What is the noble gas configuration for silicon?

Answers

Answer 1
Answer: [Ne]3s23p2
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Why alkali metals are found in many common substances but are rarely found in pure form?
Which equation represents sublimation?(1) I2(s) ==> I2(g) (3) I2(l)==>I2(g)(2) I2(s) ==>I2(l) (4) I2(l)==>I2(s)
What was the optimal mix of hydrogen and oxygen to launch the pipette rockets in the Combustion lab?
Which best represents the law of conservation of mass?

Which characteristics of the planets in our solar system increases as the distance from the sun increases?A- equatorial diameter
B-eccentricity of orbit
C- period of rotation
D-period of revolution

Answers

As the distance from the sun increases the PERIOD OF REVOLUTION increases which is the time it takes to a body to spin such as the sun

Identify each of the following compounds as binary or ternary. Then write the chemical formula for each ionic compound.Nickel(III)oxide
Copper (II)iodide
Tin(IV) nitride
Choro minim (II)bromide
Iron(III)phosphide

Answers

binary compounds have 2 different elements, and ternary compounds have 3
Nickel(III)oxide:  binary, Ni2O3
Copper (II)iodide: binary, CuI2
Tin(IV) nitride: binary, Sn3N4
Chromium (II)bromide: binary, CrBr2
Iron(III)phosphide: binary, FeP

Final answer:

Compounds are classified as binary or ternary based on the number of elements present in the compound. The chemical formulas for the given compounds include nickel(III)oxide, copper(II)iodide, tin(IV)nitride, chloro minimium(II)bromide, and iron(III)phosphide.

Explanation:

In order to identify whether a compound is binary or ternary, we need to analyze its chemical formula. Binary compounds consist of two elements, while ternary compounds consist of three or more elements. The chemical formula for each compound is as follows:

  1. Nickel(III)oxide - ternary compound
  2. Copper(II)iodide - binary compound
  3. Tin(IV)nitride - ternary compound
  4. Chloro minium(II)bromide - ternary compound
  5. Iron(III)phosphide - ternary compound

Learn more about Classification of Compounds here:

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Is the answer 1 or 2? And why.

Answers

1, it has the same number of Carbon, Hydrogen, and Oxygen atoms

Find the mass of AlCl3 that is produced when 10 g of Al2O3 reacts with 10 g of HCl according to the following equation Al2O3(s) + 6HCl(aq) --> 2AlCl3(aq) + 3H2O(aq) Please select the correct option: A. 16.2 g B. 20.0 g C. 10.0 g D. 6.10 g E. 12.2 g

Answers

Answer:

Considering the reaction stoichiometry and the definition of limiting reagent, the mass of AlCl₃ that is produced when 10.0 grams of Al₂O₃ react with 10.0 grams of HCl is 12.19 grams.

Explanation:

Al₂O₃ + 6 HCl → 2 AlCl₃ + 3 H₂O

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:  

Al₂O₃: 1 mole

HCl: 6 moles

AlCl₃: 2 moles

H₂O: 3 moles

The molar mass of the compounds present in the reaction is:

Al₂O₃: 102 g/mole

HCl: 36.45 g/mole

AlCl₃: 133.35 g/mole

H₂O: 18 g/mole

Then, by reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of mass of each compound participate in the reaction:  

Al₂O₃: 1 mole× 102 g/mole= 102 grams

HCl: 6 moles× 36.45 g/mole= 218.7 grams

AlCl₃: 2 moles× 133.35 g/mole= 266.7 grams

H₂O: 3 moles× 18 g/mole= 54 grams

The limiting reagent is one that is consumed first in its entirety, determining the amount of product in the reaction. When the limiting reagent is finished, the chemical reaction will stop.

To determine the limiting reagent, it is possible to use a simple rule of three as follows: if by stoichiometry 102 grams of Al₂O₃ reacts with 218.7 grams of HCl, 10 grams of Al₂O₃ reacts with how much moles of HCl?

mass of HCl= 21.44 grams

But 21.44 grams of HCl are not available, 10 grams are available. Since you have less moles than you need to react with 10 grams of Al₂O₃ , HCl will be the limiting reagent.

Then, it is possible to determine the mass of AlCl₃ produced by another rule of three: if by stoichiometry 218.7 grams of HCl produce 266.7 grams of AlCl₃, if 10 grams of HCl react how much mass of AlCl₃ will be formed?

mass of AlCl₃= 12.19 grams

In summary, the mass of AlCl₃ that is produced when 10.0 grams of Al₂O₃ react with 10.0 grams of HCl is 12.19 grams.

The average atomic mass of oxygen is 15.9994 amu. The atomic masses of its three isotopes are as follows: O-16: 15.995 amu; O-17: 16.999 amu; O-18: 17.999 amu Which isotope is most likely to have the greatest abundance in nature?

Answers

Answer:

O-16 isotope is most likely to have the greatest abundance in nature.

Explanation:

Atomic mass of an isotopes of oxygen elements:

  • O-16: 15.995 amu
  • O-17: 16.999 amu
  • O-18: 17.999 amu

Average atomic mass of an oxygen atom = 15.994 amu

Isotope with the value of atomic mass closest to the average atomic mass of the oxygen atom will have the greatest abundance in nature. As it will be found in much more greater extent in nature.

Where as isotope which is least close to the average atomic mass will have less abundance in nature.

O-16 isotope is most likely to have the greatest abundance in nature.

15.995 amu ≈ 15.994 amu

Which rule should be followed when naming binary acids

Answers

 Here you are this will explain it it is one of my own persoal papers    

Acids are divided into two groups: Binary and Oxyacids.  NAMING BINARY ACIDS: The name of the binary acid consists of two words. The first word has three parts: the “hydro” prefix the root of the nonmetal element the “ic” ending The second word is always “acid” Examples: HCl = hydro chlor ic acid = hydrochloric acid HBr = hydro brom ic acid = hydrobromic acid HF = hydro fluor ic acid = hydrofluoric acid 2. NAMING OXYACIDS: These are more difficult to name because these acids have hydrogen, a nonmetal, and may have varying numbers of oxygen atoms. For example, H2SO5, H2SO4, H2SO3, and H2SO2 are all acids. How do we name them? To begin, we need a point of reference. Our reference point is this: The “ate” ions (sulfate, nitrate, etc) make the “ic” acids (sulfuric acid, nitric acid) Examples: SO4 2- = sulfate ion H2SO4 = sulfuric acid NO3 - = nitrate ion HNO3 = nitric acid Once we have our point of reference, the acid with one more oxygen than the -ic acid is called the per-_________-ic acid. The acid with one less oxygen then the -ic acid is called the ___________-ous acid. If the acid has one less oxygen than the -ous acid, it is called the hypo-____________-ous acid. Examples: H2SO5 = persulfuric acid HNO4 = pernitric acid H2SO4 = sulfuric acid HNO3 = nitric acid H2SO3 = sulfurous acid HNO2 = nitrous acid H2SO2 = hyposulfurous acid HNO = hyponitrous acid The KEY: 
Make sure that a hydrogen is bonded with a nonmetallic element, like HBr, HCl, or HF.