what is the standard form for a linear equation?

Answers

Answer 1

The standard form for a linear equation is Ax + By = C with two variables.

What is a linear equation?

Linear equations can be described as the equations of degree 1 and is a mathematical statement, which contains an equal sign (=) between the algebraic expression.

A linear equation is an equation for a straight line and their solutions will produce values, which when substituted for the unknown values and make the equation true.

Linear equations can be described as a combination of constants and variables. The standard form of a linear equation with one variable is expressed as ax + b = 0, where, a ≠ 0 and x is the variable.

A linear equation in two variables is expressed as ax + by  + c = 0, where, a ≠ 0, b ≠ 0, x, and y are the variables.

The linear equation in three variables is expressed as ax + by + cz + d = 0, where a ≠ 0, b ≠ 0, c ≠ 0, x, y, z are the variables.

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Related Questions

2. What kinds of events develop over oceans?
O avalanches
O hurricanes
O landslides
O solar flares

Answers

Warm ocean waters and thunderstorms fuel power hungry hurricanes. Hurricanes form over the ocean, often beginning as a tropical wave.

Identify the following element based on its orbital filling diagram:

Answers

Answer:

Nickel

Explanation:

count the number of electrons in the 4p and 4d, total 8. After calcium count to 8 spots and you reach nickel. You must fill p orbital before d ortibal for stability.

as a sample of radon decays by alpha emission, the number of daughter isotopes……..

Answers

When a sample of radon decays by alpha emission, the number of daughter isotopes is two.

What is radioactive decay?

Radioactive decay refers to the process by which the nucleus of an atom decays spontaneously with the emission of radiation and the formation of one or more new daughter atoms with as smaller nuclei.

The emission of an alpha particle during radioactive decay involves the emission of helium nuclei.

The emission of alpha particles by radon is shown below:

²²²₈₆Ra ---> ²¹⁸₈₄Po + ⁴₂He

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Can you please help to learn more about chemical bonding cause I’m having a hard time learning it.

Answers

Answer:

Chemical bonding is the process by which atoms are held together to form molecules. The bond between atoms is created by the sharing of electrons. The electrons are attracted to the nucleus of the atoms, which creates a force that holds the atoms together.

If 96.3 g of A1203 decomposed, determine the percent yield of 02 if you
isolated 43.2 g 02.
2Al₂O3 →4A1+30₂
Your answer
25 points
2

I need answer asap

Answers

If actual yield and theoretical yield are same then the percent yield will be 100%. Generally, the actual yield is lower than the theoretical yield. The percent yield of  0₂ is 93%.

What is percent yield?

Percent yield is the percent ratio of actual yield to the theoretical yield.

Mathematically,

Percent yield= actual yield of a product÷ theoretical yield of the product

The balanced reaction is

2Al₂O₃ →4A1+30₂

moles of Al₂O₃=given mass÷ molar mass

                        =96.3 g ÷100g/mol

                        =0.96moles

From 2 mole of Al₂O₃, 3 moles of 0₂ is produced

From 0.96moles of  Al₂O₃=(3÷2)×0.96moles of 0₂

                                          =1.44moles of 0₂

mass of  0₂=moles of  0₂×Molar mass of moles of 0₂

mass of  0₂=1.44×32

                  =46.08g

Percent yield=  43.2 g÷46.08g=93%

Therefore the percent yield of  0₂  is 93%.

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Consider the following equilibrium system:
CH4 + H2O +energy ⇌CO + 3H2
In which of the following combinations will both stresses shift the equilibrium to the right? explain.
A) A decrease in temperature and a decrease in volume
B) A decrease in temperature and a increase in volume
C) An increase in temperature and a decrease in volume
D) An increase in temperature and an increase in volume

Answers

Answer:D. an increase in temperature and an increase in volume

Explanation: Heat is a reaction, so if you increase the temperature of the system, you increase the amount of reactants. Thus, higher temperature would push equilibrium toward the products, the right. The products, however, have 4 molecules in comparison to the reactants’ 2, and so you have to increase the volume to push equilibrium that way as well.

PLEASE HELP ASAP DUE TOMMOROW! (35 POINTS)
Were you able to correctly identify all of the minerals on the first try? Which identification test did you enjoy most? Why? Which identification test did you think was least helpful for identification? Why?
( 1 or more paragraphs please)

Answers

If it’s 35 points then why am I seeing 5 points

Predict a product of the following reaction:
Al + CuCl2→

Answers

Answer:

CuCl2 + Aluminum = Chemical / Physical change

What is the shielding constant of phosphorus?

Answers

Answer: shielding constant is +20.494 ppm for σ(P) and À0. 221 ppm for σ(H).


A weather balloon has a volume of 556 L when filled with helium at 30 C at a pressure of 386 torr. What is the new volume of the balloon (in liters) if the balloon rises to a point where the air
pressure is 229 torr and the temperature is -9 C

Answers

The new volume of the balloon will be 484.43 L.

This is an example of Charles' law, sometimes called the temperature-volume law. It states that the volume of a gas is directly proportional to the Kelvin temperature, while pressure and amount are held constant.

The equation is V1/T1=V2/T2, where V is volume and T is temperature in Kelvins.

Known

V1=556 L

T1=30∘C+273.15=303 K

T2=-9∘C+273.15=264 K

Unknown

V2

Solution

Rearrange the equation to isolate V2. Substitute the known values into the equation and solve.

V2=V1T2/T1

V2=(556L×264K)/303K=484.43 L.

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Carbon dioxide formation

Answers

Carbon dioxide formation :

Carbon dioxide is generated when any substance that contains carbon is burned. It is also a product of respiration and fermentation. Plants absorb carbon dioxide during photosynthesis.

Part 1: Name the type of chemical reaction that occurs when magnesium chloride solution (MgCl2) reacts with sodium carbonate solution (Na2CO3).

Part 2: Explain why aluminum (Al) would react with copper chloride (CuCl2) but not with magnesium chloride (MgCl2).

Answers

a) The reaction between magnesium chloride solution and sodium carbonate solution is a displacement reaction

b) Aluminum is above copper but below magnesium in the electrochemical series.

What is a displacement reaction?

We know that a displacement reaction is the kind of reaction that occurs between two substances which involves an exchange of radicals. Now we know that a reaction would certainly produce a new kind of chemical substances.

A displacement reaction would occur if the substances that are involved in  the reaction are far apart in the activity series. The metal that is more reaction would displace the metal that is less reactive from its salt.

Given the fact that sodium is higher than magnesium in the electrochemical series, then magnesium can be displaced from its solution by sodium

In part 2, the aluminum metal is ahead of copper in the electrochemical series hence aluminum is able to displaces  copper from its solution but it is unable to displace magnesium from its solution because magnesium is above aluminum in the electrochemical series.

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1. The reaction between magnesium chloride solution and sodium carbonate solution is a displacement reaction

2. Aluminum is above copper but below magnesium in the electrochemical series.

Summarize the physical and chemical properties of zinc

Answers

Phys­i­cal prop­er­ties of zinc
Char­ac­ter­is­tics of the el­e­ment:

den­si­ty – 7.13 g/cm³;
col­or – bluish-white;
melt­ing point – 420 °C;
elas­tic­i­ty and mal­leabil­i­ty in­crease when heat­ed to ap­prox­i­mate­ly 100 °C;
boil­ing point of 906 °C;
at tem­per­a­tures above 200 °C, los­es its elas­tic­i­ty and be­comes a grey pow­der;
high heat ca­pac­i­ty and heat con­duc­tiv­i­ty;
good con­duc­tor.
Chem­i­cal prop­er­ties of the el­e­ment
In or­di­nary con­di­tions, zinc re­acts rapid­ly with air, grad­u­al­ly form­ing a dull grey zinc ox­ide coat­ing. Ad­di­tion­al­ly, zinc re­acts with halo­gens, oxy­gen, chalco­gens, al­ka­lis, acids, am­mo­nia and am­mo­ni­um salts, and even with less ac­tive met­als. Zinc re­acts with both acids and al­ka­lis, mak­ing it an am­pho­ter­ic met­al. When re­act­ing with al­ka­lis, the el­e­ment forms com­plex com­pounds known as hy­droxo-zin­cates.

What is the pH of a solution that has [H3O+] = 6.0 x 10-³ M?

Answers

Answer:

2.2

Explanation:

Identify the type of reaction for each chemical equation. *
5 points
1. Zn + 2HCI → ZnCl₂ + H₂
2.CH4 + 20₂ → CO₂ + 2H₂O
3. Na₂S + 2HCI →→2NaCl + H₂S
4. H₂CO3 → H₂O + CO₂
5. H₂ + O₂ → H₂O
Composition, decomposition replacement combustion

Answers

The type of reaction for each chemical equation is as follows:

1. Displacement reaction

2. Combustion reaction

3. Double displacement reaction

4. Decomposition reaction

5. Synthesis reaction.

Types of reactions

The different types of chemical reactions include:

Displacement reaction: where an atom displaces another atom from a compound. For example, A + BC ---> AB + C. A displaced C from AB.Combustion reaction: a reaction in which a compound burns in oxygen. Double displacement reaction: a reaction in which two reactants exchange radicals to form two new products entirely. For example, AB + CD ---> AC + BDDecomposition reaction: a reaction in which a compound decomposes to produce two or more substances or compounds. For example, AB ---> A + BSynthesis reaction: a reaction that is the opposite of a decomposition reaction. Here, two atoms or substances combine to form a single compound or substance. For example, A + B ---> AB

Thus, the chemical equations and their respective reactions are as follows:

[tex]Zn + 2HCI -- > ZnCl_2 + H_2[/tex] - Single displacement reaction[tex]CH_4 + 2O_2 --- > CO_2 + 2H_2O[/tex] - combustion reaction[tex]Na_2S + 2HCI -- > 2NaCl + H_2S[/tex] - double displacement reaction[tex]H_2CO_3 -- > H_2O + CO_2[/tex] - decomposition reaction[tex]H_2 + O_2 -- > H_2O[/tex] - synthesis reaction

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A 53.5 mL sample of an 5.4 % (m / v) KBr solution is diluted with water so that the final volume is 205.0 mL Express your answer to two significant figures and include the appropriate units

Answers

From the dilution formula, the final concentration of the solution is  1.4 %.

What is the final concentration?

The final concentration is the concentration at the end of the dilution. We know that dilution is the process by which we add more water to the solution.

Now we have the following;

Initial concentration C1 = 5.4 %

Initial volume V1= 53.5 mL

Final concentration C2= ?

Fina volume V2= 205.0 mL

C1V1 = C2V2

C2 =  5.4 *  53.5/205.0

C2 = 1.4 %

Hence, we have a solution that would have a final concentration of 1.4 %.

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Arrange the following transitions in from most energy absorbed to most energy emitted.

n=3 <— n=5
n=1 —> n=3
n=2 —> n=4
n= 2 <— n=4

Answers

n=3 <— n=5, n= 2 <— n=4 are most energy emitted and n=1 —> n=3, n=2 —> n=4 are most energy absorbed

In chemistry, energy is the capacity to carry out work. It may take on a variety of shapes, including potential, kinetic, thermal, electrical, chemical, radioactive, etc. Heat and labor are other examples of energy being transferred from one body to another. Once it has been transported, energy is always allotted according to its kind. Thus, heat transmission might manifest as thermal energy, but work could produce mechanical energy.

All energy kinds have the characteristic of motion. For instance, a body has kinetic energy if it is moving. A tensioned item, such as a spring or bow, has the capacity to move even while at rest; this property results from the design of the object, which incorporates potential energy.

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Is copper a fcc or bcc?

Answers

Answer: copper is a fcc.

Explanation:

Solid copper can be described as the arrangement of copper atoms in a face-centered-cubic (fcc) configuration.

Solid copper can be described as the arrangement of copper atoms in a face-centered-cubic (fcc) configuration.

Two of the most recognizable crystal shapes are face-centered cubics (FCC) and body-centered cubics (BCC). There are FCC, BCC, or HCP structures for almost all elements.

The atomic configurations are where FCC and BCC crystals diverge most drastically. All 8 corner positions and the centers of each of the six faces are occupied by atoms in the face-centered cubic structure. All eight corner positions and the cube's center are occupied by atoms in the body-centered cubic structure.

Compared to BCC metals, FCC metals are often more ductile, more stable at high temperatures, and more dense. This is a result of their packaging design and slip systems.

The most effective atomic configuration is found in FCC (tied with HCP).

Because of this, we refer to FCC as a "close-packed" structure. FCC metals will typically be more dense and stable because FCC atoms are grouped more tightly together than BCC atoms.

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Please answer for my final ASAP
The table below shows the average wind speeds of four hurricanes in Florida.


Florida Hurricanes
Hurricane Average Wind Speed
(miles per hour)
A 160
B 95
C 140
D 103

Which hurricane most likely caused the greatest damage?

Answers

The hurricane that will most likely caused the greatest damage is option A: 140.

What is category 5 hurricane?

It is one whose speed is 157 mph or more - There will be catastrophic damage: With complete roof failure and wall collapse, a significant portion of frame homes will be lost. Residential areas will be cut off by downed trees and utility poles. Power outages could linger for several weeks or even months. For several weeks or months, the majority of the area won't be habitable.

The most destructive storms are those in category 5, which have sustained winds of at least 157 mph.

Therefore, here, there is complete roof failure and wall collapse, a significant portion of frame homes will be lost. Residential areas will become isolated by downed trees and power lines. Power outages could linger for several weeks or even months.

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PLEASE HELP I LAREADY FAILED ONCE
What is the mass of 6.02 x 10^^24
molecules of hydrogen, H2? The molar

mass of H2 is 2.02 g/mol.

A- 2.02 g H2

B- 2.98 x 10^24 g H2

C- 10.0 g H2

D- 1.22 x 10^25 g H2

Answers

Answer: a

Explanation:

Step 3: Apply the scaling factor to the empirical formula. The scale factor is 5 and the empirical formula is CH2O.
What is the molecular formula?
C?H?O?

Answers

The molecular formula is (CH2O)5 when the scale factor is 5 and the empirical formula is CH2O.

Considering the question given above, the following data were obtained:

Empirical formula is CH₂O

Molar mass of compound = 150 g/mol

Scaling factor (n) =?

Empirical formula × n = molar mass

[CH₂O]n = 150

[12 + (2×1) + 16]n = 150

[12 + 2 + 16]n = 150

30n = 150

Divide both sides by 30

n = 5

Therefore, the scaling factor is 5

A scale factor is a ratio between corresponding measurements of an object and a representation of that object.In chemistry, the empirical formula of a chemical compound is the simplest whole-number ratio of atoms present in a compound. .

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Answer:

C 5 H 10 O 5

Explanation:

Plants that make edible fruits take advantage of which 2 benefits of this method of seed dispersal?

A. bees only pollinate flowers that will turn into edible fruits
B. seeds are often deposited in a pile of fertilizer
C. animals destroy the seeds
D. seeds are carried away from the parent plant

PLEASE HELP

Answers

I believe the answer is D but if multiple choice the it would be B and D.

What is the maximum number of electrons that the 3d sublevel can hold?

Answers

The Max it can hold is 10 electrons

S’ can hold a max of 2
P’ a max of 6
D’ a max of 10
F’ a max of 14

How are nuclear reactions different from chemical reactions?

Answers

Nuclear reactions involve a change in an atom's nucleus, usually producing a different element. Chemical reactions, on the other hand, involve only a rearrangement of electrons and do not involve changes in the nuclei. Different isotopes of an element normally behave similarly in chemical reactions.

I hope this helps!

1 According to the law of conservation of mass, the total mass of the reacting substances is
A always more than the total mass of the products.
B always less than the total mass of the products.
C sometimes more and sometimes less than the total mass of the products.
D always equal to the total mass of the products.​

Answers

According to the law of conservation of mass, the total mass of the reacting substances is

A. always more than the total mass of the products.

B. always less than the total mass of the products.

C. sometimes more and sometimes less than the total mass of the products.

D. always equal to the total mass of the products.​

This is the one that I would have to choose.

Hope this helps:)

The following reaction takes place: 2K + 2H20 ---> 2KOH + Hz
a. Calculate the number of moles of hydrogen that will be produced if 11.5 g of potassium are reacted.
b. Calculate the number of grams of hydrogen that will be produced in this same reaction.

Answers

As per the balanced reaction, 2 moles of potassium gives 2 moles of hydrogen molecules. Thus 11.5 g or 0.302 mol will produce 0.302 moles of hydrogen. The mass of 0.302 mol of hydrogen is 0.604 g.

What is hydrolysis ?

Hydrolysis is the reaction of a substance with water to form hydroxides or hydrides. The given reaction is hydrolysis of potassium giving 2 moles of H2.

The atomic mass of potassium is 38 g/mol. Thus the mass of 2 mole of potassium is 38 × 2 = 76 g. The number of moles in 11.5  g K is 0.302 moles. 2 moles of potassium gives 2 moles of H2, thus 0.302 moles gives 0.302 moles of H2.

The molecular mass of H2 is 2 g/mol. Thus mass of 0.302 moles is 0.302 × 2 = 0.604 g.

Hence, the mass in grams of hydrogen produced is 0.604 g.

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A protein subunit from an enzyme is part of a research study and needs to be characterized. A total of 0.135 g of this subunit was dissolved in enough water to produce 2.00 mL of solution. At 28 ∘C the osmotic pressure produced by the solution was 0.138 atm . What is the molar mass of the protein?

Answers

The molar mass of the protein under the conditions that we have in this question can be obtained to be 12065 g/mol.

What is the molar mass of the protein?

We know that the osmotic pressure is one the colligative properties of the solution. The colligative properties are the properties that depend on the amount of substance that is present in the solution.

Mass of the protein = 0.135 g

Volume of the solution = 2.00 mL

Temperature of the system = 28 ∘C + 273 = 301 K

Osmotic pressure of the solution = 0.138 atm

We can get the osmotic pressure from;

π = iCRT

π = Omotic pressure

i = Van't Hoff factor

C = concentration of the solution

R = gas constant

T = temperature

Let the molar mass of the protein be M

0.138 = 1 * 0.135/M/0.002 * 0.082 * 301

0.138 =  1 * 0.135/0.002M * 0.082 * 301

0.138 = 3.33/0.002M

0.138 * 0.002M  = 3.33

M = 3.33/0.138 * 0.002

M = 12065 g/mol

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How many grams of calcium are in 3.01 x 1022 atoms of calcium?

Answers

The amount, in grams, of calcium that are in 3.01 x [tex]10^{22[/tex] atoms of calcium would be 1.9992 grams.

Avogadro's number

According to the rules, 1 mole of any substance contains Avogadro's number, which is 6.022 x [tex]10^{23[/tex] atoms or molecules.

Now, we have a substance with  3.01 x [tex]10^{22[/tex] atoms of calcium.

If, 1 mole = 6.022 x [tex]10^{23[/tex] atoms

Then, 3.01 x [tex]10^{22[/tex] atoms = 3.01 x [tex]10^{22[/tex]/ 6.022 x [tex]10^{23[/tex]

                                       = 3.01/60.22

                                       = 0.04998 moles

Recall that:

Mole = mass/molar mass

The molar mass of the calcium atom is 40 g/mol.

Thus, the mass of 0.04998 mole of calcium = mole x molar mass

                                                                          = 0.04998 x 40

                                                                           = 1.9992 grams

In other words,  3.01 x [tex]10^{22[/tex] atoms of calcium would weigh 1.9992 grams of ca.

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What would be the molarity of a solution made by dissolving 4.1 grams of NaCl (molecular mass: 58.44 g/mole) in water to a total volume of 0.4 liters

Answers

Taking into account the definition of molarity, the molarity of a solution made by dissolving 4.1 grams of NaCl in water to a total volume of 0.4 liters is 0.175 moles/L.

Definition of molarity

Molar concentration or molarity is a measure of the concentration that indicates the number of moles of solute that are dissolved in a given volume.

The molarity of a solution is calculated by dividing the moles of solute by the volume of the solution:

molarity= number of moles÷ volume

Molarity is expressed in units moles/L.

This case

In this case, you know:

Mass of NaCl= 4.1 gMolar mass of NaCl= 58.44 g/moleMoles of NaCl= Mass of NaCl÷ Molar mass of NaCl= 4.1 g÷ 58.44 g/mole= 0.07016 molesVolume= 0.4 L

Replacing in the definition of molarity:

molarity= 0.07016 moles÷ 0.4 L

Solving:

molarity= 0.175 moles/ L

Finally, the molarity of the solution is 0.175 moles/L.

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Which of the following animals are an example of coevolution? *

Answers

Acacia ant and acacias animals are an example of coevolution

Coevolution is the reciprocal evolutionary change in a set of interacting population over time resulting from the interaction between those population and an example of coevolution that is not characteristics of an arm race but one which provides a mutual benefit to both a plant species and insect is that of the acacia ant and acacia plant and many cases of coevolution can be found between plants and insects

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