The stomach lining is made up of deep muscular grooves. How do you think these structures help the stomach to break down food

Answers

Answer 1
the curves absorb the food and sort of squish it and make it easier to digest then the food goes into the stomach acid and kind of burns and become and little softer or in other words by allowing the stomach to stretch in order to accommodate large meals and get grip and move food during the digestion process.  

Related Questions

Describe how water can be a liquid at room temperature but neither of its elements are liquid at room temperature

Answers

The hydrogen bonds between oxygen and hydrogen allow water to condensate and stay liquid at room temperature because they are strong enough to contain the energy to do so.

How many subshells are there in the shell with n = 6?

Answers

The number of subshells within a certain shell can be identified using the orbital angular momentum quantum number "l"

"l" is given values from zero till (n-1)
So, for n=6
l is given the following values: 0,1,2,3,4,5
Counting the number of subshells, we will find that the shell with n=6 has 6 subshells

Answer:

5 subshells

Explanation:

In aqueous solution, globules of up to several thousand amphiphilic molecules arranged with the hydrophilic groups on the surface and the hydrophobic groups buried in the center are called _____.

Answers

The answer to this question is the "Micelles" such as in an aqueous solution, globules of up to several thousand amphiphilic arranged with the hydrophilic groups on the surface and the hydrophobic groups buried in the center or in the middle are commonly called as MICELLES. These micelles is the aggregate or collection of molecules in the solution such as we have observed in the detergent.

Type in the correct values to correctly represent the valence electron configuration of oxygen: AsB2pC
A =
B =
C =

Answers

Answer: A=2,  B=2 and  C=4

Explanation: Oxygen is the element with atomic number 8 and thus contains 8 electrons which are filled in order of increasing energy levels.

[tex]O:8:1s^22s^22p^4[/tex]

The valence electrons are electrons which are present in the valence shell i.e. the last shell. Thus the valence electrons of Oxygen are in shell 2 in which s orbital contains two electrons and the p orbital contains 4 electrons.

Thus A= 2, B=2 and C=4.

Answer:

The correct number of valance electrons in the electronic configuration of Oxygen is:

A=2, B=2, and C=4

Explanation:

The atomic number of oxygen is 8

The electronic configuration will be,

[tex]\rm O_8\rightarrow1s_2,2s_2,2p_4[/tex]

The electrons present in the outermost shell is called valence electrons.

Hence, in the second shell, the s-orbital contains 2 electrons and the p-orbital contains 4 electrons.

If all the electrons in the outermost shell are removed the first shell becomes a valance shell where 2 electrons are present in the s-orbital.

Therefore correct valence electron configuration is 2,2,4.

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Which process is spontaneous? electrolysis of water into oxygen and hydrogen spreading of a strong fragrance of perfume in a room separation of sodium and chlorine from sodium chloride removal of iron fillings from a mixture by using a magnet?

Answers

Among all the given options, the correct option is option B. Spreading of a strong fragrance of perfume in a room is a spontaneous process.

What is spontaneous process?

A spontaneous process refers to one that happens by itself, without external energy input. A ball would roll down an incline, water will flow downward, melting ice into water, radioactive elements will degrade, and iron will rust, for instance.

A nonspontaneous process is the opposite of a spontaneous process; it requires the addition of energy to take place. For instance, rust doesn't spontaneously transform back into iron; a daughter isotope cannot return towards its parent state. Spreading of a strong fragrance of perfume in a room is a spontaneous process.

Therefore, the correct option is option B.

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The spontaneous process among the options is the spreading of a strong fragrance of perfume in a room, driven by diffusion. The other processes require external energy to occur and are not spontaneous.

Among the processes listed, the only spontaneous process is the spreading of a strong fragrance of perfume in a room. This is due to the natural tendency of particles to move from an area of higher concentration to an area of lower concentration, a process driven by diffusion.

The other processes mentioned are not spontaneous and require external energy to occur:

Electrolysis of water into oxygen and hydrogen: This is a nonspontaneous process which requires an external electric current to drive the decomposition of water.Separation of sodium and chlorine from sodium chloride: This also requires considerable energy input, typically through electrolysis.Removal of iron fillings from a mixture using a magnet: While the action of using a magnet is simple, it requires an external intervention to perform the separation.

A reversible reaction at equilibrium can counteract the stress of an increase in pressure by:

Answers

A reversible reaction at equilibrium can counteract the stress of an increase in pressure by displacing the equilibrium toward the side where the number of molecules of gases will be fewer.

Given that the pressure is directly proportional to the number of molecules of gas, by driving the reaction toward the side where the number of molecules decreases the pressure will be relief, at least partially.

This is a classical application of Le Chatelier's principle.

A reaction produces 0.819 moles of h2o. how many molecules are produced?

Answers

To determine the number of molecules of H2O that is being produced, we need to convert moles to molecules. We need to use a conversion factor. For this case, we use Avogadro's number. It represents the number of units in one mole of any substance. This has the value of 6.022 x 10^23 units / mole. This number can be used to convert the number of atoms or molecules into number of moles. We calculate as follows:

0.819 moles H2O ( 6.022 x 10^23 molecules / 1 mole) = 4.93x10^23 molecules

The number of molecules of H2O produced would be 4.93x10^23 molecules.

How many moles of HNO3 are present if 2.50×10−2 mol of Ba(OH)2 was needed to neutralize the acid solution?

Answers

2HNO₃ + Ba(OH)₂ = Ba(NO₃)₂ + 2H₂O

2 mol HNO₃ - 1 mol Ba(OH)₂
x mol HNO₃ - 2.50×10⁻² mol Ba(OH)₂

x=2.50×10⁻²×2/1=0.05 mol
Final answer:

The number of moles of HNO3 present is 5.00×10^-2 mol.

Explanation:

In the given neutralization reaction:

Ba(OH)2 (aq) + 2HNO3(aq) → Ba(NO3)2(aq) + 2H₂O(1)

It's clear that 2 moles of HNO3 are needed to neutralize 1 mole of Ba(OH)2. Therefore, if 2.50×10−2 mol of Ba(OH)2 was needed to neutralize the acid solution, we can calculate the number of moles of HNO3 as follows:

Number of moles of HNO3 = 2.50×10−2 x 2 = 5.00×10−2 mol

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What is the net ionic equation of the reaction of mgso4 with bacl2? express your answer as a chemical equation?

Answers

MgSO₄(aq) + BaCl₂(aq) → MgCl₂(aq) + BaSO₄(s)

Mg²⁺ + SO₄²⁻ + Ba²⁺ + 2Cl⁻ → Mg²⁺ + 2Cl⁻ + BaSO₄

SO₄²⁻ + Ba²⁺ → BaSO₄  (the net ionic equation)

Is aluminum homogeneous or heterogeneous?

Answers

 aluminum is an element. All elements are pure substances, so that means they are homogenous.
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How does electronegativity cause the polarity in water and, ultimately, enable water to form hydrogen bonds between other water molecules?

Answers

Oxygen is more electronegative than Hydrogen 
                                  So . . . 
When the two form covalent bonds, oxygen pulls the electrons closer and farther from hydrogen
                                   So . . .
The water molecule is polar, with oxygen more negative and hydrogen more positive.
                                   So . . .
Since opposites attract, the more negative oxygens attract the more positive hydrogens of other water molecules, forming the hydrogen bonds.

Electronegativity in water creates partial charges, causing polarity. This polarity allows hydrogen bonding between water molecules, enhancing interactions.

In a water molecule (H₂O), oxygen is more electronegative than hydrogen. This means that oxygen attracts the shared electrons in the O-H bonds more strongly than hydrogen does.

As a result, the electrons spend more time closer to the oxygen atom, giving it a partial negative charge (δ−), while the hydrogen atoms acquire a partial positive charge (δ+). This uneven distribution of charge creates a dipole moment, making water a polar molecule.

The polarity of water molecules causes them to be attracted to each other. The partial positive charge of one water molecule is attracted to the partial negative charge of another, forming hydrogen bonds.

These bonds are relatively weak compared to covalent bonds but are crucial for water’s unique properties, such as its high boiling point and surface tension.

A chemical bond that forms when atoms share electrons is always a(n) _________________________.

Answers

The category given to the chemical bonds that form when atoms share electrons is a covalent bond, where electrons of certain energy levels are shared so that all of the atoms in the molecule are stable and have the maximum number of electrons in their valence shell.

Due to the uneven or even sharing of electrons, there can be polar or Nonpolar bonding.

CH4(g) + H2O(g) mc004-1.jpg CO(g) + 3H2(g) What will happen to the equilibrium of this reaction if CO is added to the system?

Answers

Equilibrium shifts to the left.

Which would least strongly attract electrons from other atoms in a compound? elements of group 1
elements of group 2
elements of group 15
elements of group 17

Answers

The group of elements that will have the lowest electronegativities would be the elements in group 1 of the periodic table. These are metals, and would have low electronegativity as they would not need to attract or pull electrons but to give up one, to have a stable octet. Also, if you note the trend in electronegativity, it increases as you move from left to right on the table, here we are at the leftmost portion of the Table.

The elements with the least chances to attract electrons from the other atoms are group 1 elements. Thus option A is correct.

The elements attract or lose electrons in order to attain a stable configuration. The system has been based on the number of valence electrons in the atom.

The atom with the least electronegativity has the changes to give up the electrons, and the least chance to attract the electrons from the other atoms.

The group 1 elements have 1 valence electrons, and thus have the high chances to give the electron, with the least chances to attract electrons from the other compounds. Thus option A is correct.

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If 4.0 g of hydrogen and 10.0 g of oxygen are mixed according to the equation 2 h2 + o2 → 2 h2o, which is the limiting reagent?

Answers

From the equation, we can see that the molar ratio between hydrogen and oxygen is:
2 : 1

Next, we determine the moles of hydrogen and oxygen that are actually present using:
moles = mass / Mr

Hydrogen:
moles = 4 / 2 = 2

Oxygen:
10/32 = 0.3125

Therefore, it is evident that the moles of oxygen present, 0.3125, are less than those that are required for 2 moles of hydrogen, which is 1. This makes oxygen the limiting reactant, which is the one that limits the completion of a reaction.

Final answer:

To find the limiting reagent between hydrogen and oxygen, we convert their masses to moles and use the stoichiometry of the balanced chemical reaction 2 H2 + O2 → 2 H2O. Oxygen is the limiting reagent because there are not enough moles of O2 to fully react with the available moles of H2.

Explanation:

To determine the limiting reagent when 4.0 g of hydrogen (H2) and 10.0 g of oxygen (O2) are mixed to react according to the equation 2 H2 + O2 → 2 H2O, we need to perform mass-mole calculations for both reactants and compare the stoichiometry of the balanced equation.

First, convert the mass of each reactant to moles:

For H2: Molecular weight is approximately 2.02 g/mol. Thus, 4.0 g H2 ÷ 2.02 g/mol = 1.98 moles of H2.

For O2: Molecular weight is approximately 32.00 g/mol. Thus, 10.0 g O2 ÷ 32.00 g/mol = 0.3125 moles of O2.

According to the balanced equation, 2 moles of H2 react with 1 mole of O2. Therefore, to fully react with 1.98 moles of H2, we would need 0.99 moles of O2. However, we only have 0.3125 moles of O2, which is insufficient to react with all the H2. Therefore, O2 is the limiting reagent.

The central atom in the clf4 ion has ________ nonbonded electron pair(s) and ________ bonded electron pair(s) in its valence shell.

Answers

Final answer:

The central atom in the ClF4 ion has three nonbonded electron pairs and one bonded electron pair in its valence shell.

Explanation:

The central atom in the ClF4 ion has three nonbonded electron pairs and one bonded electron pair in its valence shell. The Cl atom has a total of seven valence electrons and forms four covalent bonds with the four fluorine atoms. This leaves three lone pairs of electrons around the central Cl atom, which are not involved in bonding.

The correct symbol for the ion formed by nitrogen is:

Answers

symbol for the ion formed by nitrogen: N^3.

The ion formed by nitrogen is N³⁻, also known as a nitride ion. In an ionic compound with aluminum, Al³⁺ forms the cation, and C⁴⁻ forms the anion called the carbide ion.

The correct symbol for the ion formed by nitrogen is N³⁻. Nitrogen, being in group 15 of the periodic table, is a nonmetal and thus forms negative ions, known as anions. A nitrogen atom will gain three electrons to achieve the electron configuration of neon, the next noble gas, resulting in the formation of a nitride ion with a 3- charge.

Chemistry balance skeleton reaction? Balance the following skeleton reactions and identify the oxidizing and reducing agents.; include states-of-matter please! 1.BH4‾(aq) + ClO3‾(aq) → H2BO3‾(aq) + Cl ‾(aq) [basic] 2.CrO42-(aq) + N2O(g) → Cr3+(aq) + NO(g) [acidic]

Answers

Final answer:

The given reactions are balanced, with the first reaction not requiring any adjustment and the second reaction being balanced as 2CrO42-(aq) + 3N2O(g) → 6Cr3+(aq) + 3NO(g). The oxiding agents are ClO3¯ and CrO42- for the first and second reactions, respectively. The reducing agents are BH4¯ and N2O for the first and second reactions, respectively.

Explanation:

First, it's essential to know that during oxido-reduction reactions, one substance loses electrons (oxidized) and another gains them (reduced). We call the substance oxidized to be the reducing agent and the one reduced to be the oxidizing agent.

For the first reaction BH4¯(aq) + ClO3¯(aq) → H2BO3¯(aq) + Cl¯(aq), there aren't any charges or states of matter to be balanced. Analyzing the oxidation states, the B in BH4¯ goes from -3 to +3, showing it has been oxidized. Thus, BH4¯ is the reducing agent. ClO3¯ reduces to Cl¯, thus ClO3¯ is the oxidizing agent.

Moving on to the second reaction CrO42-(aq) + N2O(g) → Cr3+(aq) + NO(g), balance the equation first by adjusting coefficients to get 2CrO42-(aq) + 3N2O(g) → 6Cr3+(aq) + 3NO(g). This reaction is in an acidic solution, so it's important to note that hydroxide ions do not appear in half-reactions occurring in an acidic solution. SO, in this reaction too, Cr in CrO42- goes from +6 to +3, signifying reduction, making CrO42- the oxidizing agent. N in N2O goes from +1 to +2 which signifies oxidation, marking N2O as the reducing agent.

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Rank these compounds by highest boiling point to lowest boiling point? Pentane, neopentane, isopentane

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Pentane has a boiling point of 36.1 C, while isopentane boils at 27.7C. Neopentane has the lowest boiling point at 9.5 C. Therefore from highest to lowest boiling points, it is pentane, isopentane, and neopentane.

The compounds ranked by boiling point from highest to lowest are: Pentane > Isopentane > Neopentane.

The boiling point of a compound is influenced by its intermolecular forces.

Compounds with stronger intermolecular forces tend to have higher boiling points because more energy is required to overcome those forces and convert the substance from a liquid to a gas.

Generally, the strength of intermolecular forces increases with increasing molecular size and surface area.

Pentane is a linear hydrocarbon with five carbon atoms in a row. It has the highest boiling point among the three compounds because it has the greatest molecular size and surface area.

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A technician has been given 250 ml of 15% acetic acid solution. the pharmacist has asked the tech to dilute the solution to 500 ml with sterile water and to label the solution. what percentage should appear on the label

Answers

7.5% acetic acid solution.
Final answer:

The problem is about diluting a 15% acetic acid solution to a larger volume. After diluting the solution from 250 ml to 500 ml, the new percentage concentration of the acetic acid solution is 7.5%. Hence, the label should read 7.5% acetic acid.

Explanation:

The problem you presented is a typical one in chemistry, which involves the concept of percentage concentration and dilutions. Initially, we have 250 ml of a 15% acetic acid solution. The amount of acetic acid in the solution is therefore 0.15 * 250 = 37.5 g.

The technician adds enough water to the solution to make the total volume 500 ml. However, the amount of acetic acid doesn't change; it remains 37.5g. To find the new percentage of the acetic acid solution, we take the total mass of the acetic acid (37.5g) and divide it by the total volume of the solution (500 ml), then multiply by 100% to get the percentage:

(37.5g / 500ml) * 100% = 7.5%.

So, the label on the solution should say 7.5% acetic acid.

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What is the Celsius temperature of 1 mole of a gas that has an average kinetic energy of 4,265 joules?

69°C

96°C

369°C

435°C

Answers

96°C If I'm not mistaking

Answer:

Explanation:

Kinetic energy is the energy possessed by an object by virtue of its motion.

Average kinetic energy is defined as the average of the kinetic energies of all the particles present in a system. It is determined by the equation:

[tex]K=\frac{3nRT}{2}[/tex]

K= kinetic energy

n= number of moles

R= gas constant

T= temperature  

[tex]4265J=\frac{3\times 1\times\times 8.314\times T}{2}[/tex]

[tex]T=342K[/tex]

[tex]tK=(t-273)^0C[/tex]

[tex]T=342K=(342-273)^0C=69^0C[/tex]

Thus temperature will be [tex]69^0C[/tex]

Calculate the energy difference for a transition in the paschen series for a transition from the higher energy shell n=4. express your answer to four significant figures and include the appropriate units.

Answers

Final answer:

The energy difference for a transition in the Paschen series from the higher energy shell n=4 is approximately 13.6 eV.

Explanation:

The energy difference for a transition in the Paschen series can be calculated using the equation:

AE = E1 - E2 = 2.179 × 10-18 J

To express the answer in eV, we can use the conversion factor: 1 eV = 1.6022 × 10-19 J

Therefore, the energy difference for the transition in the Paschen series from the higher energy shell n=4 is approximately 13.6 eV.

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Which of the following represents a hydrocarbon that contains one double bond somewhere in the carbon chain?
alkane
alkene
alkyne
substituted hydrocarbon

I know it's not C, alkyne

Answers

The answer is alkene.

An alkane is a saturated hydrocarbon, thi is it has only single bonds.

Alkenes and alkynes are unsaturated: alkenes have double bonds and alkynes have triple bonds.

Subsituted hydrocarbon, is a hydrocarbon with one hydrogen substituted by another element or a group.

For example:

CH3 - CH - CH3
           |
          F

Final answer:

An alkene is a hydrocarbon with one or more carbon-carbon double covalent bonds, and is the correct answer to the question.

Explanation:

An alkene is a hydrocarbon with one or more carbon-carbon double covalent bonds. Alkenes have the general formula CnH2n assuming non-cyclic structures. They can be represented by the formula RCH=CHR', where R and R' are any atoms or groups of atoms attached to the carbons.

An alkyne is a hydrocarbon with one or more carbon-carbon triple covalent bonds. Alkynes have the general formula CnH2n-2, and can be represented by the formula RC≡CR', where R and R' are any atoms or groups of atoms attached to the carbons.

Based on these definitions, the hydrocarbon that contains one double bond somewhere in the carbon chain is an alkene.

If a large leak of refrigerant occurs such as from a filled cylinder in an enclosed area what action should be taken when no self-contained breathing apparatus is available?

Answers

If a large leak of refrigerant occurs such as from a filled cylinder in an enclosed area, the correct action that should be taken when no self-contained breathing apparatus is available would be to vacate the spill area and ventilate it. Leaving the area of the spill should be done as fast as possible to avoid suffocation of the refrigerant or other health effects like burns and irritations. Also, diluting it with air or ventilating it would make it less harmful to the people affected by the spill as it would be less harmful than being in its concentrated form.
Final answer:

If a large leak of refrigerant occurs in an enclosed area and no self-contained breathing apparatus is available, the immediate action should be to evacuate the area to fresh air, shut off the source of the leak if possible, and seek medical attention if experiencing symptoms.

Explanation:

If a large leak of refrigerant occurs in an enclosed area and no self-contained breathing apparatus is available, there are several actions that should be taken to ensure safety:

Immediately evacuate the area to fresh air.If possible, shut off the source of the leak and prevent any additional release of refrigerant.Seek medical attention if experiencing any symptoms, such as difficulty breathing or irritation of the eyes, throat, or skin.

It is important to prioritize personal safety and seek professional assistance when encountering such incidents.

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What process measures the amount of a solution of known concentration required to react with a measured amount of a solution of unknown concentration?

Answers

the answer is titration.

hope this helped :)
Final answer:

Titration is the process that measures the amount of a solution of known concentration required to react with a measured amount of a solution of unknown concentration.

Explanation:

The process that measures the amount of a solution of known concentration required to react with a measured amount of a solution of unknown concentration is called titration. Titration is a quantitative chemical analysis method that involves measuring the volume of a reactant solution required to completely react with the analyte in a sample. The volume of the titrant solution is used to calculate the concentration of the analyte using the stoichiometry of the titration reaction.

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For hydrogen, what is the wavelength of the photon emitted when an electron drops from a 4p orbital to a 2s orbital in a hydrogen atom?

Answers

In Bohr's atomic model, the electrons are orbiting outside in orbitals around the nucleus. The farther the electron is from the nucleus, the lower its energy level becomes. That is why when reactions occur, it is the valence electrons (outermost electrons) that gets involve in the bonding. The way you write an electronic configuration is how the energy levels decreases. The first is orbital 1s which is the highest energy level because it is nearest to the nucleus. Then, it is followed by 2s2p, and so on and so forth. The energy levels are represented by the numbers.

When electrons transfer from orbital to orbital, they may release (high to low) or absorb (low to high) energy in the form of light which can be measuredin wavelength. The formula to be used is Rydberg's formula:

1/λ = R(1/n₁² - 1/n₂²), where

λ is wavelength measured in meters
n₁ and n₂ are the energy levels such that n₂>n₁
R is the Rydberg constant equal to 1.097×10⁷ m⁻¹

1/λ =1.097×10⁷ m⁻¹ (1/2² - 1/4²)
λ = 4.86×10⁻⁷ or 4.86 pm

Which graph is used to show change in a given variable when a second variable is changed?

Answers

the answer is line graph
line graph i believe is the best answer

What is the oxidizing agent in galvanic cell?

Answers

The ion in the cathode that gains electrons

Answer:

Anode

Explanation:

A p e x

The guy that said cathode was wrong :(

In ammonium chloride salt (nh4cl) the anion is a single chloride ion, cl. what is the cation of nh4cl

Answers

NH₄Cl → NH₄⁺ + Cl⁻

NH₄⁺ (the ammonium cation)

A certain radioactive element has a half-life of one hour. if you start with 1.0 gram of the element at noon, how much of the radioactive element will be left at 2 p.m.? 0.50 grams 0.25 grams 0.125 grams 0.0 grams

Answers

answer: 0.25 g
I just took this test and that was the answer to it. 

Answer:

The radioactive element will be left at 2 p.m. will be 0.25 g.

Explanation:

Half life of the radioactive element =[tex]t_{\frac{1}{2}}=1 hour[/tex]

Initial concentration of the radioactive element = [tex]N_o[/tex]=1.0 g

Time elapsed = 12:00 pm to 2:00 pm = 2 hours

Concentration of radioactive element left = N

[tex]\lambda =\frac{0.693}{t_{\frac{1}{2}}}=\frac{0.693}{1 hr}=0.693 hr^{-1}[/tex]

[tex]\log N=\log N_o-\frac{\lambda t}{2.303}[/tex]

Putting the given values in the above equation we get:

N = 0.25 gram

The radioactive element will be left at 2 p.m. will be 0.25 g.

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