The first-order decomposition of N2O5 at 328 K has a rate constant of 1.70 . 10-3 s-1. If the initial concentration of N2O5 is 2.88 M, what is the concentration of N2O5 after 12.5 minutes?

Answers

Answer 1

The concentration of N2O5 after 12.5 minutes is 1.094 M.The rate law for a first-order reaction is given by:

Rate = k[A]

where k is the rate constant and [A] is the concentration of the reactant.

The integrated rate law for a first-order reaction is given by:

ln[A]t = -kt + ln[A]0

where [A]t is the concentration of the reactant at time t, [A]0 is the initial concentration, k is the rate constant, and ln is the natural logarithm.

Using the given rate constant and initial concentration of N2O5, we can calculate the concentration of N2O5 after 12.5 minutes as follows:

ln([N2O5]t/[N2O5]0) = -kt

ln([N2O5]t/2.88 M) = -(1.70 x 10^-3 s^-1)(12.5 min)(60 s/min)

ln([N2O5]t/2.88 M) = -1.530

[N2O5]t/2.88 M = e^-1.530

[N2O5]t = (e^-1.530)(2.88 M)

[N2O5]t = 1.094 M

Therefore, the concentration of N2O5 after 12.5 minutes is 1.094 M.

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Related Questions

what is a number placed in front of a chemical symbol or formula in order to balance the equation

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A number placed in front of a chemical symbol or formula in a chemical equation is called a coefficient.

Coefficients are used to balance a chemical equation by adjusting the relative numbers of reactant and product molecules to satisfy the law of conservation of mass. For example, the balanced equation for the reaction between hydrogen gas and oxygen gas to form water is:

2H₂(g) + O₂(g) → 2H₂O(l)

In this equation, the coefficients in front of the reactants and products (2 and 1, respectively) indicate that two molecules of hydrogen react with one molecule of oxygen to form two molecules of water. The coefficients must be chosen so that the number of the atoms of each of the element is the same on both sides of the equation.

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What is the most important intermolecular force found between neighboring alanine molecules

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According to the forces of attraction, the  most important intermolecular force found between neighboring alanine molecules is hydrogen bonding.

What are forces of attraction?

Forces of attraction  is a force by which atoms in a molecule  combine. it is basically an attractive force in nature.  It can act between an ion  and an atom as well.It varies for different  states  of matter that is solids, liquids and gases.

The forces of attraction are maximum in solids as  the molecules present in solid are tightly held while it is minimum in gases  as the molecules are far apart . The forces of attraction in liquids is intermediate of solids and gases.

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When a carbonated beverage is sealed, it is: Select the correct answer below: a) unsaturated with carbon dioxide b) saturated with carbon dioxide c) supersaturated with carbon dioxide d) saturated with oxygen

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When carbonated beverage is sealed, then it is saturated with carbon dioxide. Option B is correct.

The carbonation process involves in the dissolving carbon dioxide gas in water under high pressure, and when the pressure is released, some of the gas escapes and forms bubbles. The remaining carbon dioxide in the liquid is in a state of equilibrium with carbon dioxide in the gas phase, which means that solution is saturated with carbon dioxide at that pressure and temperature.

A carbonated beverage is a drink that has been infused with carbon dioxide gas under high pressure, resulting in a bubbly and fizzy texture. The carbonation process occurs when carbon dioxide gas is dissolved in water, which then forms carbonic acid. This carbonic acid is responsible for the tangy taste and slight burn that is often associated with carbonated beverages.

Hence, B. Saturated with carbon dioxide is the correct option.

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In the following acid-base reaction,
CH3NH2 is the
CH3NH2(g) + H2O(1)
→ CH3NH3(aq) + OH¯(aq)
Base
Acid
Conjugate base

Answers

In the given acid-base reaction, CH[tex]_3[/tex]NH[tex]_2[/tex](g) + H[tex]_2[/tex]O(1) → CH[tex]_3[/tex]NH[tex]_3[/tex](aq) + OH¯(aq), CH[tex]_3[/tex]NH[tex]_2[/tex](g) is the base.

What is acid-base reaction?

The exchange with one or maybe more hydrogen ions, H+, among species that could be neutral (molecules like water, H2O, or acetic acid, CH3CO2H), as well as electrically charged (ions like ammonium, NH4+, hydroxide, OH, or carbonate, CO32), is what is known as an acid-base reaction.

It also covers equivalent behavior of acidic ions and molecules (aluminum chloride, AlCl3, and the silver ion AG+) that do not give hydrogen ions. In the given acid-base reaction, CH[tex]_3[/tex]NH[tex]_2[/tex](g) + H[tex]_2[/tex]O(1) → CH[tex]_3[/tex]NH[tex]_3[/tex](aq) + OH¯(aq), CH[tex]_3[/tex]NH[tex]_2[/tex](g) is the base.

Therefore,  in the given acid-base reaction, CH[tex]_3[/tex]NH[tex]_2[/tex](g) + H[tex]_2[/tex]O(1) → CH[tex]_3[/tex]NH[tex]_3[/tex](aq) + OH¯(aq),  CH[tex]_3[/tex]NH[tex]_2[/tex](g) is the base.

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Question 5


The atomic number of an element tells you the number of ______

o Electrons & neutrons
O Electrons & Proton
O Protons & Neutrons

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The atomic number of an element tells you the number of  Electrons & Proton

What is a proton?

A stable subatomic particle with the symbol P, H+, or 1H+, a proton has an electric charge of +1 e. Its mass is 1,836 times greater than that of an electron and only slightly less than that of a neutron. Nucleons are the collective name for protons and neutrons, which have masses of roughly one atomic mass unit apiece.

The positively charged particles called protons are found in the atom's nucleus. The strong force, which is stronger at short distances, pulls the protons together while the electromagnetic force pushes them apart.

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this is a linear model of a carbohydrate. based on what you know about carbohydrate structure, suggest which atom(s) should be added to the model to complete it.

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This is the linear model of the carbohydrate. Based on the structure of  carbohydrate structure, the atoms should be added to the model to complete it is the OH.

The Monosaccharides are the simple sugars made up of the three to the seven carbons, and they can be exist as the linear chain or as the ring shaped molecules. The Glucose, the galactose, and the fructose are the monosaccharide isomers, it means that they all have the same chemical formula but they all have the differ in  structurally and the chemically.

Thus, in the linear structure of the carbohydrates the OH atoms needed to complete the linear model of the carbohydrates.

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What characteristics do you observe in table salt, water, stone, rice or corn about matter in science

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The characteristic that can be observed in table salt, water, stone, rice and corn is that they are all examples of matter in science.

Matter is characterized by its physical properties, such as mass, volume, density, hardness, malleability, and solubility. Table salt is a solid with a crystalline structure, water is a liquid, stone is a solid with a crystalline or amorphous structure, rice is a granular solid, and corn is a kernel or seed.

It is worth mentioning that the study of matter is of utmost importance to better understand the world and the universe.

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fluorine-18 positron emission

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Fluorine-18 positron emission is a type of nuclear medicine imaging technique used to diagnose diseases and monitor treatment.

What does fluorine-18 positron emission?

Fluorine-18 positron emission is a type of medical imaging procedure used to help diagnose and treat certain medical conditions. It is a type of nuclear medicine imaging that uses a radioactive form of the element fluorine, fluorine-18 (18F), to produce images of the body. During the procedure a radio-tracer containing 18F is injected into the patient through an IV. The 18F then travels through the bloodstream and is absorbed by organs and tissues that have high metabolic activity. The 18F decays by emitting a positron, which is a type of particle with a positive charge. As the positron travels through the body, it collides with electrons and forms gamma rays. These gamma rays are detected by a special camera that produces images of the body.

Fluorine-18 positron emission is used to diagnose and treat a variety of medical conditions including cancers, heart disease, and neurological disorders. For example, 18F can be used to identify tumour in the body and to evaluate the effectiveness of cancer treatments. It can also be used to assess heart function and detect blockages in the arteries. Additionally, 18F can be used to assess the effects of stroke and other neurological disorders.

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how many oxygen atoms are there in 52.06 g of carbon dioxide?

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There are approximately [tex]1.424 x 10^24[/tex] oxygen atoms in 52.06 g of carbon dioxide.

To calculate the number of oxygen atoms in 52.06 g of carbon dioxide, we want to initially decide the number of moles of carbon dioxide present, and afterward utilize the mole proportion between carbon dioxide and oxygen to compute the number of oxygen iotas.

The molar mass of carbon dioxide (CO2) is 44.01 g/mol, and that implies that 1 mole of CO2 contains 2 moles of oxygen iotas (since the nuclear proportion of O to C in CO2 is 2:1).

Thus, to calculate the quantity of moles of CO2 in 52.06 g, we partition the mass by the molar mass:

n = m/M = 52.06 g / 44.01 g/mol = 1.182 mol

Now, we can use the mole ratio between CO2 and O to find the number of oxygen atoms:

1.182 mol CO2 x 2 mol O / 1 mol [tex]CO2 x 6.022 x 10^{23}[/tex] atoms/mol = [tex]1.424 x 10^{24}[/tex]oxygen atoms

Therefore, there are approximately [tex]1.424 x 10^{24}[/tex] oxygen atoms in 52.06 g of carbon dioxide.

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What is the correct Lewis structure for IF5?

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The correct Lewis structure of IF₅ is given below in the image attached.

Generally a Lewis Structure is defined as a very simplified representation of the valence shell electrons in a molecule. Lewis structure is basically used to show how the electrons are arranged around individual atoms present in a molecule.

Generally, in the Lewis structure of  IF₅, there are five fluorines atoms connected with a single bond surrounding the central atom i.e., I. The iodine atom usually carries one lone pair and five fluorine atoms carry three lone pairs. Iodine pentafluoride generally have a square pyramidal geometry and the hybridization of IF₅ is sp₃d₂.

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Calcalculate the standard reaction free energy of the following chemical reaction: ticl4 2h2o tio2 4hcl

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TiCl₄ + 2H₂O TiO₂ + 4HCl is the reaction's balanced chemical equation. The following equation may be used to compute the standard reaction free energy (G°): G° is equal to G°f (products) - G°f (reactants)

TiCl₄ + 2H₂O TiO₂ + 4HCl is the reaction's balanced chemical equation.

The following equation may be used to compute the standard reaction free energy (G°):

G° is equal to G°f (products) - G°f (reactants), where G°f is the typical free energy required to produce each chemical.

We obtain the following values for the standard free energy of formation: G° = (-944.4) + 2(-237.2) - (-763.2) - 4(-92.3) = -437.6 kJ/mol

As a result, the given chemical reaction's standard reaction free energy (G°) is -437.6 kJ/mol.

To put it another way, the calculation determines the energy difference between the reactants and products in the specified chemical process under ideal circumstances. The reaction is spontaneous and thermodynamically advantageous when G° is negative.

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How can you differentiate pressure, cryogenic, liquid, and solids containers from a distance, and what types of hazardous materials are each likely to contain

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Differentiating pressure, cryogenic, liquid, and solid containers from a distance can be challenging, as their visual appearance may be similar. However, some general guidelines can help identify the type of container and the likely contents:

Pressure containers are typically cylindrical and have pressure relief valves, gauges, and safety fittings. They are designed to store gases under high pressure and are likely to contain compressed gases such as hydrogen, oxygen, or nitrogen.

Cryogenic containers are heavily insulated and designed to store liquefied gases at very low temperatures. They often have a distinctive shape, with a wide base and a narrow neck. Cryogenic containers may contain liquefied gases such as nitrogen, helium, or argon.

Liquid containers may be similar in appearance to cryogenic containers but do not require heavy insulation. They are designed to store liquids such as chemicals, fuels, or solvents.

Solid containers are typically smaller and may be made of plastic or metal. They are used to store solid hazardous materials such as explosives, flammable solids, or oxidizing agents.

It's important to note that hazardous materials can be stored in any type of container, and that the container itself may not always be a reliable indicator of the contents. Proper labeling, placarding, and handling procedures should always be followed to ensure the safe transport and storage of hazardous materials.

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What is the basic formula of sugar?

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The basic formula of sugar is CₙH₂ₙOₙ, where "n" represents the number of carbon atoms in the molecule and "2n" represents the number of hydrogen atoms.

"Sugar" is a term used to describe a variety of sweet-tasting, water-soluble compounds that are commonly used as food additives or sweeteners. The most common type of sugar is sucrose, which is a disaccharide composed of glucose and fructose. The chemical formula for sucrose is C₁₂H₂₂O₁₁, which means it contains 12 carbon atoms, 22 hydrogen atoms, and 11 oxygen atoms.

Other types of sugars include glucose, fructose, and lactose, which have different molecular formulas but still follow the basic formula of CₙH₂ₙOₙ. Glucose, for example, has the molecular formula C₆H₁₂O₆, which means it contains 6 carbon atoms, 12 hydrogen atoms, and 6 oxygen atoms.

Sugars are important sources of energy for living organisms, and are commonly found in fruits, vegetables, and other plant-based foods. They are also used as sweeteners in processed foods and beverages, and can be refined from sugar cane, sugar beets, or other sources.

While sugars can provide energy and contribute to the flavor of foods, excessive consumption of added sugars has been linked to a variety of health problems, including obesity, diabetes, and cardiovascular disease. As such, many health experts recommend limiting the intake of added sugars and choosing whole foods that contain natural sugars instead.

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The movement of what ion is reflected in the rising phase of the action potential? Choose the correct option. A) Inward Na+ B) Outward K+ C) Outward Na+ D) Inward K+

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The movement of A) Inward Na+ ion is reflected in the rising phase of the action potential.

An action potential is an accelerated sequence of voltage changes across a membrane. At any given time, the tissue voltage, or potential, would be determined by the relative magnitude relation of ions, the company would benefit from intracellular, as well as the flowability of each ion.

Action potentials (the electrical impulses which thus send signals throughout your body) are nothing but a transitory shift in the membrane potential of the neuron caused by ions flowing in and out of the part of the brain.

An action potential seems to be a swift sequence of voltage changes across a membrane. At any given time, the membrane voltage, but rather potential, is dependent on the relative percentage of ions, ds14 to intracellular, as well as the permeation of each ion.

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When aqueous solutions of _________ are mixed, a precipitate forms. Answer a. NiBr2 and AgNO3 b. NaI and KBr c. K2SO4 and CrCl3 d. KOH and Ba(NO3)2 e. All of the above solutions will form a precipitate.

Answers

Precipitate is produced when Nibr2 and AgNo3 are combined in aqueous solutions. The correct option to this question is A.

PrecipitatesWhen two solutions containing different salts are mixed, a cation/anion pair forms an insoluble salt, which precipitates out of solution.K2So4 and CrCl3 will react to create soluble Group 1A compounds in the specified combination.Group 1A compounds that are soluble are created when NaI and KBr are mixed.Carbonates containing Group 1A elements dissolve in Li2Co3 and CSi.Nibr2 and AgNo3: The final byproduct is an insoluble in water Ag halide that precipitates out.Precipitate is produced when Nibr2 and AgNo3 are combined in aqueous solutions.

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What are the 22 nonmetals in periodic table?

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The 22 non-metals present in the periodic table is H, He, C, N, O, F, Ne, P, S, Cl, Ar, Se, Br, Kr, I, Xe, At and Rn etc.

Generally, non-metals are defined as the natural materials that do not produce heat or electricity and that are structurally brittle (can not undergoes the process of rolling, moulding, extruding or pressing). Hydrogen, carbon, nitrogen, oxygen, phosphorus, arsenic and selenium are some of the the non-metallic elements in the periodic table.

The main 5 properties of non-metals are:

They are brittle.

They are bad conductors of heat and electricity (except graphite).

They are non-lustrous (dull) and cannot be polished (except iodine).

They may be solids, liquids or gases at room temperature.

They are neither tough nor strong.

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the term for the branch of science that studies atoms are called___

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Chemistry is the term for the branch of science which students the atoms ( i.e., smallest unit of matter) and molecules (combination of atoms).

Chemistry is a branch of science that studies matter, that is, anything that has mass and occupies space, and how matter changes under the influence of various energies, environments, and conditions. Atoms are the basic building blocks of chemistry. The smallest unit that can divide matter without releasing charged particles. It is also the smallest unit of matter that has the properties of a chemical element. Theory of atoms was propsed by Dalton in 19th century. It was the first theory of atom and it is called atomize.

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_____ fatty acids consist entirely of carbon-carbon single bonds.

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Saturated fatty acids

Using your graduated cylinder, you calibrate the pipet you will be using and the values you collect are as follow. What is the average number of drops per mL of benzene.21 drops20 drops17 dropsa. After calibration, you use the oleic acid/benzene solution to form a monolayer. It takes 8 drops , 9 drops and 8 drops before the layer on the water solution starts to make a bubble tha does not go into solution. What is the average number of drops for your monolayer?b. Since we have the number of drops it takes to make a monolayer and we have the number of drops it takes to make one mL of benzene, we can determine the mL of oleic acid/benzene it takes to form a monolayer.c. Next we need to determine the mass of oleic acid in the monolayer. The concentration of the oleic acid/benzene solution is 0.02g/L. Calculate how many grams of oleic acid is in one drop.d. With this information, we now need to calculate the volume in milliliters. We need to know how many mLs a drop of oleic acid occupies using the density of 0.895 g/mL and the number of drops of oleic acid solution used.

Answers

Part A) The average number of drops per mL of benzene is 19.33 drops/mL

Part B) The average number of drops for the monolayer is 8.33 drops.

Part C)  0.43 mL of oleic acid/benzene is required to make a monolayer.

Part D)  each drop of solution contains 0.00002 g of oleic acid.

Part E) one drop of oleic acid takes up roughly 0.000022 mL.

Part A)  To find the average number of drops per mL of benzene, add the drops from each experiment and divide by the number of trials:

 (21 drops + 20 drops + 17 drops) / 3  = (19.33 drops/mL)

Part B) We sum the values and divide by the number of values to determine the average number of drops for the monolayer:

 (8 drops + 9 drops + 8 drops) / 3 = 8.33 drops

Part C) To calculate the mL of oleic acid/benzene required to produce a monolayer, multiply the average number of drops required for the monolayer by the mL per drop of benzene determined in Part A:

8.33 drops x (1 mL / 19.33 drops) = 0.43 mL

Part D) Using the concentration of the solution, we can determine how many grams of oleic acid are in one drop of the solution:

0.02 g/L = 0.00002 g/mL

Because the density of the solution is not specified, we presume it is the same as that of benzene, which is 0.879 g/mL. As a result, the mass of one mL of solution is:

0.879 g/mL x 1 mL = 0.879 g

The mass of oleic acid in one drop of the solution may now be calculated:

0.00002 g/mL / 1 mL x 1 drop = 0.00002 g/drop

Part E) We need to utilise the density of oleic acid, which is 0.895 g/mL, to calculate the volume in mL that one drop of oleic acid occupies:

0.00002 g / 0.895 g/mL = 0.000022 mL

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The probable question may be:

Part A) Using a graduated cylinder, you calibrate the pipet you will be using and the values you collect are as follows. What is the average number of drops per mL of benzene.

21 drops

20 drops

17 drops

part B) After calibration, you use the oleic acid/benzene solution to form a monolayer. It takes 8 drops , 9 drops and 8 drops before the layer on the water solution starts to make a bubble that does not go into solution. What is the average number of drops for your monolayer?

part C) Since we have the number of drops it takes to make a monolayer and we have the number of drops it takes to make one mL of benzene, we can determine the mL of oleic acid/benzene it takes to form a monolayer.

part D) Next we need to determine the mass of oleic acid in the monolayer. The concentration of the oleic acid/benzene solution is 0.02g/L. Calculate how many grams of oleic acid is in one drop.

part E) With this information, we now need to calculate the volume in mL the drop of oleic acid occupy using the density of 0.895 g/mL and the number of drops of oleic acid solution used.

What is the average atomic mass of this element based on the data

Answers

92.6amu is the average atomic mass of this element. Atoms that belong to the same element can have various numbers of neutrons.

What is average atomic mass?

Understanding the idea of isotopes is necessary in order to determine average atomic mass. Atoms that belong to the same element can have various numbers of neutrons in their nuclei, which leads to variations in the atomic masses and mass numbers of atoms that share a single atomic number.

Three carbon isotopes, for instance, are carbon-12, carbon-13, and carbon-14. Carbon-12 has a neutron count of 6 and a mass of 12 amu, carbon-13 has a neutron count of 7 and a mass of 13 amu, while carbon-14 has a neutron count of 8 and a mass of 14 amu.

average atomic mass = (natural abundance) (atomic mass of first isotope) + (natural abundance) (atomic mass of second isotope)

The average atomic mass of carbon is =

(0.51) (90) + (0.11) (91) + (0.17) (92)+ (0.17) (94) + (0.02) (96) =92.6amu

Therefore, 92.6amu is the average atomic mass of this element.

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What is the reaction to . Na2SO3 + 2 HC2H3O2 → H2SO3 + 2 NaC2H3O2

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………………….tygrrfdhgghhh

oxygen atoms have an electronegativity value of 3.44, and carbon atoms have an electronegativity value of 2.55. what type of bond forms between carbon and oxygen?

Answers

The electronegativity difference between carbon and oxygen atoms is 3.44 - 2.55 = 0.89. The type of bond forms between carbon and oxygen is polar covalent bond.

According to the Pauling electronegativity scale, a difference in electronegativity of less than 1.7 indicates a polar covalent bond. Therefore, carbon and oxygen form a polar covalent bond in most cases, where the oxygen atom has a partial negative charge and the carbon atom has a partial positive charge.

This polarity in the bond arises because oxygen is more electronegative than carbon, and attracts electrons more strongly than carbon does, resulting in unequal sharing of electrons between the two atoms.

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what will be the result if heat is added to an endothermic reaction?

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The result if heat is added to an endothermic reaction is that it will increasing the amounts of the products and will decreasing the amounts of the reactants.

If the reaction is the endothermic reaction and if we add the heat to the endothermic reaction then it will  increase in the temperature and it will cause the forward reaction to occur, and increasing the amounts of the products and will decreasing the amounts of the reactants. The Lowering of the temperature will be produce the opposite of the response.

Thus, the increase in the amount of the product occurs if we add the heat to the endothermic reaction.

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What are 5 examples of an endothermic reaction?

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Five examples of endothermic reactions are: Melting ice, Cooking an egg, Photosynthesis, Dissolving ammonium nitrate in water, and Evaporation of water.

Endothermic reactions are chemical reactions that absorb heat from their surroundings, causing the temperature of the surroundings to decrease.

Melting ice: When ice melts, it absorbs heat from its surroundings. The heat is used to break the bonds between the water molecules in the ice, which causes the temperature of the ice and its surroundings to decrease.

Cooking an egg: When you cook an egg, the heat from the stove is absorbed by the egg. The heat causes the proteins in the egg to denature, which is an endothermic reaction.

Photosynthesis: It is the process in which plants use sunlight to convert carbon dioxide as well as water into glucose and oxygen. This process is endothermic because it absorbs energy from the sun.

Dissolving ammonium nitrate in water: When ammonium nitrate is dissolved in water, it absorbs heat from its surroundings. This is because the process of dissolving the salt requires energy.

Evaporation of water: When water evaporates, it absorbs heat from its surroundings. This is because the energy required to break the bonds between the water molecules and turn the liquid water into water vapor comes from the heat in the surroundings.

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What are 4 physical properties of matter?

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Four physical properties of matter are density, colour, hardness, melting and boiling points and many more.

The matter is usually composed of tiny particles known as atoms and can be represented as something that occupies space. It must represent both the mass and volume properties.

Properties are defined as the features that capable us to differentiate one material from another. A physical property is usually a characteristic of matter that does not depend on its chemical composition.

Generally a physical property is defined as an attribute of matter that is independent of its chemical composition. Some of the main examples of physical properties density, color, hardness, melting and boiling points, and electrical conductivity.

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39) Calculate the pH after 0.010 mole of gaseous HCl is added to 250.0 mL of each of the following buffered solutions

Do the two original buffered solutions differ in their pH or their capacity? What advantage is there in having a buffer with a greater capacity?

Answers

Answer is shown in the image

Would a family whose average medical expenses were $15,000 a year save more money with a PPO that has a $5,000 deductible or one that requires the insured person to pay 20% of the cost? Explain your answer

Answers

The family would have to compare the premiums and out-of-pocket costs of both plans to determine which one is the most cost-effective for their specific medical needs.

Why is it at the expense of the family decision?

To determine which plan would save the family more money, we need to compare the total cost of each plan over a year. Let's assume that the total medical expenses for the family in a year are $15,000.

With the PPO that has a $5,000 deductible, the family would have to pay the first $5,000 of medical expenses out of pocket. After that, the insurance plan would cover the remaining $10,000 of expenses. The family's out-of-pocket cost for the year would be $5,000 (deductible) plus the cost of the insurance premiums. If the insurance premiums are less than the amount they would have paid with the 20% plan, then the PPO with a $5,000 deductible would be more cost-effective.

With the plan that requires the insured person to pay 20% of the cost, the family would have to pay 20% of the total medical expenses, which would be $3,000 (20% of $15,000). In addition, they would also have to pay the cost of the insurance premiums. If the insurance premiums are greater than the amount they would have paid with the PPO, then the plan that requires them to pay 20% of the cost would be more expensive.

Therefore, we need to compare the cost of the insurance premiums for each plan to determine which one would save the family more money. If the premiums for the PPO plan are less than the additional $2,000 cost of the 20% plan ($5,000 - $3,000), then the PPO with a $5,000 deductible would be more cost-effective. If the premiums for the 20% plan are less than the additional $2,000 cost of the PPO plan, then the 20% plan would be more cost-effective.

In general, it is difficult to determine which plan is more cost-effective without knowing the specific insurance premiums for each plan. The family should compare the premiums and out-of-pocket costs of both plans to determine which one is the most cost-effective for their specific medical needs.

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What are the 2 product of the chemical reaction catalyzed by the enzyme catalase?

Answers

Answer:

when the enzyme comes into contact with its substrate, hydrogen peroxide it starts breaking it down into water and oxgen

Explanation:

watch some chemical reaction videos

in an atom, what type of particle orbits the others?

Answers

Answer:

Electrons orbit the nucleus in an atom.

when an oceanic plate converges with another plate subduction occurs the oceanic plate is pushed beneath the other plate a trench is formed when the plate is being pushed beneath the other what rock can likely result?

Answers

When an oceanic plate is subducted beneath another plate during a convergent boundary, the rock that can likely result is metamorphic rock.

Explanation:

This occurs because as the oceanic plate is subducted, it is forced deep into the Earth's mantle where it is subject to extreme heat and pressure. This heat and pressure cause the minerals and rocks in the oceanic plate to recrystallize, creating metamorphic rocks.

Examples of metamorphic rocks that can be formed from subducted oceanic plates include blueschist, eclogite, and amphibolite. These rocks can then be brought to the surface through a process called uplift and can be studied to understand the geological history of the area.

~ Zeph

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