Why would an electrician use parallel circuits to wire the lights in each room of a house instead of using a series circuit?A.
When electricians get their license, they are only licensed to install parallel circuits. Most electricians aren't certified to install series circuits.

B.
Parallel circuits prevent electrons from flowing if part of the circuit is broken and therefore prevent fires. Series circuits cause more fires because electrons still flow.

C.
Electrons continue to flow in a parallel circuit even if part of the circuit is broken. In a series circuit, a break such as a burned out lightbulb would cause the current to stop in the whole room.

D.
Parallel circuits are much easier to wire and are required by the electrical code for housing construction in most communities. Series circuits are sometimes used with special approval.

Answers

Answer 1
Answer: C: Electrons continue to flow in a parallel circuit even if part of the circuit is broken. In a series circuit, a break such as a burned out lightbulb would cause the current to stop in the whole room!

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Which is the correct order of increasing standard molar entropy for the noble gases?He ≤ Ne ≤ Kr ≤ Ar

He ≤ Ne ≤ Ar ≤ Kr

Ne ≤ He ≤ Ar ≤ Kr

Kr ≤ Ar ≤ Ne ≤ He

Answers

Answer:

The correct order of increasing standard molar entropy for the noble gases is He ≤ Ne ≤ Ar ≤ Kr

Explanation:

Entropy is the measure of degree of disorderliness or randomness of a substance. Entropy increases with increasing number of electron present in an atom due to increased repulsive force of the electrons. Therefore, the standard entropy of a substance increases with an increase in their atomic masses.

For the given noble gases in this question, Helium (He) has the least atomic mass while Krypton (Kr) has the highest atomic mass.

Thus, the correct order of increasing standard molar entropy for the noble gases is He ≤ Ne ≤ Ar ≤ Kr

If the nucleus was the size of a tennis ball the atom would be the size of....?

Answers

If the nucleus was the size of a tennis ball, the atom would be the size of a sphere about 1,450 feet in diameter.

The size of one atom would be comparable to one of the world's largest sports stadiums if the nucleus were the size of a tennis ball, or around 1,450 feet in circumference.

There are protons, neutrons, and electrons, three types of subatomic particles. Protons and electrons, two of the subatomic particles, each carry an electrical charge of one or the other.

Electrically charged protons and electrically neutral neutrons make up atomic nuclei. The strongest basic force known to science, often known as the strong force, holds these things together.

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If you could find anything just bigger than a tennis ball, you're all good, because the nucleus is almost half the size of the atom, I think! U should find this helpful, if you do, great, I'm glad that I ciyld help

How does the nucleus of a copper atom compared to the nucleus of a nickel atom

Answers

Copper has 29 protons in the nucleus, while Nickel has 28 protons.

Formula equation is more informative than a word equation why​

Answers

Answer:

yes

Explanation:

this is because the formula equation shows the details on how they solved the equation

PLEASE HELP!!!A reaction is in equilibrium as shown: A + B C + D. Calculate the equilibrium constant if the final concentrations stabilize at:

A = 9.60 M
B = 10.0 M
C = 4.00 M
D = 4.00 M

Answers

Answer : The value of equilibrium constant is, 0.166

Solution : Given,

Concentration of A = 9.60 M

Concentration of B = 10.0 M

Concentration of C = 4.00 M

Concentration of D = 4.00 M

The equilibrium reaction will be,

A+B\rightleftharpoons C+D

The expression for equilibrium constant is,

K_c=([C][D])/([A][B])

Now put all the given values in this expression, we get the values of equilibrium constant.

K_c=((4M)* (4M))/((9.60M)* (10M))=0.166

Therefore, the value of equilibrium constant is, 0.166

Well...
A + B = C + D

(CD) / (AB)

(4) (4) / (9.6) (10)

16 / 96 = 0.167

Hope this helps!

Which statement defines calorimetry ?

Answers

Calorimetry is the measurement of the amount of heat exchanged in a system. It is a science in determining the changes in the energy of  specific system. The equipment used for this is called a calorimeter.

The field of physics known as calorimetry determines how much heat is transferred during a chemical or physical process.

It requires precisely calculating the heat transport in a system using a calorimeter, a specialist tool. Two substances coming into contact at differing temperatures normally causes heat exchange to occur until thermal equilibrium is attained. The amount of heat transported can be determined by monitoring the temperature change and taking into account the individual heat capacity of the substances involved. Calorimetry has many uses, including figuring out how much energy is in food, researching chemical processes, and looking at the thermal characteristics of various materials. It is necessary to comprehend how energy is transformed in distinct systems.

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