The total number of protons and neutrons and eletronc in an stom aliver 109 is

Answers

Answer 1
big very big hope dis helps im not sure but i think its rite

Related Questions

Write the formula for the compound formed between calcium and phosphorus.

Answers

Here you go. Hope that helps.

3Ca+2P→Ca3P2

Mass is constant regardless of an object’s location, but the weight of the object depends upon

Answers

 It depends on the "mass" of an object and the strength of gravity where ... Just remember that mass is constant, and weight is a force that varies

If the actual yield of the reaction was 75% instead of 100%, how many molecules of no would be present after the reaction was over? express your answer as an integer.

Answers

The reaction will be

2NO  + O2 ---< 2NO2

so as per balanced equation two moles of NO will react with one mole of O2 to give two moles of NO2

In this particular question, 5 molecules of O2 and 8 molecules of NO are present

so the limiting reagent is NO

now the 8 molecules of NO should react with 4 molecules of O2 for 100% yield

As the mentioned yield is 75% only, it means only 75% of NO molecules will react

75% of 8 = 6

So six molecules of NO will react with 3 molecules of O2 to give 75% yield

so after reaction we will be left with  2 molecules of NO



What does the state symbol aq mean when written after a chemical compound in a chemical equation?

Answers

'aq' represents 'aqueous', meaning 'dissolved in water'. 

Be careful, being dissolved in water is different than 'l' , or liquid. Liquid means a substance is in liquid phase, not dissolved in water.

Answer:

Explanation:

the compound is dissolved in water

How to find the mass number of an atom with 45 neutrons and 35 electrons?

Answers

Mass number = protons + neutrons
protons = electrons
so 35 electrons = 35 protons 

So 35 protons + 45 neutrons =
80

The element is Bromine with the symbol: Br

Final answer:

The atom with 45 neutrons and 35 electrons (and therefore 35 protons) has a mass number of 80,  which is obtained by adding the number of protons and neutrons.

Explanation:

To determine the mass number of an atom with 45 neutrons and 35 electrons, it's important to remember that an atom, in its electrically neutral state, has an equal number of protons and electrons. In this scenario, the atom has 35 protons because it has 35 electrons.

The mass number of an atom is calculated by adding the number of protons and neutrons together. So, for this specific atom, the mass number is calculated as 35 (protons) + 45 (neutrons), which totals 80. This mass number signifies the sum of particles in the atom's nucleus, which plays a fundamental role in defining its chemical properties and behavior.

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Convert the following to Fahrenheit 10 Celsius 30 Celsius 40 Celsius 37 Celsius 0 Celsius

Answers

10 = 50
30 = 86
40 = 104
37 = 98.6
0 = 32
50, 86, 104, 98.6,32

The combustion of propane (c3h8) produces co2 and h2o: c3h8 (g) + 5o2 (g) → 3co2 (g) + 4h2o (g) the reaction of 2.5 mol of o2 with 4.6 mol of c3h8 will produce ________ mol of h2o.

Answers

The answer is 2 mol of H₂O will be produced.
The balanced equation for the chemical reaction is:

c3h8 (g) + 5o2 (g) → 3co2 (g) + 4h2o (g) 
5 moles of O₂ produces 4 moles of H₂O, and when there is 2.5 mol of O₂, moles of H₂O will be:
2.5 x 4/5 = 2 mol of H₂O

Answer:

2mol of [tex]\rm O_2[/tex] with 4.6 mol [tex]\rm C_3H_8[/tex] will produce 2mol [tex]\rm H_2O[/tex].

Explanation:

The given information is:

[tex]\rm \mathbf{C_3H_8+5O_2\rightarrow3CO_2+4H_2O}[/tex]

2mol of [tex]\rm O_2[/tex] with 4.6 mol of  [tex]\rm C_3H_8[/tex] will produce.....mol of [tex]\rm H_2O[/tex]

As we can see hear, 5mol of [tex]\rm O_2[/tex] produce 4 mols of [tex]\rm H_2O[/tex]

Hence, According to the given equation above,

Mols of [tex]\rm\mathbf{ H_2O}[/tex] produced will be,

[tex]\rm 5molO_2\times\frac{4molH_2O}{5molO_2}[/tex]

[tex]\rm 2.5\times\frac{4}{5}=2molH_2O[/tex]

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moving left to right across a row of the periodic table, which of the following values increases by exactly one from element to element?
a. isotope number
b. atomic number
c. atomic mass unit
d. mass number

Answers

b . atomic number .
moving from left to right across a period, atoms become smaller and smaller as the atomic number increases.


Moving left to right across a row of the periodic table, [tex]\boxed{{\text{b}}{\text{. atomic number}}}[/tex]  increases by exactly one from element to element

Further Explanation:

Periodic table:

A systematic arrangement of elements in various rows and columns is known as a periodic table. Here, elements are arranged in increasing order of their respective atomic numbers so that elements with the same chemical and physical properties lie in the same group. Horizontal rows are called periods and vertical columns are called groups. There are 18 groups and 7 periods in a periodic table.

Elements are further classified as metals, non-metals, and metalloids in the periodic table. The elements placed at the left side of the table are called metals and the elements placed at the right of the table are called non-metals. Metalloids are the elements kept between metals and non-metals.

Atomic number is equal to the number of protons present in the nucleus of the atom. In the periodic table, elements are arranged in the increasing order of their atomic numbers so the atomic number increases by exact one unit while moving from left to right in a row.

Atomic mass is the total number of nucleons (protons and neutrons) within the atomic nucleus. It is also known as the mass number. Boron and carbon lie in the same period of the periodic table. Carbon is present to the right of boron. But the mass number of B is 10.8 g while that of C is 12 g. So the mass number does not increase by exactly one unit while moving from left to right in a row.

Atomic mass unit (AMU) is defined as 1/12th mass of a carbon-12 atom. It is used to indicate relative masses of various isotopes. It also does not increase by one unit from left to right in a row.

Atoms of the same element with the same atomic number but different mass numbers are called isotopes. These have the same number of protons but the number of neutrons is different. Isotope number is calculated by the subtraction of number of neutrons and number of protons. It is dependent on both the atomic number and the mass number. As the mass number does not increase by one unit from left to right, isotope number cannot increase by exactly one unit in a row.

Therefore option b is the correct answer.

Learn more:

1. Which ion was formed by providing the second ionization energy? https://brainly.com/question/1398705

2. Write a chemical equation representing the first ionization energy for lithium: https://brainly.com/question/5880605

Answer details:

Grade: High School

Subject: Chemistry

Chapter: Periodic classification of elements

Keywords: periodic table, systematic arrangement, elements, groups, periods, atomic number, isotope number, atomic mass unit, mass number, carbon-12, 12 g, neutrons, protons, nucleons, atomic mass.

A change that occurs when a solid melts or a liquid freezes is an example of a _____ change.

A. chemical
B. phase
C. oxidation
D. molecular

Answers

Salutations!

A change that occurs when a solid melts or a liquid freezes is an example of a _____ change.

A change that occurs when a solid melts or a liquid freezes is an example of a phase. change. A phase change is when one state of matter changes into another state of matter.

Thus, your answer is option B.

Hope I helped :D
The answer would be, a (B.) phase change.

Hope it helps.

Give the name of the "lightest" element (has atoms of lowest mass) in group 1a.

Answers

The periodic table of elements is ordered by atomic weight from the top left to the bottom right. Each column is assigned a group, they can be either A groups or B groups. To determine the lightest element in the 1A group, locate the 1A column, at look at the top most element. In this case, H, hydrogen.

Spring tides occurred at two of the times shown.Which two? How do you know?

Answers

What are the times shown??? I can help

What properties are those that describe what happens when a substance reacts with another substance? catalyst properties chemical properties physical properties mineral properties?

Answers

Answer:

Chemical properties,

Explanation:

Let us understand all the given terms

a) catalyst properties: this is the property of a substance by virtue of which it helps to modulate the rate of reaction, and itself remains unconsumed during the reaction (does not react). Example : enzymes

b) chemical properties: this is the property of a substance by virtue of which it reacts with another substance to give a new product of different structure, bonding, chemical and physical properties.

Example : hydrogen reacts with oxygen to give water.

So here the hydrogen is undergoing reaction with oxygen and this is chemical property of hydrogen.

c) Physical properties: This is the property which is related to the nature of a substance to exit in nature. for example hydrogen is a gas is its physical property not chemical.

d) mineral properties: It  is again a kind of physical property.

A blacksmith melts and shapes a block of iron into a blade. She then sets the blade, whose edges are molten, outside, where it is raining slightly. The blade's outer edges both solidify and then rust. Which of the following has happened to the iron throughout the day? a. The iron has undergone a physical change only. b. The iron has undergone a chemical change only. c. The iron has undergone both a physical and chemical change. d. The iron has not undergone any changes.

Answers

The answer is C due to the rain making contact with the iron it creates moisture which cause the iron to begin oxidizing which causes the iron to rust which is a chemical reaction then the blade which was once malleable because it was heat becomes harden and rust is created as I said before the physical aspect of the iron chances due to rust developing on it it's no longer has the luster it once had

Answer:

The correct answer is option c.

Explanation:

A physical change is defined as  a change in shape, size takes place. No new substance gets formed in these reactions.

Solid iron block → liquid iron

Liquid iron → solid blade shaped iron

Here, iron in first melted and then set into a shape of blade. Hence, physical change.

A chemical change is defined as a change in chemical composition takes place. A new substance is formed in these reactions.

Here, rusting of iron is chemical change:

[tex]Fe(s)+O_2(g)\righarrow Fe_2O_3(s)[/tex]

Throughout the entire process blacksmith has changed the iron block physically by changing its size and shape. And due to action of raining in the edges of the blade rusting of an iron also took place which was a chemical change.

Give two reasons why scientists use the scientific method

Answers

they use it because it's standerize and evidence vase

what would dissolved the best in oil a. sugar b. salt c. water d. grease

Answers

Answer:

grease

on apex

Explanation:

Salt is the proper response to this query. The greatest option for emulsifying in oil is salt because of its molecular makeup. Sodium and chloride are the two components that make up salt molecules.

What kind of n molecule is sodium ?

The molecule's sodium component is hydrophilic, attracted to water, and its chloride component is hydrophobic, repelling it. Due to the hydrophobic portion of the molecule's unusual structure, which is attracted to the oil while the hydrophilic portion is repelled by it, salt can dissolve in oil.

In contrast, the atoms that make up sugar molecules are carbon, oxygen, and hydrogen. All of these atoms are hydrophilic, which means they are drawn to water. Because the hydrophilic atoms are rejected, sugar molecules won't dissolve in oil as a result.with the oil. In addition, non-polar molecules make up both water and grease.

Since non-polar molecules do not attract water or oil, neither will dissolve them. Therefore, due to its distinct molecular structure, salt is the greatest option for dissolving in oil.

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C-12, c-13, and c-14 have the same number of protons but different numbers of neutrons so they are

Answers

Atoms with the same number of protons, but different numbers of neutrons are isotopes of the same element.

The equation below represents the overall cell reaction for an electrochemical cell that undergoes a spontaneous reaction. Fe(s) + Pb2+(aq) mc011-1.jpg Fe2+(aq) + Pb(s) Emc011-2.jpgcell = –0.31 V Which reaction is the spontaneous reduction reaction? Fe(s) mc011-3.jpg Fe2+(aq) + 2e– Emc011-4.jpg = –0.44 V Fe(s) mc011-5.jpg Fe2+(aq) + 2e– Emc011-6.jpg = +0.44 V Pb2+(aq) + 2e– mc011-7.jpg Pb(s) Emc011-8.jpg = –0.13 V Pb2+(aq) + 2e– mc011-9.jpg Pb(s) Emc011-10.jpg = +0.13 V

Answers

its b Fe(s)  Fe2+(aq) + 2e–        E = +0.44 V

Answer:

Pb2+(aq) + 2e– ------------>Pb(s) = –0.13 V

Explanation:

Given the question asked, we have to examine the reduction potentials of Fe2+ and Pb2+.

Fe2+= -0.44V

Pb2+= -0.13V

Recall that the moire negative the reduction potential of a species, the less likely it is to participate in spontaneous reduction reactions.

From the data before us, Pb2+ will undergo a spontaneous reduction reaction as shown in the answer.

Would flame tests be useful for detecting metal ions present in a mixture of metal ions? explain.

Answers

Flame test would be useful for detecting metal ions because each metal ion has its own properties, and when there are many metal ions we can distinguish each metal ion by using or performing flame test.
As in flame test we can distinguish metal ions by there different colors of flames and the color of flames also depends on the temperature factor. And also not all metal ions gives colored flames so sometimes we failed to detect metal ions that are present in a mixture and if there is a very small quantity of metal ions are in a mixture, that is also a problem to detect that.
Final answer:

Flame tests can be useful for identifying individual metal ions through the unique colors they emit, but they have limitations when dealing with mixtures where emission spectra might overlap. For complex mixtures, a qualitative analysis with successive steps is more effective.

Explanation:

Flame tests can be useful for detecting metal ions in a mixture, as different metal ions will emit different wavelengths of light when they return to their ground states, producing varying flame colors. However, this method has its limitations as the flame colors from a mixture of metal ions might overlap and make it difficult to distinguish between them. In the case of a complex mixture, a qualitative analysis through successive precipitation would help in identifying the metal ions by gradually eliminating ions in various steps.

Moreover, specific metals known as alkali metals or alkaline earth metals, such as calcium, strontium, and barium, impart unique colors to the flame, aiding in their identification. For example, calcium and strontium produce shades of red, while barium produces a green color. These distinct emissions form part of the emission spectrum of the elements and can be used to identify them.

describe a physical change in which a substance appears to change chemically

Answers

Thanks for the question!

An example would be ice melting into water. It looks like it changes chemical composure, but it doesn't.

Hope this helps!

Which of the following will occur soon after a population of prey increases slightly in size?

A) Predator population will remain the same.
B) Predator population will decrease greatly.
C) Predator population will decrease slightly.
D) Predator population will increase greatly.
E) Predator population will increase slightly.

Answers

It is E. because the predators will have slightly more meals with their prey slightly increasing population.

Answer: Option E

Explanation:

The role of nature is that predators eat prey. They serve as food for the predators. If there is a increase in the size of the prey population then there will be increase in the size of predators.

Example: The lions feed on the rabbit for the its energy needs. If the size of rabbits will increase then the there will be a slight increase in the population of the lions as there will be a proper supply of food for them.

hence, the correct answer is option E

Lithium (Li), Sodium (Na) and Potassium (K) are all in the same
(A)Period
(B)Row
(C)Group

Answers

The answer would be C) Group and that group would be the Alkali Metals group.

Answer:

It would be B) 1.

Explanation:

How do the sizes of atoms change as we move from left to right across a row in the periodic table?

Answers

The size of atoms decreases as you move from left to right in the Periodic table.

Chromium III monohydrogen phosphate formula

Answers

Chromium(III) phosphate is an inorganic compound with the chemical formulaCrPO4.

The chemical formula for Chromium(III) Monohydrogen Phosphate is Cr(H2PO4)3.

Explanation:

Chromium(III): Chromium is a transition metal with multiple oxidation states, and in this compound, it exists in its +3 oxidation state, denoted as III.

Monohydrogen Phosphate: The term "monohydrogen" indicates that there is one hydrogen ion (H+) associated with the phosphate ion ([tex]PO4^{3-}[/tex]). The phosphate ion, [tex]PO4^{3-}[/tex], is a polyatomic ion consisting of one phosphorus atom (P) and four oxygen atoms (O). In this compound, each phosphate ion has one hydrogen ion associated with it.

Therefore, the compound is named Chromium(III) Monohydrogen Phosphate because it contains Chromium in the +3 oxidation state bonded to phosphate ions with one hydrogen ion attached to each phosphate ion.

This compound's chemical formula, Cr(H2PO4)3, accurately represents its composition, indicating the number and types of atoms present. It is important to use parentheses to indicate that the hydrogen phosphate group (H2PO4) is bonded to the chromium ion (Cr). This notation ensures clarity and accuracy in chemical formulas.

Thus, the chemical formula for Chromium(III) Monohydrogen Phosphate is Cr(H2PO4)3.

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Why do electrons occupy equal energy orbitals singly before beginning to pair up?

Answers

Because, electrons are negatively charged and, as a result, they repel each other. Electrons tend to minimize repulsion by occupying their own orbital, rather than sharing an orbital with another electron.

The first rule states that before pairing up, electrons will always occupy an empty orbital. Because they are negatively charged, electrons repel one another. By filling their own orbital rather than sharing one with another electron, electrons tend to reduce repulsion. The electrons in singly occupied orbitals are also less effectively screened or insulated from the nucleus, according to quantum-mechanical calculations.

Unpaired electrons in singly occupied orbitals have the same spins according to the second rule. Electrons collide less frequently if they are all orbiting in the same direction than if some of them are doing so. The latter scenario results in the separation of electrons as the repulsive force grows. As a result, aligned spins have less energy.

Because, electrons are negatively charged and, as a result, they repel each other. Electrons tend to minimize repulsion by occupying their own orbital, rather than sharing an orbital with another electron.

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Final answer:

Electrons occupy equal energy orbitals singly before pairing up to minimize repulsion and conserve energy, following Hund's Rule. This is energetically more favorable due to the pairing energy required for electrons to share the same orbital.

Explanation:

The reason electrons occupy equal energy orbitals singly before beginning to pair up is due to an atomic rule known as Hund's Rule. This rule states that electrons will fill each degenerate orbital singly to maximize the number of unpaired electrons, which results in a lower energy state for the atom. This behavior is similar to how magnets behave; negatively charged electrons repel each other and try to stay as far apart as possible. This phenomenon is due to the pairing energy (P), which is the energy required to pair two electrons in a single orbital. Since electrons repel each other, it takes energy to overcome their repulsion and pair them up.

When filling up d orbitals or any set of degenerate orbitals, electrons will occupy each orbital singly before they start to pair. This minimizes repulsion between the electrons, which in turn conserves the energy that would otherwise be needed for two electrons to share the same orbital space. The tendency of an atom is to maintain the lowest energy level, which is why this filling process occurs. Additionally, the relative magnitudes of the pairing energy and the ligand field splitting energy (Aoct) determine the exact distribution of electrons in the orbitals.

Which monatomic ions would you expect radium (z = 88) and selenium (z = 34) to form?

Answers

1) Radium will form Ra²⁺ ions, because it is metal with two valence electrons (7s²) and it will lost two electrons to have electric configuration like noble gas radon (Z=86).

Electroic configuration of radium atom:

₈₈Ra 1s²2s²2p⁶3s²3p⁶3d¹⁰4s²4p⁶4d¹⁰4f¹⁴5s²5p⁶5d¹⁰6s²6p⁶7s².

2) Selenium wil form Se²⁻ ions, because it is nonmetal and it has six valence electrons (4s²4p⁴), it will gain two electrons to have electron configuration like noble gas krypton (Z=36).

Electronic configuration of selenium atom: ₃₄Se 1s²2s²2p⁶3s²3p⁶3d¹⁰4s²4p⁴.

Final answer:

Radium typically loses 2 electrons to form Ra2+ ion, while Selenium typically gains 2 electrons to form Se2- ion. Thus, Ra2+ and Se2- are their respective monatomic ions.

Explanation:

Radium (Z = 88) is in group 2 of the periodic table and therefore tends to lose 2 electrons to form Ra2+ (Radium ion) to achieve a stable electron configuration. Selenium (Z = 34), on the other hand, is in group 16 of the periodic table and therefore it typically gains 2 electrons to form Se2- (Selenium ion) to reach a stable electron configuration similar to the nearest noble gas. These ions, Ra2+ and Se2- are monatomic ions because they consist of only one atom.

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explain calcination and roasting

Answers

Calcination use temperatures roughly twice that of typical roasting. The main idea is to use high temperatures and decompose the material being heated fairly faster. Roasting tries to changes the food products by starting and supporting a number of chemical reactions within the food that results in pleasant flavor, greater availability of certain ingredients. 

Calcination and roasting are processes used in metallurgy to convert ores into a more useful form. Calcination involves heating a substance to remove volatile impurities, while roasting is the process of heating an ore to decompose sulfides and remove impurities.

Calcination and roasting are both processes used in metallurgy to convert ores into a more useful form.

Calcination involves heating a substance in the presence of air or oxygen, which leads to the removal of any volatile impurities, such as water or carbon dioxide, and the conversion of carbonates into oxides. This process is commonly used in the production of lime and cement.

Roasting, on the other hand, is the process of heating an ore in the presence of excess air or oxygen.

This allows the decomposition of sulfides into oxides and the removal of any volatile impurities.

Roasting is often used in the extraction of metals, such as iron, where the ore is heated to convert it into a more suitable form for further processing.

How many trophic levels can monkeys occupy in a food chain? Aone, because they eat only plants B: one, because they feed only on flesh C: two, because they eat plants and insects D: one, because they are producers of food

Answers

i think the answer would be c . correct me if im wrong 

Answer: Option C

Explanation:

A monkey can occupy two tropic level in a food chain. These two levels can be primary consumers or secondary consumers.

Monkeys are omnivores and they can eat meat and plant based food. Some of the monkeys can also eat eggs of bird.

If monkey will eat plants they will occupy a place of primary consumer and if it will eat meat then it be considered as secondary consumer.

hence, correct answer is option C

What observations can be made with electron microscopes that could be made before?

Answers

Electron microscopes can magnify objects to 10,000,000x the smallest object that can be viewed is larger than an electron. Electron microscopes can improve the resolution that is achieved by light microscopes. Entire cells can be viewed and their components.

What is the difference between chemical properties and physical properties kid?

Answers

The difference between physical and chemical properties:

Physical properties are what you can see or feel, for instance, color or texture of an object whilst chemical properties describe how a substance behaves during a chemical reaction (note that we cannot see it, the substance has to actually change its form for us to be able to see the chemical properties).
Final answer:

Chemical properties describe how a substance can change into different substances during a chemical reaction, while physical properties can be measured without changing the substance's chemical identity.

Explanation:

Chemical properties describe a substance's capacity to undergo certain chemical transformations that result in different substances. These properties, such as flammability and reactivity with water, are only observed when a substance undergoes a chemical change. On the other hand, physical properties can be observed or measured without changing the chemical identity of the substance. These include properties like mass, color, volume, and density. For instance, pure copper has the physical property of being a reddish-brown solid, whereas its ability to dissolve in dilute nitric acid to produce a blue solution and a brown gas is a chemical property.

In a nucleotide, we find which other biomolecule(s) making up a piece of the nucleotide itself?

Answers

In a nucleotide, we find CARBOHYDRATE making up a piece of the nucleotide itself. An example of the type of carbohydrate found in nucloetides is de-oxy ribose. Deoxyribose is a five carbon sugar {pentose} which is part of the building blocks of nucleotide.
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