in 4 liters.

To find this out, we will use the ratio method.

We know that:

1 L = 4.2 cups

So we can write it as:

[tex]\frac{1L}{4 L} =\frac{4.2 cups}{x}[/tex]

[tex] x = 4 .2 \times 4[/tex]

[tex] x = 1 6 . 8 [/tex]

Therefore, there are 16.8 cups in 4 liters.

why do all atoms of an element have the same atomic number, although they may have
different mass numbers?

Answers

Answer:

Here’s what I get.

Explanation:

The atomic number is the number of protons in the nucleus of an atom. The number of protons determines the number of electrons. The number of electrons determines the chemical properties of the element,

Thus, the atomic number determines the identity of the element.

The atomic mass does not affect the chemical properties, so different isotopes of an element behave alike.

A mixture contains 35.07 grams of carbon dioxide, 27.93 grams of water vapor, 12.64 grams of nitrogen, and 5.54 grams of helium. The total pressure of the system is 12 atm, What is the partial pressure of the helium?
A. 0.88 atm
B. 0.82 atm
C. 0.073 atm
D. 0.068 atm

Answers

Answer:

[tex]\boxed{\text{3.6 atm}}[/tex]

Explanation:

For this question, we must use Dalton's Law of Partial Pressures:

The partial pressure of a gas in a mixture of gases equals its mole fraction times the total pressure:

[tex]p = \chi p_{\text{tot}}[/tex]

1. Calculate the number of moles of each gas.

[tex]n_{\text{CO}_{2}} = \text{35.07 g} \times \dfrac{\text{1 mol}}{\text{44.01 g}} = \text{0.7969 mol}\\\\n_{\text{H}_{2}\text{O}} = \text{27.93 g} \times \dfrac{\text{1 mol}}{\text{18.02 g}} = \text{1.550 mol}\\\\n_{\text{N}_{2}} = \text{12.64 g} \times \dfrac{\text{1 mol}}{\text{14.01 g}} = \text{0.9022 mol}\\\\n_{\text{He}} = \text{5.54 g} \times \dfrac{\text{1 mol}}{\text{4.003 g}} = \text{1.384 mol}[/tex]

2. Calculate the total moles

[tex]n_{\text{tot}} = \text{(0.7969 + 1.550 + 0.9022 + 1.384) mol = 4.633 mol}[/tex]

3. Calculate the mole fraction of helium

[tex]\chi = \dfrac{n_\text{He}}{n_{\text{tot}}} = \dfrac{\text{1.384 mol}}{\text{4.633 mol}}= 0.2987[/tex]

4. Calculate the partial pressure of helium:

[tex]p_{\text{He}} = \chi_{\text{He}} p_{\text{tot}}= 0.2987 \times \text{12 atm} = \textbf{3.6 atm}\\\\p_{\text{He}} = \boxed{\textbf{3.6 atm}}[/tex]

Answer:

The partial pressure of He = 3.97 atm

Explanation:

Given:

Mass of CO2 = 35.07 g

Mass of H2O = 27.93 g

Mass of N2 = 12.64 g

Mass of He = 5.54 g

Total pressure P = 12 atm

To determine:

The partial pressure of He

Calculation:

Based on Dalton's law, the partial pressure of a gas can be expressed as a product of its mole fraction and the total pressure

[tex]P(gas)=X(gas)*P(total)-----(1)[/tex]

where X(gas) = mole fraction

[tex]X(gas)=\frac{moles(gas)}{moles(total)}----(2)[/tex]

[tex]Moles(CO2)=\frac{mass(CO2)}{mol.wt.(CO2)}=\frac{35.07g}{44g/mol}=0.7970[/tex]

[tex]Moles(H2O)=\frac{mass(H2O)}{mol.wt.(H2O)}=\frac{27.93g}{18g/mol}=1.552[/tex]

[tex]Moles(N2)=\frac{mass(N2)}{mol.wt.(N2)}=\frac{12.64g}{28g/mol}=0.4514[/tex]

[tex]Moles(He)=\frac{mass(He)}{at.wt.(He)}=\frac{5.54g}{4g/mol}=1.385[/tex]

Therefore:

Moles of He = 1.385

Total moles = 0.7970+1.552+0.4514+1.385 =4.188

Substituting the appropriate values in equation (1) gives:

[tex]P(He)=X(He)*P(total)[/tex]

[tex]P(He)=\frac{1.385}{4.188}*12 atm = 3.97 atm[/tex]

How many molecules of O2 are required to react with 3.00 moles P4?
P4+5O2⟶2P2O5

Answers

Final answer:

The reaction requires 15 moles of O2, which equates to 9.03 * 10^24 molecules, to react with 3 moles of P4.

Explanation:

To calculate the number of O2 molecules required in this reaction, we refer to the stoichiometric coefficients in the balanced chemical equation. Looking at the equation, we can see that 1 mole of P4 reacts with 5 moles of O2 to produce 2 moles of P2O5. Therefore, 3 moles of P4 would require 3*5=15 moles of O2. To convert moles to molecules, we have to multiply by Avogadro's number (6.022 * 10^23) because there are that many molecules in one mole. Therefore, 15 moles of O2 would equate to 9.03 * 10^24 molecules of O2.

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In a chemical reaction, 24 grams of
carbon reacted with exactly 64 grams
of oxygen. The product of this reaction
was carbon dioxide. How many grams
of carbon dioxide were formed?

Help pls urgent!!

Answers

Answer: there must be 64 g + 24 g = 88 g of carbon dioxide present after the reaction.

Explanation: Since the total mass of substances used up in the reaction must be equal to the amount of product formed, according to the conservation of mass law,

3. When atoms combine to form molecules, a (blank) change has occurred.

Answers

3. When atoms combine to form molecules, a (Chemical) change has occurred.

When atoms combine to form molecules, a chemical change has occurred as there is a chemical reaction involved.

What is a chemical change?

The atoms in the reactants rearrange and link differently throughout a chemical reaction to create one or more new products with properties distinct from the reactants.

A chemical change occurs when a new substance is created.

Chemical transitions, commonly referred to as chemical reactions, are the conversion of one or more substances into one or more unique, distinct substances.

In other words, a chemical reaction involving atom rearrangement is referred to as a chemical transformation.

Examples of chemical changes include burning, cooking, rusting, and decaying.

Thus, a chemical change takes place when atoms combine to form molecules.

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A hot air balloon contains 5.30 kL of helium gas when the temperature is 12°C. At what temperature will the balloon's volume have increased to 6.00 kL? (Remember to convert to Kelvin and then back to Celcius.)

(A) 50 °C
(B) -21 °C

Answers

Answer:

(A) 50 °C

Explanation:

Ideal gas law:

PV = nRT

If pressure is held constant, then:

V₁ / T₁ = V₂ / T₂

Substituting values:

(5.30 kL) / (12 + 273 K) = (6.00 kL) / T

T = 323 K

T = 50 °C

Answer:

Option (A) 50 °C

Explanation:

Thinking process:

Let the volume of the hot air be [tex]V_{1}[/tex] 5.30 k l = 5 300 l = 5.3 m³

The initial temperature will be 12 ° (12 + 273.15) = 285.15 K

The later volume, [tex]V_{2}[/tex] = 6 Kl = 6 000 l = 6 m³

The equation will be:

[tex]\frac{P_{1}V_{1} }{T_{1} } = \frac{P_{2}V_{2} }{T_{2} }[/tex]

If the pressure is the same, then:

[tex]\frac{5.3}{285.15} = \frac{6}{T_{2} }[/tex]

Solving for [tex]T_{2}[/tex] gives:

T₂ = 322.8

   = 49.66

   = 50°

As matter changes, what happens to the energy?

Answers

Energy, Temperature, and Changes of State

Matter either loses or absorbs energy when it changes from one state to another. For example, when matter changes from a liquid to a solid, it loses energy. The opposite happens when matter changes from a solid to a liquid.

How many grams of Fe3O4 are required to react completely with 69.76 grams of H2?

Answers

Answer:

=2023.04 grams

Explanation:

Magnetite reacts with hydrogen to produce Iron metal and steam. Steam instead of water is produced as the reaction occurs at temperatures above the boiling point of water.

Fe₃O₄ + 4 H₂ → 3 Fe +4 H₂O

From the equation, 1 mole of Fe₃O₄ reacts with 4 moles of H₂.

69.76 grams of H₂ has the following number of moles.

Number of moles= mass/RAM

=69.76/2

=34.88 moles.

The reaction ratio of Fe₃O₄ to H₂ is 1:4

Thus number of moles of magnetite= (1×34.88)/4

=8.72 moles.

Mass= moles × RAM

=8.72 moles × (56×3+16×4)

=2023.04 grams

19. Which of the following chemical equations represents
propane combusts?
A. 2 CsHe (g) + 5O2 (g) → 3C02(g) + 4H20 (1)
B. 2 CsHe (g) + 5O2 (g) → 3CO2(g) + 3H20(1
C. CsHe (g) + O2 (g) → CO2(g) + H2O(1)
D. CsHa (g) + 5O2 (g) → 3CO2(g) + 4H2O(1)

Answers

Answer:

C₃H₈ (g) + 5O₂(g) → 3CO₂ (g) + 4H₂O (l)

(option D. with the proviso that the subscripts of propane's chemical formula must be corrected)

Explanation:

Propane is the saturated hydrocarbon, alkane, with chemical formula C₃H₈ or CH₃CH₂CH₃.

The complete combustion of the hydrocarbons yield carbon dioxide (CO₂) and water (H₂O).

The chemical equation that represents this combustion is:

C₃H₈ (g) + O₂(g) → CO₂ (g) + H₂O (l) (skeleton equation: unbalanced)

Once you balance it, you get:

C₃H₈ (g) + 5O₂(g) → 3CO₂ (g) + 4H₂O (l)

        Left side           Right side

C         3                          3

H         8                          4×2 = 8

O        5×2 = 10               3×2 + 4 = 10

That equation corresponds to the option D. of the list, with the proviso that the subscripts of propane's chemical formula must be corrected

In which layer of the Earth does the motion of the convection currents drive plate movement?

A.)mantle
B.)outer core
C.)asthenosphere
D.)lithosphere

Answers

Answer: option (A)

Explanation: The convection current is generates in the mantle due to the heat radiated from the core of the earth. Due to this convection current, the lithospheric plates moves as the upper part of the mantle known as the asthenosphere, is the region which is viscous in nature and drives the plates to move. This is a repeating cycle that constantly forces the plates to move.

Thus the correct answer is option (A).

Answer:

Mantle

Explanation:

Which of the following is an example of consideration?


A. Repeating what someone has said to show you understand

B. Opening a door for someone who is carrying things

C. Teasing students who earn good grades

D. Using positive body language

Answers

Answer:

B. Opening a door for someone who is carrying things

HELP FAST PLZ!!!!The process of photosynthesis takes place on the inner membrane of what organelle?
chloroplast
endoplasmic
reticulum
cell membrane
cell wall

Answers

Answer:

chloroplast

Explanation:

chloroplasts

In plants, photosynthesis takes place in chloroplasts, which contain the chlorophyll. Chloroplasts are surrounded by a double membrane and contain a third inner membrane, called the thylakoid membrane, that forms long folds within the organelle.

Consider the following unbalanced redox reaction:
NO3- → NO
How many water molecules are needed for balancing?

Answers

Answer:

I water molexule

Explanation:

equat8n= 2NO3 + h2O =2 HNO3

Final answer:

Upon balancing the redox reaction NO3- → NO, we find that two water molecules (2 H2O) are required for balancing the reaction, ensuring both mass and charge conservation.

Explanation:

The reaction provided, NO3- → NO, is an unbalanced redox reaction. Balancing redox reactions involves ensuring that both the number of atoms of each element and the charge are balanced on both sides of the equation. Let's focus on the nitrogen and oxygen atoms first, and then balance the hydrogen atoms and the charges. After balancing, the fully balanced equation becomes:

NO3- + 2 H+ + e- → NO + 2 H2O

To confirm the balance, verify that there are equal numbers of nitrogen atoms and oxygen atoms on each side of the equation, as well as that the total charge is balanced. Here we can see that there are the same number of nitrogen atoms (1 on each side) and oxygen atoms (3 on the left, 1 in NO, and 2 in the 2 H2O molecules), which means the number of atoms is balanced. Additionally, the total charge on each side is also the same (-1 on the left side with the nitrate ion and the 2 extra positive charges from the hydrogen ions equaling +1, and 0 on the right side with NO being neutral and water having no charge).

Therefore, two water molecules (2 H2O) are required to balance this redox reaction.

Which subatomic particle has the least mass?

electron
proton
neutron
nucleus

Answers

the answer is electrons

Final answer:

The subatomic particle with the least mass is the electron, having a mass of about 0.00055 amu, which is significantly lighter than both the proton (1.0073 amu) and the neutron (1.0087 amu).

Explanation:

When comparing subatomic particles such as electrons, protons, and neutrons, the electron is the particle with the least mass. Despite all three being crucial components of an atom, an electron has an extremely small mass compared to protons or neutrons. Specifically, the mass of an electron is about 0.00055 amu (atomic mass units), whereas a proton has a mass of approximately 1.0073 amu, and a neutron has a mass of about 1.0087 amu.

Protons and neutrons, collectively known as nucleons, have masses that are nearly identical. However, the neutron is very slightly more massive. The vast difference in mass between electrons and nucleons (protons and neutrons) means that almost all the atomic mass is concentrated in the atom's nucleus, not in the electrons that orbit it.

The device shown in the picture is used by electric utility power stations to produce electrical energy from _____ energy​

Answers

Answer:

mechanical energy

convert 132,000,000,000,000,000 into number of moles

Answers

Answer:

0.15365144685714319697163388678739

Explanation:

1 mole is equal to 6.022^23 somethings (anything) since a mole is a way of representing the amount of somethings. Using avogadro's number rounded to the thousandth's place (you can look up a more specific version) you divide 132... by 6.022^23 to get the amount of moles.

Which contains elements with similar properties in the periodic table?

Answers

Sodium, lithium, iron, and copper react with water

The answer is a column.

What are repelled in the VSEPR theory?

A. Other molecules
B. Opposite charges
C. Protons in nuclei
D. Electron pairs

Answers

Answer:

electron pairs, i just did it on APEX

Explanation:

Final answer:

In VSEPR theory, the elements that are repelled are electron pairs, which include both bonding pairs and lone pairs, dictating the molecular geometry.

Explanation:

The Valence Shell Electron Pair Repulsion (VSEPR) theory predicts the arrangement of electron pairs around each central atom in a molecule. According to this theory, electron pairs are oriented to be as far apart as possible to minimize repulsions. Therefore, the elements that are repelled in VSEPR theory are D. Electron pairs. These include both bonding electron pairs (shared between atoms to make covalent bonds) and lone pairs (non-bonding electron pairs).

In VSEPR theory, the repulsion between electron pairs is a key factor in determining the geometric structure of molecules. For example, in a water molecule (H₂O), the two lone pairs on the oxygen force the hydrogen atoms to adopt a bent arrangement rather than a linear one.

Explain, in terms of particles, concentration, and reaction rate, what you expect to happen when methane gas (CH4) and hydrogen sulfide gas (H2S) are sealed in a flask and reach a state of equilibrium.

CH4 (g) +2 H2S (g) Two arrows stacked on top of each other. The top arrow points to the right. The bottom arrow points to the left. CS2 (g) + 4 H2 (g)

Answers

Answer:

Explanation:

The equation of this equilibrium reaction is shown below:

     CH₄ + 2H₂S ⇄ CS₂ + 4H₂

All the gases in this reaction are in a gaseous phase.

When gases are in equilibrium with one another, we can make some comments about their particles, concentration and reaction rate.

For the particles:

The magnitude of the kinetic energy here is very great according to the kinetic theory of matter. This is because the particles are in a uniform gaseous phase.

In terms of concentration

When dealing with gases in equilibrium, we talk more of the concentration with regards to pressure. Pressure is equivalent to concentration when we consider gaseous reactions. An increase in pressrue is like applying a stress to the system. Based on Le Chatelier's principle, increase in pressure favors the side with smaller volume:

                       CH₄             +         2H₂S           ⇄ CS₂        + 4H₂

                        3 moles of gases                          5 moles of gases

Increase in pressure will favor the reactant side.

Reaction rate

The rate at which this reaction will proceed would be very fast. This is because gases have the fastest rate of reaction. The equilibrium will quickly be reached.

PLS ASAP!! Which has a wavelength of 350 nanometers?

red light
violet light
infrared light
ultraviolet light

Answers

Answer:

Ultraviolet light.

Hope this helps!

Ultraviolet light has a wavelength of 350 nanometers. Therefore, the correct option is option D.

What is wavelength?

The length between identical spots between two succeeding waves is known as the wavelength, which is a feature of waves. The wavelength of a wave is indeed the distance among one wave's peak (or trough) and the next. In mathematics, the Greek symbol lambda () is used to denote wavelength.

The colour of light is determined by its wavelength, and the pitch of sound is determined by its wavelength. The visible spectrum of light has wavelengths between around 700 nm (red) and 400 nm (violet). The range of audible sound wavelengths is roughly 17 mm to 17 m. Compared to visible light, audible sound has far longer wavelengths. Ultraviolet light has a wavelength of 350 nanometers.

Therefore, the correct option is option D.

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what is the volume of stank of nitrogen that contains 17 moles of nitrogen at 34 C under 12,000Pa?

Answers

Answer:

3626.76dm³

Explanation:

Given parameters:

Number of moles of Nitrogen in tank = 17moles

Temperature of the gas = 34°C

Pressure on the gas = 12000Pa

Unkown:

Volume of the tank, V =?

Converting the parameters to workable units:

We take the temperature from °C to Kelvin

K = 273 +  °C  = 273 + 34 = 307k

Taking the pressure in Pa to atm:

101325Pa = 1atm

12000Pa = 0.118atm

Solution:

To solve this problem, we employ the use of the ideal gas equation. The ideal gas law combines three gas laws which are the Boyle's law, Charles's law and the Avogadro's law.

            It is expressed as PV = nRT

The unknown is the Volume and we make it the subject of the formula

             V = [tex]\frac{nRT}{P}[/tex]

Where R is called the gas constant and it is given as 0.082atmdm³mol⁻¹K⁻¹

Therefore  V = [tex]\frac{17 x 0.082 x 307 }{0.118}[/tex] = 3626.76dm³

Answer: The volume of nitrogen will be 3614.15 L

Explanation:

To calculate the number of moles, we use the equation given by ideal gas equation:

[tex]PV=nRT[/tex]

Or,

[tex]PV=\frac{m}{M}RT[/tex]

where,

P = pressure of the gas = 12000 Pa = 12 kPa    (Conversion factor: 1 kPa = 1000 Pa)

V = Volume of gas = ?

n = number of moles of nitrogen = 17 moles

R = Gas constant = [tex]8.31\text{L kPa }mol^{-1}K^{-1}[/tex]

T = temperature of the gas = [tex]34^oC=[34+273]=307K[/tex]

Putting values in above equation, we get:

[tex]12kPa\times V=17mol\times 8.31\text{L kPa }mol^{-1}K^{-1}\times 307K\\\\V=3614.15L[/tex]

Hence, the volume of nitrogen will be 3614.15 L

Weight training has the biggest effect on __________.

Answers

i’m pretty sure it would be athletes, because it makes them stronger for whatever sports they are participating in. hope this helps :)

Weight training has the biggest effect on skeletal muscles.

A muscle fibre is another term for a single skeletal muscle cell, which is not the same as skeletal muscle. The many muscle fibres that make up skeletal muscles are bound together by connective tissue. The contraction of each muscle fibre, which is made up of a single multinucleated cell, results in force and movement.

A specific form of cell called a muscle fibre sometimes referred to as a myofiber or muscle cell, is what gives skeletal muscles their shape. Long, cylindrical cells called muscle fibres make up a muscle's length and are bound together by connective tissue. Since they have several nuclei, they are multinucleated cells, which may contract to provide force and movement.

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Which of the following is an example of chemical energy changing into radiant energy?

A)A fireplaces glowing when lighted

B)A plant using sunlight to make food

C)A child on a swing slowing down as she swings upwards

D)A coil of a toaster glowing when the toaster is switched on

Answers

Answer:

D)A coil of a toaster glowing when the toaster is switched on

Explanation:

A coil of a toaster glowing when the toaster is switched on  is an example of chemical energy changing into radiant energy.

The toaster is turning into radiant energy because it is getting warmer and cooking.

Answer:

Explanation:

The reaction you are looking for is

hydrocarbon + O2 ====> nCO2 + mH20

in the simplest form.

You have a piece of wood. You burn it. There is going to be a chemical change.

Both heat and light are produced. (radiant energy)

The second best answer is D because you do get radiant energy.

Other Questions
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