Calculate the molarity: 1.2 moles of calcium carbonate in 1.22 liters of water.

Answers

Answer 1

Answer

Molarity = 0.98 mol/L

Explanation

Given:

number of moles of calcium carbonate = 1.2 mol

volume of water = 1.22 L

C = n/V C is the molarity, n is the number of moles and V is the volume

C = 1.2 mol/1.22L

C = 0.98 mol/L


Related Questions

Express your answers as integers separated by commas.

Answers

Not enough information man

what is the percent by mass of nitrogen in the following fertilizers? NH3

Answers

The percent by mass of nitrogen in ammonia (NH3) is approximately 82.15%

Calculating the mass of nitrogen to the total mass of the compound and then expressing the result as a percentage will allow us to determine the percent by mass of nitrogen in NH3 (ammonia).

Ammonia's molecular structure, NH3, indicates that it is made up of one nitrogen atom (N) and three hydrogen atoms (H). We must take both the molar masses of nitrogen and ammonia into account when calculating the percent by mass of nitrogen.

Nitrogen's (N) molar mass is roughly 14.01 g/mol. The molar masses of nitrogen and hydrogen are added to determine the molar mass of ammonia (NH3). Since hydrogen's molar mass is around 1.01 g/mol, ammonia's molar mass is:

(3 mol H 1.01 g/mol) + (1 mol N 14.01 g/mol) = 17.03 g/mol = NH3.

Now, we can use the following formula to get the nitrogen content of ammonia in percent by mass:

(Mass of nitrogen / Mass of ammonia) / 100% is the percentage of nitrogen by mass.

Ammonia weighs 17.03 g/mol and contains 14.01 g/mol of nitrogen by mass. By entering these values, we obtain:

(14.01 g/mol / 17.03 g/mol) 100% 82.15 % of nitrogen by mass

Ammonia (NH3) has a nitrogen content that is roughly 82.15 percent by mass.

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Please Help me ASAP - Next 90 minutes!! With my Homework Assignment!
100 Points + Brainliest if correct! Both questions please!!!!

Please Help me ASAP - Next 90 minutes!! With my Homework Assignment!100 Points + Brainliest if correct!

Answers

Answer:

see below

Explanation:

1) here we are given that one mole of propane releases 2221kJ of energy.

now use unitary method as ,

to burn 1 mol (44g) propane 2221kJ of energy is required

to burn 1g of propane 2221kJ/44g of energy is required

therefore to burn 25g of propane 2221/44*25kJ of energy is required= 1261.93kJ ≈ 1262 kJ

Hence 1262kJ of energy is required to burn 25g propane.

2) amount of heat absorbed= 25kJ

amount of work done = 12J

change in energy= (25-12)kJ = 13kJ

Hence the value of E is 13kJ .

and we are done!

Scientific notation

3.7 x 10^6

Answers

The answer should be 37,000,000

This diagram is of an amniote egg.

What is the correct label for A in this diagram?


embryo


zygote


amnion


placenta

Answers

Answer:

amnion

Explanation:

Answer: amnion

Explanation:

A 75.0- mL
volume of 0.200 M
NH3
( Kb=1.8×10−5
) is titrated with 0.500 M
HNO3
. Calculate the pH
after the addition of 17.0 mL
of HNO3
.

Answers

Answer:

ok, here is your answer

Explanation:

i am going to solve this problem by using the ICE table method which is an easy method to determine the pH of a weak base with the given data of the problem.Given:Initial volume of NH3 solution (Vi) = 75.0 mLInitial concentration of NH3 solution (Ci) = 0.200 MInitial moles of NH3 solution (Ni) = Ci x Vi = 0.200 M x 75.0 mL = 0.0150 molesKb = 1.8 x 10^-5Moles of HNO3 added (n) = 0.500 M x 17.0 mL = 0.00850 molesVolume of NH3 solution after the addition of HNO3 (Vf) = 75.0 mL + 17.0 mL = 92.0 mLConcentration of NH3 solution after the addition of HNO3 (Cf) = Ni / Vf = 0.0150 moles / 92.0 mL = 0.163 MTo find the pH after the addition of 17.0 mL of HNO3, we need to use the ICE table method.ICE table method:Initial: NH3 + H2O ⇌ NH4+ + OH-Change: -x 0 +x +xEquilibrium: 0.0150 - x 0 x xKb = [NH4+][OH-] / [NH3]1.8 x 10^-5 = x^2 / 0.163Solving for x, x = 0.00171 M[OH-] = 0.00171 M[OH-] = Kw / [H3O+] = 1.0 x 10^-14 / [H3O+][H3O+] = 5.85 x 10^-12pH = -log[H3O+]pH = -log(5.85 x 10^-12)pH = 11.23Therefore, the pH after the addition of 17.0 mL of HNO3 is approximately 11.23.

mark me as brainliest

What is the coefficient for sodium chloride when this equation is balanced?

Answers

Answer:

To resolve this, we need to place the coefficient “2” in front of the sodium in the reactant, to give the equation shown below. 2 Na (s) + Cl 2 (g) → 2 NaCl (s) In this equation, there are two sodiums in the reactants, two sodiums in the products, two chlorines in the reactants and two chlorines in the products; the equation is now balanced.

Explanation:

The following two organic compounds are structural isomers to each other. Carefully identify and justify the structural isomers type (skeletal, functional, or positional) with their common molecular formula

The following two organic compounds are structural isomers to each other. Carefully identify and justify

Answers

Structural isomers are molecules with the same molecular formula but with different structural formulae. This means that they have the same number and types of atoms, but they are arranged differently. The following two organic compounds are structural isomers of each other.

Carefully identify and justify the structural isomers type (skeletal, functional, or positional) with their common molecular formula.Common molecular formula: C6H14Structural isomers:(i) Hexane: Hexane is a straight-chain alkane with six carbon atoms and no double bonds or rings. The carbon atoms are linked together in a linear or straight-chain configuration in the skeletal isomer. The skeletal isomer differs in terms of the arrangement of atoms in its molecule. This indicates that it is a skeletal isomer.(ii) 2-methylpentane: It is a branched-chain alkane with six carbon atoms and no double bonds or rings. It differs from the first molecule in terms of the location of a methyl group on the second carbon of the five-carbon chain, rather than a straight six-carbon chain. This difference is due to a change in the positioning of the carbon atoms in the molecule. As a result, it is a positional isomer, as it differs by the position of the functional group or substituent. Therefore, the skeletal and positional isomerism types are present between these two compounds.

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Which sentence best describes what happens during a change of state from
a solid to a liquid?
A. The temperature stays the same and the particle speed increases.
B. The temperature stays the same and the particle speed stays
constant
C. The temperature increases and the particle speed stays constant.
D. The temperature decreases and the particle speed decreases.
SUBMIT

Answers

Answer:

B

Explanation:

as temperature rises, the particles gain kinetic energy (they will move faster) so if temperatures stays constant, so will the movement or vibration of the particles

how does the weather affect a dead body's temperature?​

Answers

Answer:

\(\huge\fcolorbox{blue}{red}{Answer:}\)

This occurs through radiation, convection, conduction, and, if the subject is wet, evaporation. Most commonly, the body temperature decreases, although in more extreme climates an increase in cadaver temperature may result.

What is scalar quantity ?​

Answers

Answer:

they physical quantities that are uneffected by changes to a vector space basis

Alkenes undergo an addition reaction with borane in tetrahydrofuran (THF). For the reaction below: Write a mechanism for the reaction using curved arrows to show electron reorganization. b. write a mechanism

Answers

Answer:

See explanation and image attached

Explanation:

Alkenes react with borane (BH3) as shown in the image attached. Borane is a good electrophile since it is an electron deficient compound.

It can attack the electron rich pi bond. The attack of borane on the pi bond occurs as shown and leads to an addition reaction. Hydrogen and BH2^- are added across the double bond as shown.

The product of this reaction is shown in the image attached.

Alkenes undergo an addition reaction with borane in tetrahydrofuran (THF). For the reaction below: Write

How does a Camel prevent the loss of water from their body?​

Answers

Camels lose less water through their urine and feces than many other mammals. Their kidneys concentrate water heavily, leading to salty urine. The intestines also reabsorb water from intestinal material as it is digested, so dry feces are produced.

Which statement(s) about neutrons is/are TRUE?
SELECT ALL THAT APPLY
The major clue to their existence was extra mass in
a atoms that protons and electrons could not
account for.
b They were observed and measured directly, like
protons and electrons were.
C They have the same mass as protons.
d They have a negative charge.

Answers

Answer:

C

Explanation:

Because D ask "They have a negative charge" yes and no, but neutrons do, Why? Well because  the neutron has a negative charge both in its inner core and its outer edge, with a positive charge sandwiched in between to make the particle electrically neutral. Whilst B is wrong because like protons and electrons they were both measured and observed differently, just as the neutron. So that makes C the only correct answer.

If the heat released during condensation goes only to warming the iron block, what is the final temperature (in ∘C
) of the iron block? (Assume a constant enthalpy of vaporization for water of 44.0 kJ/mol
and a heat capacity for iron of 0.449 J/(g⋅∘C)
.)

Answers

Answer: sweet home

Explanation:

A gas has a volume of 550 mL at a temperature of -55 °C. The volume of the gas at 30 °C is
Blank 1:
mL.

Answers

The combined gas law equation is:

(P1 * V1) / (T1) = (P2 * V2) / (T2)

The volume of the gas at 30 °C is approximately 760.67 mL.

To determine the volume of the gas at 30 °C, we can use the combined gas law equation, which relates the initial and final conditions of temperature and volume for a gas.

The combined gas law equation is:

(P1 * V1) / (T1) = (P2 * V2) / (T2)

Where:

P1 and P2 are the initial and final pressures, respectively

V1 and V2 are the initial and final volumes, respectively

T1 and T2 are the initial and final temperatures in Kelvin, respectively

We need to convert the temperatures from Celsius to Kelvin by adding 273.15 to each value.

Given:

V1 = 550 mL

T1 = -55 °C = 218.15 K

T2 = 30 °C = 303.15 K

Assuming the pressure remains constant, we can rearrange the equation to solve for V2:

V2 = (P1 * V1 * T2) / (P2 * T1)

Since the pressure is not specified in the problem, we can assume it remains constant, allowing us to cancel out the pressure terms. Thus, the final equation becomes:

V2 = (V1 * T2) / T1

Plugging in the given values:

V2 = (550 mL * 303.15 K) / 218.15 K

Simplifying the calculation, we find:

V2 ≈ 760.67 mL

Therefore, the volume of the gas at 30 °C is approximately 760.67 mL.

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An empty container with an unknown volume is weighed and found to have a mass of 95.2 g. The container is then filled with a liquid with a density of 1.005 g/cm3 and reweighed. The mass of the container and the liquid is 168.4 g. Determine the volume of the container to the appropriate number of significant figures.

Answers

The volume of the container is 72.84 cm³

To solve this question, we'll begin by calculating the mass of the liquid in the container. This can be obtained as follow:

Mass of empty container = 95.2 g

Mass of container + Liquid = 168.4 g

Mass of Liquid =?

Mass of Liquid = (Mass of container + Liquid) – (Mass of empty container)

Mass of Liquid = 168.4 – 95.2

Mass of Liquid = 73.2 g

Finally, we shall determine the volume of the container by calculating the volume of the liquid. This can be obtained as follow:

Mass of Liquid = 73.2 g

Density of Liquid = 1.005 g/cm³

Volume of Liquid =?

Density = mass / volume

1.005 = 73.2 / Volume

Cross multiply

1.005 × Volume = 73.2

Divide both side by 1.005

Volume = 73.2 / 1.005

Volume of Liquid = 72.84 cm³

Since the container is filled with 72.84 cm³ of the liquid, it therefore means that the volume of the container is 72.84 cm³

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For this assignment, you will be creating your own potential energy diagrams for three chemical reactions. Then you will use your diagrams to find the value of △H for each reaction.

Answers

By analyzing the potential energy diagrams and calculating ΔH using bond energies, we can determine whether a reaction is exothermic (ΔH < 0) or endothermic (ΔH > 0).

To create potential energy diagrams for chemical reactions and determine the value of ΔH (the change in enthalpy) for each reaction, we need to understand the basic concepts and steps involved.

Potential Energy Diagram: A potential energy diagram is a graphical representation of the energy changes that occur during a chemical reaction. The vertical axis represents the potential energy, while the horizontal axis represents the progress of the reaction.

Reactants and Products: Identify the reactants and products involved in each reaction. Assign them appropriate labels on the potential energy diagram.

Activation Energy: Determine the activation energy (Ea) for each reaction. It represents the energy barrier that must be overcome for the reaction to occur. On the diagram, the reactants' energy level is typically higher than the products' energy level, with the activation energy peak in between.

Transition State: Locate the highest point on the potential energy diagram, which represents the transition state or activated complex. This point indicates the highest energy level during the reaction.

ΔH Determination: ΔH represents the difference in enthalpy between the reactants and products. It can be determined by examining the vertical distance between the reactants' energy level and the products' energy level on the potential energy diagram.

ΔH Calculation: ΔH can be calculated using the formula ΔH = Σ (bond energies of reactants) - Σ (bond energies of products). The bond energies are the energy required to break a particular bond or released when a bond is formed.

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NEED HELP ASAP

Imagine that you have a sample of a substance. You cannot physically separate that substance into components. You also cannot chemically separate that substance into components. Which of the following are true about your sample?

The sample is made up of multiple elements. t or f
The sample is made up of one type of atom. t or f
The sample is made up of several types of atoms. t or f
The sample is made up of a single element. t or f

Answers

Answer:

The sample is made up of a single element. t or f

Explanation:

Forgot about the t or f!   Its true.

Dam bro.....

1. T

2. F

3. T

Answer:

i think its the 3 thired one sorry if rong but good luck

Explanation:

Dalton’s completing an investigation in the science lab. He observes that a sample of liquid turns to gas at 135°C. What’s this temperature called?
A.
boiling point
B.
freezing point
C.
melting point
D.
room temperature
E.
standard temperature
.

Answers

A— boiling point.

Boiling is the process by which a liquid turns into a vapor (gas) when it is heated to its boiling point.

Calculate the cell potential for the galvanic cell in which the given reaction occurs at 25 °C, given that [Sn2+]=0.0624 M, [Fe3+]=0.0437 M, [Sn4+]=0.00655 M, and [Fe2+]=0.01139 M. Standard reduction potentials can be found in this table.

Sn2+(aq)+2Fe3+(aq)↽−−⇀ Sn4+(aq)+2Fe2+(aq)

So far my incorrect answers have been:
0.28
0.798
0.178
0.142
0.881
0.61
and 0.812

Answers

Answer:

The cell potential for the given galvanic cell is 0.188 V.

Explanation:

To calculate the cell potential, we can use the Nernst equation:

Ecell = E°cell - (RT/nF)ln(Q)

where E°cell is the standard cell potential, R is the gas constant (8.314 J/mol·K), T is the temperature in Kelvin (25°C = 298 K), n is the number of moles of electrons transferred (in this case, n = 2), F is the Faraday constant (96,485 C/mol), and Q is the reaction quotient.

First, we need to write the half-reactions and their standard reduction potentials:

Sn4+(aq) + 2e- → Sn2+(aq) E°red = 0.15 V

Fe3+(aq) + e- → Fe2+(aq) E°red = 0.77 V

The overall reaction is the sum of the half-reactions:

Sn2+(aq) + 2Fe3+(aq) → Sn4+(aq) + 2Fe2+(aq)

The reaction quotient Q can be expressed as:

Q = [Sn4+][Fe2+]^2 / [Sn2+][Fe3+]^2

Substituting the given concentrations, we get:

Q = (0.00655)(0.01139)^2 / (0.0624)(0.0437)^2 = 0.209

Now we can calculate the cell potential:

Ecell = 0.15 V + 0.0592 V log([Fe2+]^2/[Fe3+]) + 0.0592 V log([Sn4+]/[Sn2+])

= 0.15 V + 0.0592 V log(0.01139^2/0.0437^2) + 0.0592 V log(0.00655/0.0624)

= 0.188 V

Therefore, the cell potential for the given galvanic cell is 0.188 V.

The cell potential for the given galvanic cell in which the given reaction occurs at 25 °C is 0.188 V.

How to the cell potential of galvanic cell?

To find the cell potential, we take the Nernst equation:

Ecell = E°cell - (RT/nF)ln(Q)

In which R is the gas constant (8.314 J/mol·K) and E° cell is the standard cell potential.

T temperature in Kelvin (25°C = 298 K), and n is the number of moles of electrons transferred (n = 2), Q is the reaction quotient and F is the Faraday constant (96,485 C/mol).

Firstly, write the half-reactions and then their standard reduction potentials:

Sn⁴⁺(aq) + 2e⁻  → Sn²⁺(aq) E°red = 0.15 V

Fe³⁺(aq) + e⁻ → Fe²⁺(aq) E°red = 0.77 V

The overall reaction is the sum of the half-reactions:

Sn²⁺(aq) + 2Fe³⁺(aq) → Sn⁴⁺(aq) + 2Fe²⁺(aq)

The Q reaction quotient can be written as:

Q = [Sn⁴⁺][Fe²⁺]² ÷ [Sn²⁺][Fe²⁺]²

Substituting the given concentrations, we observe:

Q = (0.00655)(0.01139)² ÷ (0.0624)(0.0437)² = 0.209

Next, we can find the cell potential:

Ecell = 0.15 V + 0.0592 V log([Fe²⁺]²/[Fe³⁺]) + 0.0592 V log([Sn⁴⁺]/[Sn²⁺])

= 0.15 V + 0.0592 V log(0.01139²÷0.0437²) + 0.0592 V log(0.00655÷0.0624)

= 0.188 V

Thus, the cell potential for the given galvanic cell is 0.188 V.

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In the equation:
2H₂ + O2 → 2H₂O
How many moles of hydrogen react with 0.37 mol of oxygen

Answers

Answer:

0.74 moles of hydrogen

Explanation:

f 0.37 mol of oxygen reacts, then the number of moles of hydrogen will also be 0.37 mol. According to the equation, 2 moles of hydrogen are required to react with 1 mole of oxygen, so 2 * 0.37 = 0.74 moles of hydrogen will react with 0.37 mol of oxygen.

Why is scientist Robert Hazen using pressure bombs to blow up minerals

Answers

Answer:

Hazen uses small metal cylinders called pressure bombs to blast minerals with insanely high pressures and temperatures. He's using that knowledge to figure out how ancient minerals might have been involved in the evolution of the first primitive life-forms.

Explanation:

Molten zinc chloride can be electrolysed.
Describe how this experiment can be carried out in a laboratory, explaining how the products of this electrolysis are formed.


(6) marks

Answers

Answer: The products of electrolysis are Zn(l) and \(Cl_2\) gas

Explanation:

Electrolysis of a subastance is breaking it into its constituents by the action of electrical current.  

In the electrolysis of molten zinc chloride, zinc metal is produced at the cathode which is a negative electrode and chlorine gas produces as the anode which is a positive electrode.

\(ZnCl_2(l)\rightarrow Zn^{2+}+2Cl^-\)

At anode : \(2Cl^-(l)\rightarrow 2e^-+Cl_2(g)\)

At cathode : \(Zn^{2+}(l)+2e^-\rightarrow Zn(l)\)

based on the information in the table, which of the following arranges the bonds in order of decreasing polarity

Answers

The bonds would be arranged in order of decreasing polarity as follows: H-F Bond (most polar) > O-H Bond and C-H Bond (tied) > C-C Bond (least polar).

In order to arrange the bonds in order of decreasing polarity, we can look at the electronegativity difference between the two atoms of each bond. Electronegativity differences will determine whether the bond is polar, nonpolar, or ionic.

In general, the polarity of a bond is determined by the electronegativity difference between the atoms in the bond. The greater the difference in electronegativity, the more polar the bond is likely to be.

The following is a list of the bonds in order of decreasing polarity, based on the information provided in the table:

The table shows the following:

H-F Bond: Electronegativity difference = 1.9

C-H Bond: Electronegativity difference = 0.4

C-C Bond: Electronegativity difference = 0

HF is the least polar bond since the difference in electronegativity between hydrogen and fluorine is smaller than the differences between the other atoms in the list.

Therefore, the bonds would be arranged in order of decreasing polarity as follows: H-F Bond (most polar) > and C-H Bond (tied) > C-C Bond (least polar).

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The complete questions is:

Based on the information in the table, which of the following arranges the bonds in order of decreasing polarity

The table shows the following:

H-F Bond: Electronegativity difference = 1.9

C-H Bond: Electronegativity difference = 0.4

C-C Bond: Electronegativity difference = 0

which of the following is considered an extra adrenal effect of the adrenal cortex? conversion of cholesterol to pregnenolone stimulation of melanocytes maintenance of gland size secretion of cortisol and adrenal androgens

Answers

The extra adrenal effect of the adrenal cortex is the secretion of cortisol and adrenal androgens.

Cortisol is a steroid hormone produced by the adrenal gland, and it is essential for many bodily functions, including the body’s response to stress. The production of cortisol is regulated by the hypothalamic-pituitary-adrenal axis. Adrenal androgens are male hormones, such as testosterone, produced by the adrenal cortex. They are important for the development of male reproductive organs and male secondary sexual characteristics, such as facial hair and a deeper voice. In addition, these hormones play a role in the regulation of metabolism and energy levels.

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what is the freezing point of glucose?

Answers

Answer:

In Fahrenheit it is 294.8°F and in Celsius it is 146°C.

What is the name of Bel on the periodic table

Answers

Answer:

Nobelium or Beryllium

A chemical reaction has two elements as reactants. Which type of reaction might occur?
synthesis
decomposition
single replacement
double replacement

Answers

Answer:

The correct option is A.  A synthesis reaction is a type of reaction that occur between two or more elements which produce a single product. It is also called combination reaction.  For combination reaction, A + B = AB For decomposition reaction, a single product is broken down into two or more components. For single replacement reaction, a single free element will be substituted for one of the elements in a compound. For double replacement reaction, two compounds exchange elements between each other. 

A chemical reaction has two elements as reactants. This type of reaction is synthesis, and the correct option is option 1.

What is Synthesis?

Synthesis in chemistry is the process where at least one substance is changed into a new material. This is done by altering the chemistry of the starting substance by rearranging the molecules in a different way.

Synthesis reactions happen when two separate atoms or molecules come together to form a new molecule or compound. When a synthesis reaction occurs, much of the time, energy is released, and the reaction is exothermic.

It generally involves combination of two elements.

Therefore, A chemical reaction has two elements as reactants. This type of reaction is synthesis, and the correct option is option 1.

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Na is best known as a(n):

Answers

Answer:

sodium

Explanation:

sodium is an element with the atomic no. of 11 and atomic mass of approximately 23

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