why copper is important in electrical works?​

Answers

Answer 1
Copper is important in electrical works because copper has low resistivity, and therefore is an excellent conductor. Copper is also less oxidative than other metals.

Related Questions

**WHOEVER SOLVES THIS GETS A LOT OF POINTS
***Look at img below

Answers

Answer:

what

Explanation:

I cant see your question yet

Answer:

the question really said :

Please Help Me!!!I will mark Brainliest!!!

Answers

Answer:/

Explanation:

Physical or chemical ?

1. Starch molecules are formed from smaller glucose molecules.
2. Iron rusts
3. Ice melts
4. A match burns
5. Plants leaves lose water through evaporation
6. Hydrochloric acid reacts with sodium hydroxide to produce a salt, water and heat
7. Food is digested
8. A pellet of sodium is sliced in half
9. Proteins are made from amino acids
10. A toothpick is broken in half
ill give brainliest

Answers

Answer:

P,C,P,C,P,C,P,P,C,P

Explanation:

KBr + AgNO3 → AgBr + KNO3


Which two chemicals are products in the chemical reaction?

Answers

Answer:

Products are AgBr and KNO3

Which combination of principal energy level and sublevel
CANNOT exist?

Answers

Answer: 2d

Explanation:

Because you can not make a 2d

please helpp The “wall” and the spaces in between are just like the_______ in a living cell.

Answers

Answer: cell membrane

Explanation: Plzz mark me as brainliest!

what is the difference between groups and periods on the periodic table.? What do they tell you?

Answers

.Answer:

Periods are horizontal rows (across) the periodic table, while groups are vertical columns (down) the table. Atomic number increases as you move down a group or across a period.

Explanation:

Min increases the temperature of a gas in an expandable container. If she keeps the pressure constant, what will happen to the volume of the gas?

Answers

Answer:

The volume will remain the same.

Explanation:

The volume of a given gas sample is directly proportional to its absolute temperature at constant pressure (Charles's law)

There are so many gas laws like Charles's law, Avogadro’s law, Boyle 's law and many more. If pressure of gas is kept constant, then volume of the gas will be increasing.

What is Charles's law?

According to Charles's law, gas expands on heating. At constant pressure, volume well be directly proportional to temperature.

According to ideal gas equation

PV=nRT

On keeping pressure constant the following equation can be deduced to Charles's law as

V₁÷T₁=V₂÷T₂

where,

V₁= initial volume

V₂= final volume

T₁=initial temperature

T₂=final temperature

According to Charles's law, the volume of a given gas sample is directly proportional to its absolute temperature at constant pressure.

Therefore, if pressure is kept constant, then volume of the gas will be increasing.

To know more about Charles's law, here:

https://brainly.com/question/16927784

#SPJ2

.

The usage of solar, wind, and geothermal energy resources is most limited by:
(answer choices)

A.laws prohibiting the use of the resources

B.size of the resources

C.animal habitat around the resources

D.location of the resources

Answers

D. Location of resources.

6) Aluminum bromide decomposes

Answers

Answer:

The reaction begins and builds up heat. This heat causes the aluminum to melt and float on top of the liquid bromine (which is producing a cloud of vapor because the heat is also boiling it). Wherever the two elements meet, sparks, heat, and light are given off.

Explanation:

be more specific

The columns in the periodic table are called
groups/families
O periods
O valence electrons
nucleus

Answers

the answer to your question is periods.

Photosynthesis uses all of the following except___to make food.
A) Carbon dioxide
B) Chemical energy
C) Light energy
D) Water

Answers

Answer:

A

Explanation:

thanks me hehe lovelots

Another source of energy is nuclear energy. Nuclear energy is the energy in the nucleus of an atom. We can release this energy and use it to make electricity. In this project, you will research nuclear energy.
OBJECTIVES
Research nuclear energy and its use for generating electricity.

Directions
Use the library, internet, and other educational resources to research nuclear energy.
Write a three-paragraph report on what you have learned. Be sure to include the uses of nuclear power, how it is generated, and the impact it has on the environment. Also, answer the question, "Is nuclear energy renewable?"

Answers

Yes.Nuclear energy is renewable

How do you determine the number of neutrons in the Bohr Model

Answers

Answer: There are many ways. (Check Explanation)

Explanation: Electrons are found outside of the nucleus. Now in the middle of the nucleus there are protons in neutrons. The way to determine the number of neutrons in the Bohr Model are many ways.

Number one, if the neutrons, protons, and electrons were color coded, take away the electrons and you are left with the 2. Then find out which color corresponds to the neutron.

If it isn't color coded, then the protons and electrons should usually be marked with either + or - on it. The one without any of this and that is in the nucleus is the neutron. Last but not least, on some of the models, it can show many protons or neutrons are in the nucleus. For example the potassium bohr model. (Check image) On here, 19+ means 19 protons and 20N means 20 neutrons.

I’m not sure how to answer

2. 1.5 moles of AgNO3 reacts with 0.5 mole of Mg3P2. Calculate the moles of excess

reactant that remains at the end of the reaction. Include math to justify your answer.

Answers

Answer:

No of Moles in excess at the end of the reaction  is 0.25 moles

Explanation:

AgNO3  +   Mg3P2  → Ag3P + Mg(NO3)2

Balancing the equation we get

6AgNO3  +   Mg3P2  → 2Ag3P + 3Mg(NO3)2

6 moles of AgNO3 needs 1 mole of Mg3P2

using unitary method

AgNO3 = [tex]\frac{1}{6}*Mg3P2[/tex]

1.5 AgNO3 = [tex]\frac{1}{6}*1.5[/tex]

                  = 1/4 = 0.25moles of Mg3P2

So 1.5 Moles of AgNO3 requires 0.25Mg3P2 for complete reaction but we have 0.5Moles of Mg3P2 available Therefore Mg3P2 is in excess

No of Moles in excess at the end of the reaction = 0.5 - 0.25 = 0.25moles

PLEASE HELP FAST!!! Which is a characteristic of colloids?

Which one?
A. Are homogeneous mixtures
B. Have large dispersed particles
C. Will settle out over time
D. Are made up of at least two substances

Answers

D because the 2 substances are made up using colloids

Answer:

the answer is D. Are made up of at least two

Explanation:

took the test on edge

How are ionic bonds and metallic bonds different from each other?

Include: what occurs with electrons in each type of bond? How/why the atoms are attracted (bonded) to each other?

Answers

Answer:

Ionic bond is bond between a metal and non metal , metallic bonding happens between positive metals ions and negative electrons in a metal

Explanation:

ionic Bond is the transfer of electrons between a metal and non metal due to strong electrostatic force of attraction between positive metal ions and negative non metal ions

in metallic bonding , there is a force of attraction between positive metal ions and the sea of electrons surrounding it

Covalent bond involves the sharing of electrons, while metallic bonds have strong attractions and ionic bonds involve the transferring and accepting of electrons from the valence shell. The adhering property of an atom, in order to arrange themselves in a most stable pattern by filling their outermost electrons orbit.

What kind of metal is Calcium, and where is it found?

Answers

Answer:

Calcium is a chemical element with the symbol Ca and atomic number 20. As an alkaline earth metal, calcium is a reactive metal that forms a dark oxide-nitride layer when exposed to air.

Explanation:

The map below shows the top view of a meandering stream as it enters a lake.

At which point, along the stream, are erosion and deposition?

A.
Erosion occurs at points B and D, deposition occurs at A and C

B.
Erosion occurs at points A and B, deposition occurs at C and D

C.
Erosion occurs at points A and C, deposition occurs at B and D

D.
Erosion occurs at points B and C, deposition occurs at A and D

Answers

Answer:

c

Explanation:

The erosion starts at A moving sand or soil, then drops it at B-D.

John is outstanding forward on his club select soccer team. He is know for his ball control and speed. After a game he often makes a sketch of moves that were successful. The dotted line on his sketch shows the direction the ball was moving before he kicked it.

Answers

Answer:

This self evaluation helps them to better his sport.

Explanation:

This is the right way to evaluate the performance of John because this sketch shows him the way he perform in the match. Due to this sketch he can better his performance and remove all the mistakes he had done in the match which results in better performance of John in the next match. This self evaluation helps them to better his sport and got new chances in order to select for a better club or national soccer team.

True or false table salt NaC1 is a molecular compound

Answers

Answer:

If you mean NaCl is table salt than true

but if you mean NaC1 than false

Explanation:

Would the moon phases change if the earth was rotated 90 degrees? If so, how?

Answers

Answer:

This is a very hypothetical question with a very scientifically hypothetical answer, keep in mind.

If Earth's axis tilted to 90 degrees, extreme seasons would cause intense climate change on every continent. During the summer, the Northern Hemisphere would experience nearly 24 hours of sunlight for months, which could melt ice caps, raise sea levels, and flood coastal cities.

Lithium atom of electron configuration 2,1 , it will …………. One electron to become stable ion.

lose
Gain
Share

Answers

Answer:

lose

Explanation:

as you have mentioned it has a electronic configuration as 2,1 that means it has one electrone in its last shell which is unstable. in ur mcq it has lose,gain.share

in order to be a stable atom lithium should either give away that one electron or gain 7 electrons. so as to ur question 7 electrons is out of the track so it is lose one electron

hope this helps

The mass of all substances present before a chemical change

A. is greater the mass of all substances remaining after the change
B. is less than the mass of all substances remaining after the change
C. equals the mass of all substances remaining after the change​

Answers

Answer:

C. Equals the mass of all substances remaining after the change.

Explanation:

Antoine Lavoisier's 1789 discovery in regards to the Law of Conservation of Mass states that no mass is created nor destroyed in a chemical reaction.

Can someone help me please ?

Answers

Answer:

1.w

2. Z

3. Y

4.X

...................

(04.01 LC)

Match each term to its meaning. (3 points)

Substance at the beginning of a reaction

[Choose ]

Substance at the end of a reaction

[Choose]

Number placed before a compound in a

chemical equation

[Choose ]

Answers

Answer:

Substance at the beginning of a reaction- reactant

Substance at the end of a reaction- product

Number placed before a compound in a chemical equation- stoichiometric coefficient

Explanation:

In a reaction equation, the species written on the left hand side of the equation are called the reactants.

The reactants combine to form the species on the right hand side of the reaction equation called products.

The stoichiometric coefficient is a number written before the formula of a compound in the reaction equation.

The picture shows an ice cube melting.

How is thermal energy transferred in this scenario?

A. Thermal energy moves from a warmer object to a cooler object until all the substances are different temperatures.

B. Thermal energy moves from a warmer object to a cooler object until all the substances are the same temperature.

C. Thermal energy moves from a cooler object to a warmer object until all the substances are the same temperature.

D. Thermal energy moves from a cooler object to a warmer object until all the substances are different temperatures.

Answers

Answer:

B. thermal energy moves from a warmer object to a cooler object until all the substances are the same temperature

Please help me out with this...please

I also put the periodic table too just in case:)

Answers

It would be group 1, the alkali metals and group 17, the halogens.

Hope this helps! (:

___________ is a characteristic of a substance that's observed during a chemical reaction. *
physical property
physical change
chemical property
chemical change

Answers

Chemical property. Chemical property refers to the characteristic changed

Please can somebody give me the correct answers.please be realigned
I will be so grateful!!

Answers

Answer: I hope this helps :

An element in Group 5 = Bismuth (Bi)

A halogen = Fluorine (F) or Astatine (At)

An alkali Metal = Lithium (L)

A metal in Group 6 = Selenium (Se) , Tellurium (Te) , Polonium (Po)

A gas made up of individual atoms = Argon (Ag)

An element that forms 1+ ions = Lithium

The most reactive element in Group 1 = francium (it doesn't appear in the image)

The most reactive element in Group 7 = Fluorine

An element that is a good catalyst= Iron (Fe) Cobalt (Co) , Nickel (Ni)

An element that does not react with anything  = Argon

A metal that floats on water = Lithium

An element with a full outer energy of electrons = Helium (He), neon (Ne), and argon (Ar)

A transition Metal = Iron (Fe) Cobalt (Co) , Nickel (Ni)

A noble gas = Argon (Ar)

The element in Group 6 , Period 5 =   Molybdenum , Tellurium

A non-metal = Fluorine , Argon

A gas made up of Diatomic molecule = Argon (Ar)

An element that forms 1- ions =

The Group 1 element with the highest melting point =  Lithium

The Group 7 element with the highest boiling point = Astatine (As)

An element with 3 electrons in it's outer energy level = Boron

An element that forms coloured compounds = Iron

An element that has a coloured vapour = Chlorine  Fluorine

A metal that can form ions with different charges = Iron, Cobalt , Lead

Explanation:

Halogen : Are any of the six nonmetallic elements that make up Group 17  of the periodic table e.g  fluorine (F), chlorine (Cl), bromine (Br), iodine (I), astatine (At).

All elements in Group 1 are Alkali metals( except hydrogen)

Examples :lithium (Li), sodium (Na), potassium (K), rubidium (Rb), caesium (Cs), and francium (Fr).

A pure gas may be made up of individual atoms (e.g. a noble gas like neon), elemental molecules made from one type of atom (e.g. oxygen)

Argon is one of the inert gases that normally exist as single atoms.

Transition metals are good metal catalysts because they easily lend and take electrons from other molecules. A catalyst is a chemical substance that,  does not affect the thermodynamics of a reaction but increases the rate of reaction.

Transition metals ; Scandium. Titanium. Vanadium. Chromium. Manganese. Iron. Cobalt. Nickel.

Noble gases(inert gases) don't react with anything . The family of noble gases includes helium, neon, argon, krypton, xenon, and radon.

Lithium is the lightest metal and has density about half of water.

Group 18 elements (helium, neon, and argon are shown) have a full outer, or valence, shell.

chlorine, fluorine, carbon, nitrogen, arsenic, phosphorus, selenium are examples of non-metal.

Noble gases : helium (He), neon (Ne), argon (Ar), krypton (Kr), xenon (Xe), radon (Rn).

The following 5 element gases are found as diatomic molecules at room temperature and pressure:

Hydrogen – H. ...

Nitrogen – N. ...

Oxygen – O. ...

Fluorine – F. ...

Chlorine – Cl.

Lithium, Li melts at 180°C.

From the lowest boiling and melting point to the highest, the group in order is fluorine, chlorine, bromine, iodine and astatine.

Like other transition metals, iron forms coloured compounds. The table shows some examples of these. Note that iron can form two different ions in its compounds. Iron(II) compounds contain the Fe 2+ ion and iron(III) compounds contain the Fe 3+ ion.

Elements in group seven(Halogens)  : As you move down the group the halogens become darker in colour. For example fluorine is a very pale yellow whereas iodine will be dark purple in colour when it is in a vapour state.

A few elements, all metals, can form more than one possible charge. For example, iron atoms can form 2+ cations or 3+ cations. Cobalt is another element that can form more than one possible charged ion (2+ and 3+), while lead can form 2+ or 4+ cations.

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