All of the following species are isoelectronic except
a. S2-.
b. Ar.
c. Ca2+.
d. Cl-.
e. Mg2+.

Answers

Answer 1

Two or more species that have the same number of electrons and are called isoelectronic. Therefore, in order to determine which species are isoelectronic, one must count the number of electrons in each species.

The correct answer is e. Mg2+.

Then, one can compare the number of electrons to determine which species are isoelectronic and which are not. The electron configuration of each species is shown below.S2-: 1s22s22p63s23p6Ar: 1s22s22p63s23p6Ca2+: 1s22s22p63s23p6Cl-: 1s22s22p63s23p6Mg2+: 1s22s22p6Only the Mg2+ ion has two fewer electrons than the other species.

The electron configuration of each species is shown below.S2-: 1s22s22p63s23p6Ar: 1s22s22p63s23p6Ca2+: 1s22s22p63s23p6Cl-: 1s22s22p63s23p6Mg2+: 1s22s22p6Only the Mg2+ ion has two fewer electrons than the other species. Therefore, Mg2+ is not isoelectronic with the other species.

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Related Questions

The car has a rechargeable battery to drive it’s motor. The rechargeable battery provided a potential difference of 330 volts and can store up to 64 mega Jules it takes 8 hours for the battery to receive a full charge assume that the charging process is 100% efficient calculate the total charge the flows while the battery is being charged

Answers

The total charge that flows while the battery is being charged is approximately 193,939.39 Coulombs.

To calculate the total charge that flows while the battery is being charged, we can use the relationship between electrical energy, potential difference, and charge.

The electrical energy (E) stored in the battery is given as 64 mega Jules (64 MJ). The potential difference (V) provided by the battery is 330 volts. We know that the energy (E) is equal to the product of the potential difference (V) and the charge (Q):

E = V * Q

Since the charging process is 100% efficient, all the electrical energy supplied is stored in the battery. Therefore, we can rearrange the equation to solve for the charge (Q):

Q = E / V

Substituting the given values, we have:

Q = 64 MJ / 330 V

To perform the calculation, we need to convert mega Jules (MJ) to joules (J) since the SI unit of energy is joules. One mega Joule is equal to 1 million joules:

Q = (64 * 10^6 J) / 330 V

Calculating the division:

Q ≈ 193,939.39 Coulombs

Therefore, the total charge that flows while the battery is being charged is approximately 193,939.39 Coulombs.

This value represents the quantity of electric charge transferred during the charging process, and it indicates the amount of electricity that enters the battery.

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Help I really need help and don't search it on go.ogle this is a school assignment and i can get in trouble thank you sm :)

Based on your research of nuclear energy thus far, how do you feel about the use of nuclear fission as a source of energy?

Answers

Answer:

Nuclear fission is almost 5 times times more efficient than traditional fossil fuels at producing energy. That's a lot of energy packed into a small space. Nuclear energy is more efficient, which means it uses less fuel to power the plant and produces less waste.

Explanation:

Which two options are examples of chemical changes? A. A white powder mixed with a clear, colorless liquid makes a solution that is also a clear, colorless liquid. B. When two clear, colorless liquids are mixed together, a white solid forms. O C. A shiny metal bar glows red and expands when heated. D. A white piece of paper turns black and gives off a smell when burned.​

Answers

Answer: B. When two clear, colorless liquids are mixed together, a white solid forms.

D. A white piece of paper turns black and gives off a smell when burned.​

Explanation:

A. A white powder mixed with a clear, colorless liquid makes a solution that is also a clear, colorless liquid. B. When two clear, colorless liquids are mixed together, a white solid forms. O C. A shiny metal bar glows red and expands when heated. D. A white piece of paper turns black and gives off a smell when burned.​

Which two options are examples of chemical changes? A. A white powder mixed with a clear, colorless liquid

When two clear, colorless liquids are mixed together, a white solid forms. A white piece of paper turns black and gives off a smell when burned.​ These two options are examples of chemical changes.

What is chemical change ?

Chemical change, or, alternatively, chemical breakdown into two or more separate molecules, occurs when one material reacts with another to create a new substance. These processes are referred to as chemical reactions, and they are typically irreversible barring additional chemical reactions.

A chemical transformation is one in which one or more new compounds are created. Chemical reactions are another name for a chemical transformation. Examples include burning any stuff and iron rusting.

Chemical synthesis, or, alternatively, chemical breakdown into two or more separate molecules, occurs when one material reacts with another to create a new substance. These processes are referred to as chemical reactions, and they are typically irreversible barring additional chemical reactions.

Thus, option B and D are correct.

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Question 7 of 25
The diagram shows the direction trade winds blow below and above the
equator. What causes the trade winds to move at an angle rather than straight
toward the equator?
for Easterlies

Question 7 of 25The diagram shows the direction trade winds blow below and above theequator. What causes

Answers

Answer:

A. The Coriolis Effect bends them

Explanation:

The Coriolis Effect is a force that causes objects and other things that are not attached to the ground and which are moving over a large distance around the Earth such as the trade winds or air planes, to take an apparent curved path in their motion rather than moving in a straight line, due mainly to the rotation of the Earth

The Coriolis Effect is named after French mathematical physicist Gaspard-Gustave de Coriolis

Describe in terms of atoms what happens when hydrogen and oxygen reacts to make water

Answers

Answer:

New covalent bonds form between oxygen atoms and hydrogen atoms.

Explanation:

For example, when hydrogen gas, H2(g), is burned in the presence of gaseous oxygen, O2(g), a new substance, liquid water, H2O(l ), forms. The covalent bonds within the H2 molecules and O2 molecules break, and new covalent bonds form between oxygen atoms and hydrogen atoms (Figure 7.1).

Suppose you want to search for high-redshift star-forming galaxies using a telescope equipped with a spectrograph able to measure the entire optical spectrum (400-700 nm). Star-forming galaxies contain copious hydrogen gas, from which stars form. Some of this gas will be ionized by the newly-formed stars; the spectra of star-forming galaxies there exhibit bright hydrogen lines in emission. Light from the newly-formed stars is absorbed by neutral hydrogen gas as it passes through the galaxy. a) If you wish to search for Lyman-a emitting galaxies, over what redshift range can you find such galaxies? [3 points] b) If you detect only one line, you cannot be certain that this line is the Lyman-a line, and hence that the galaxy is indeed at the computed redshift. Assuming you can also observe in the infrared (wavelengths >700 nm), how can you change your strategy to make sure that the line you detect is really the Lyman-a line? Give three examples of how you can increase confidence in the correct identification of the Lyman-a line considering only hydrogen gas. [3 points] c) Limited only to optical wavelengths and considering only hydrogen gas, what strategy should you adopt to be certain that the line you detect is really the Lyman-a line while maximizing the redshift range over which you find galaxies? With this strategy, over what redshift range can you find star-forming galaxies? Justify through appropriate computations and reasoning that this is in fact the optimal strategy for maximizing the redshift range of your search. [10 points] d) Apart form hydrogen emission lines, star-forming galaxies also usually exhibit bright [OIII] forbidden lines. Why can such lines be seen from interstellar gas but not the Earth's atmosphere or in the laboratory? [4 points]

Answers

a) The maximum observable range of redshifts that produces Lyman-alpha line is 0 ≤ z ≤ 10.6

b) i) identifying the galaxy with a radio source, ii) looking for other Lyman lines, iii) a coincidence with a continuum break

c)The maximum redshift range over which galaxies can be found using this strategy is z = 7 to z = 15.5.

d)Earth's atmosphere absorbs the radiation, and the laboratory conditions are not the same as interstellar conditions.

a) Lyman-alpha line is produced by the hydrogen atoms that have electrons that are in the ground state being raised to the first excited state. Over a certain range of redshifts, the Lyman-alpha line is redshifted to longer wavelengths that are observable by an optical spectrograph. The maximum observable range of redshifts that produces Lyman-alpha line is 0 ≤ z ≤ 10.6 (depending on the exact details of the galaxy's emission profile).

b) Observing the galaxy in the infrared can help in the identification of the Lyman-alpha line as it is shifted to longer wavelengths. Three ways to increase confidence in the correct identification of the Lyman-alpha line are:

i) identifying the galaxy with a radio source, ii) looking for other Lyman lines, iii) a coincidence with a continuum break.

c) The strategy that needs to be adopted is to look for the Lyman limit, which is the point at which the spectrum is cut off by the absorption of all hydrogen in the galaxy. To be certain that the line you detect is the Lyman-alpha line, you need to look for a decrement in the flux of the galaxy at wavelengths shorter than the line and a decrement in the flux at wavelengths longer than the line. This is because the Lyman limit will be shifted to longer wavelengths at higher redshifts, so to maximize the redshift range over which galaxies can be found, you need to search for the Lyman limit at the longest wavelength possible. The maximum redshift range over which galaxies can be found using this strategy is z = 7 to z = 15.5.

d) The reason why such lines can be seen from interstellar gas but not the Earth's atmosphere or in the laboratory is that the Earth's atmosphere absorbs the radiation, and the laboratory conditions are not the same as interstellar conditions. The forbidden lines from the interstellar gas are not affected by dust absorption because they are produced in regions where dust is not present.

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what is the correct terms for atom with a full valence shell?​

Answers

Answer:

octet rule

Explanation:

13. Kelly is the dishes and decides to unfortunately wash her mother cast iron skillet by placing it in a sink full of water. After she's done washing it and leaves it to dry on the rack, she notices it's starting to turn weird colors. After first she thinks nothing of it until her mom calls her to the kitchen a day later as she's putting the dishes up. She is holding the iron skillet and she looks very upset. She shows Kelly how the iron has changed colors and tells her the skillet is ruined. What happened to the iron skillet considering if this is a physical or chemical property and which of the Metal VS Nonmetal properties has taken place?

Answers

Answer:

The skillet got rusted.

Explanation:

In the context, Kelly kept the iron skillet in the sink which is full of water. After washing the dishes, she noticed the skillet's color is starting to change. She kept it for dry on the rack but the day later the skillet was ruined and damaged.

It was a chemical and physical change in the property of the metal where the iron skillet which was kept in the sink full of water oxidized due to the water content and the iron got oxidized to form form iron oxide which is known as rust. It damages the utensil and the color changes to muddy red or brownish red.

Write in standard notation 6.078 x 10 expo 3

Answers

Answer:

6078

Explanation:

as a plant roots grow they produce weak acids that slowly dissolve rock around the roots. lichens plant like organisms that grow on rocks also produce weak acids

Answers

Both plant roots and lichens have the ability to produce weak acids that slowly dissolve rock in their immediate surroundings.

Plant roots secrete weak acids, such as organic acids, as a part of their growth process. These acids aid in the breakdown of minerals in the soil, facilitating the uptake of essential nutrients by the plants. As roots grow and extend into the soil, the weak acids they release can gradually dissolve minerals present in the rocks surrounding them. Over time, this process can contribute to the weathering and erosion of the rock material.

Similarly, lichens, which are symbiotic organisms consisting of a fungus and an alga or a cyanobacterium, also produce weak acids. Lichens can grow on rocks and other substrates, utilizing their acid-producing capabilities to extract nutrients and minerals from the rocks. The weak acids they release can slowly break down the mineral content of the rocks, contributing to physical and chemical weathering.

Both plant roots and lichens play a role in the process of bioerosion, where living organisms contribute to the breakdown and alteration of rocks. Their production of weak acids enables them to interact with and modify their surrounding environment, albeit on a relatively slow timescale.

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what is the metal that is grouped with metalloids

Answers

Answer:

The post-transition metals cluster to the lower left of this line. Metalloids: The metalloids are boron (B), silicon (Si), germanium (Ge), arsenic (As), antimony (Sb), tellurium (Te) and polonium (Po). They form the staircase that represents the gradual transition from metals to nonmetals.

Explanation: i googled it

The metal that is grouped with metalloids are

boron, silicon, germanium,arsenic, antimony, and tellurium.

A metalloid is a type of element which possesses the characteristics of both the metals and the non-metals.

Metals are those elements that are good conductors of heat and electricity while non-metals are those elements that neither conducts heat nor electricity.

The characteristics of the metalloids listed above are:

They conduct heat only at higher temperatures.

The metalloids that can conduct electricity are called semi-conductors.

They are shiny like metals but brittle like non-metals.

Therefore, since these elements share both the properties of metals and non-metals, they are called the metalloids.

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Tienen capacidad de fijar enerjgia luminosa utilizando agua y co2 para transformarlo en carbohidratos

Answers

Answer:

las plantas

Explanation:

Las plantas son los seres vivos capaces de transformar energía luminosa utilizando agua y dióxido de carbono (CO₂) en energía química en forma de moléculas llamadas carbohidratos. El proceso a través del cual realizan esto se denomina fotosíntesis, y para ello requieren un pigmento de color verde denominado clorofila, el cual es necesario para captar la energía luminosa proveniente del Sol.

True or False: The moon's gravity affects the oceans nearest the moon because the moon's gravity pulls water into a tidal bulge.

Answers

Answer: The moon's gravitational pull generates something called the tidal force. The tidal force causes Earth—and its water—to bulge out on the side closest to the moon and the side farthest from the moon. These bulges of water are high tides

Explanation:

The moon's gravity affects the oceans nearest the moon because the moon's gravity pulls water into a tidal bulge is a true statement.

What is tidal force?

The tidal force is the result of the moon's gravitational pull.

The tidal force causes Earth—and its water—to bulge out on its closest and furthest sides from the moon. High tides cause these water bulges.

Thus, the statement is correct.

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what is the degree of substitution of the following alkene? question 20 options: monosubstituted disubstituted trisubstituted tetrasubstituted

Answers

The degree of substitution of an alkene refers to the number of substituents attached to the carbon atoms in the double bond. In this case, you haven't provided any specific alkene, so I cannot determine the degree of substitution. However, I can explain the options you mentioned.

Monosubstituted means one substituent is attached to each carbon atom of the double bond. Disubstituted means two substituents are attached to each carbon atom. Trisubstituted means three substituents are attached to each carbon atom. Tetrasubstituted means four substituents are attached to each carbon atom.

To determine the degree of substitution, you need to identify the alkene and count the number of substituents attached to each carbon atom of the double bond.

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Which element below is Shiny, good conductor of heat and electricity, malleable and ductile? *
1 point
Chlorine
Nitrogen
Magnesium
Neon

Answers

Answer:

magnesium

Explanation:

it is the only metal in the choices. everything else is on the right side of the old line that separates metals and nonmetals on the PPT. nonmetals aren't, shiny or good conductors or malleable or ductile.  only metals can have those qualities. the only metal is magnesium

In an ionic compound, the size of the ions affects the internuclear distance (the distance between the centers of adjacent ions), which affects lattice energy (a measure of the attractive force holding those ions together).
Based on ion sizes, rank these compounds of their expected lattice energy.
Note: Many sources define lattice energies as negative values. Rank by magnitude and ignore the sign.
Lattice energy = absolute value of the lattice energy.
Greatest |lattice energy| (strongest bond)
least |lattice energy| (strongest bond)
MgBr_2, MgF_2, MgCl_2, MgI_2

Answers

The compounds ranked by their expected lattice energy from greatest to least are: MgF_2, MgCl_2, MgBr_2, MgI_2.

Lattice energy is a measure of the energy released when gaseous ions come together to form an ionic solid. It is influenced by factors such as ion charge and ion size. In general, as the charges of the ions increase, the lattice energy also increases. However, when comparing ions with the same charge, the size of the ions becomes the determining factor.

In the given compounds, the common ion is Mg_2+ (with a +2 charge), while the anions are F-, Cl-, Br-, and I-. Among these anions, fluoride (F-) has the smallest ionic radius, followed by chloride (Cl-), bromide (Br-), and iodide (I-). Smaller ions have a higher charge density, meaning the positive charge is concentrated in a smaller space, leading to stronger attractive forces between the ions.

Therefore, based on ion size, the compound with the greatest expected lattice energy is MgF_2, followed by MgCl_2, MgBr_2, and MgI_2, with MgF_2 having the strongest bond and MgI_2 having the weakest bond.

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How many half-lives have passed if a rock contains 25% parent isotopes and 75% daughter isotopes?.

Answers

If a rock contains 25% parent isotopes and 75% daughter isotopes it means two half lives has passed.

Two half lifetimes have passed if a rock has 25% parent isotopes and 75% daughter isotopes.

A radioactive isotope's half-life is the period of time it takes for half of its atoms to experience nuclear decay and change into its daughter isotope. The amount of time needed for this decay to occur varies for each radioactive isotope.

Only 25% of the original parent atoms are left after two half-lives since 75% of them have been converted into daughter products. Only 12.5% of the original parent atoms are still present after three half-lives.

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F2(g)+2Br(aq)=Br(t)+F(aq)
which species is redused?
a)F
b)Br
c)F2
d)Br2

Answers

The Answer For Your Question is:

A) F

a sample of an ideal gas has a volume of 3.55 l at 14.20 ∘c and 1.50 atm. what is the volume of the gas at 18.00 ∘c and 0.992 atm?

Answers

The volume of the gas at 18.00 ∘C and 0.992 atm is 4.86 L.

To solve this problem, we will use the ideal gas law, which states that PV = nRT, where P is the pressure, V is the volume, n is the number of moles, R is the gas constant, and T is the temperature in Kelvin.

First, we need to convert the initial temperature to Kelvin by adding 273.15. Therefore, the initial temperature is 287.35 K.

Next, we can calculate the number of moles of gas using the given information. We can rearrange the ideal gas law to solve for n: n = (PV)/(RT). Plugging in the values, we get:

n = (1.50 atm)(3.55 L) / [(0.08206 L·atm/mol·K) (287.35 K)] = 0.194 mol

Now we can use the ideal gas law again to find the final volume. We can rearrange the ideal gas law to solve for V:

V = (nRT)/P

First, we need to convert the final temperature to Kelvin by adding 273.15. Therefore, the final temperature is 291.15 K.

Plugging in the values, we get:

V = (0.194 mol)(0.08206 L·atm/mol·K)(291.15 K) / 0.992 atm = 4.86 L

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Margerie is performing a reaction in her chemistry lab. She combines two liquid
reactants and heats them up. When the two reactants combine, they form a new
compound and none of the reactants are left over. This product is a liquid with a slightly
different color.Is the new product that Margerie made a mixture?
No, because the two original reactants cannot be separated through physical means after the
reaction.
O Yes, because she combined two liquids and made a new product that is evenly mixed.
O No, because she used heat instead of just stirring the mixture.
Yes, because there was a color change.

Answers

The new product that Margerie made was a mixture because of option B. Yes, because she combined two liquids and made a new product that is evenly mixed.

A mixture is a material made of two or extra one-of-a-kind chemical substances which aren't chemically bonded. A combination is a bodily aggregate of extra substances in which the identities are retained and blended within the shape of solutions, suspensions, and colloids.

A combination consists of one or more natural materials in varying compositions. There are two sorts of mixtures: heterogeneous and homogeneous. Heterogeneous mixtures have visually distinguishable components, even as homogeneous combos appear uniform all through.

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what is the equivalent weight of sodium trioxocarbonate (IV) in the reaction between Hydrochloric acid and sodium trioxocarbonate (IV)?

Correct answer gets brainliest. This is urgent.

Answers

Answer:

Standard acid-base reaction in two stages:

Na2CO3 + HCl → NaHCO3 +NaCl

NaHCO3 + HCl → NaCl + CO2 + H2O

If only a small quantity of acid is added (and the overall solution remains above pH 7), the reaction would stop at stage 1 and you’d be left with an aqueous solution of sodium chloride and sodium bicarbonate. Adding more acid would lead to the bicarbonate being converted to carbon dioxide and water, with the CO2 coming out of solution as a gas and more sodium chloride being produced.

FILL IN THE BLANK An electrolytic capacitor is often used to store ____ at ____.

Answers

An electrolytic capacitor is often used to store large amount of charge at low voltages.

A capacitor stores electrical energy by distributing charged particles on two plates to generate a potential difference.

Electrolytic capacitors are better than batteries as they can be charged or discharged at a very rapid rate. This is because the electrolytic capacitors have very low resistance.

Electrolytic capacitors are also called as polarized capacitor, that is the voltage applied to the terminals must have the right polarity.

The electrical conductivity of the capacitor increases with increase in temperature and decreases with decrease in temperature.

Therefore, an electrolytic capacitor is often used to store large amount of charge at low voltages.

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Which claim about x-rays is correct?A:There is an increased risk of a fetus developing leukemia if exposed to x-rays.B:Human-made x-rays are more harmful than naturally occurring x-rays.C:Medical x-ray technology is not regulated by any federal agencies.D:Modern medical x-rays use stronger radiation than earlier types.

Answers

The correct claim about x-rays is option D: Modern medical x-rays use stronger radiation than earlier types.

Explanation:

A: There is an increased risk of a fetus developing leukemia if exposed to x-rays. This claim is incorrect. While high doses of radiation, including x-rays, have been associated with an increased risk of cancer development, the risk to a fetus from diagnostic x-rays is generally considered very low, and the benefits of necessary medical imaging usually outweigh the potential risks.

B: Human-made x-rays are more harmful than naturally occurring x-rays. This claim is incorrect. X-rays are a form of electromagnetic radiation, and both naturally occurring and human-made x-rays have the same properties. The potential harm of x-rays depends on the dose and the specific circumstances of exposure, rather than the source.

C: Medical x-ray technology is not regulated by any federal agencies. This claim is incorrect. In the United States, medical x-ray technology is regulated by federal agencies such as the Food and Drug Administration (FDA) and the Nuclear Regulatory Commission (NRC). These agencies establish guidelines and standards to ensure the safe use of medical imaging equipment and the proper training of healthcare professionals.

D: Modern medical x-rays use stronger radiation than earlier types. This claim is correct. Over time, advancements in technology have allowed for the development of more efficient and precise medical imaging techniques. These advancements often involve the use of higher energy x-ray beams or enhanced imaging capabilities, which can result in higher radiation doses compared to earlier types of x-ray machines. However, it's worth noting that modern medical practices aim to minimize radiation exposure and follow the principle of ALARA (As Low As Reasonably Achievable) to ensure patient safety.

Therefore, option D is the correct claim about x-rays.

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discuss how a change in na+ or k+ conductance would affect the resting membrane potential.

Answers

The decrease in Na+ conductance would hyperpolarize the membrane potential, while a decrease in K+ conductance would depolarize it.

The resting membrane potential (RMP) of a neuron is the electrical charge difference between the inside and outside of the cell, typically around -70 millivolts. The RMP is determined by the balance of ion fluxes across the neuronal membrane, particularly the fluxes of sodium (Na+) and potassium (K+) ions.

An increase in Na+ conductance would lead to an influx of positively charged Na+ ions into the cell, which would make the interior of the cell more positive, resulting in depolarization of the membrane potential. On the other hand, an increase in K+ conductance would result in an efflux of positively charged K+ ions out of the cell, leading to hyperpolarization of the membrane potential.

Therefore, an increase in Na+ conductance would shift the resting membrane potential towards a more positive value, while an increase in K+ conductance would shift the resting membrane potential towards a more negative value.

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In which of the following situations is a plant reproducing sexually?

Answers

Answer:

(ANSWER CHOICES ORDER MAY BE DIFFERENT FROM YOURS!!)

 A.  

The pollen from one flower is transported by an insect to the ovule of another flower.

 B.  

A potato plant produces a tuber, and the next year, a new plant grows from the tuber.

C.  

Part of the stem segment of a cactus plant falls off and begins to form a new plant.

D.  

A new shoot emerges from a strawberry plant and produces another plant.

Explanation:

It's "The pollen from one flower is transported by an insect to the ovule of another flower. " because i got it from study island

identify the following reaction as an endothermic reaction, exothermic reaction, or both endothermic and exothermic: evaporation of water from your skin

Answers

The evaporation of water from your skin is an example of an endothermic reaction because heat is lost from the body as the water evaporates from the skin.

What are exothermic and endothermic reactions?

Based on the heat changes that occur in reaction, reactions can be classified into two types;

endothermic reactions, andexothermic reactions

Exothermic reactions are reactions in which the heat content of the reactants is greater than the heat content of the products. Hence, heat is given out during the reaction. An example is the dissolution of acids in water.

Endothermic reactions are reactions in which the heat content of the reactants is less than the heat content of the products. Hence, heat is absorbed during the reaction. An example is the evaporation of water from the skin.

Other types of endothermic reactions are the melting of ice and thermal decomposition.

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What is the simple electronic configuration of bromine?

Answers

The simple electronic configuration of bromine can be written as:

[ Ar ] 4s2 3d10 4p5.

electronic configuration, additionally called electronic structure or electron configuration, the association of electrons in orbitals around an atomic nucleus. The electronic configuration of an atom within the quantum-mechanical model is stated by using list the occupied orbitals, in order of filling, with the variety of electrons in each orbital indicated by superscript. on this notation, the electronic configuration of sodium would be 1s²2s²2p⁶3s¹, distributed in the orbitals as 2-8-1. frequently, a shorthand technique is used that lists simplest those electrons in excess of the noble gas configuration right away previous the atom within the periodic table. for example, sodium has one 3s electron in extra of the noble gas neon (chemical symbol Ne, atomic number 10), and so its shorthand notation is [Ne]3s1.

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a flask contains a mixture of he and ne at a total pressure of 2.6 atm. there are 2.0 mol of he and 5.0 mol of ne in the flask. the partial pressure of he is __________ atm.

Answers

A flask contains a mixture of he and ne at a total pressure of 2.6 atm. there are 2.0 mol of he and 5.0 mol of ne in the flask. the partial pressure of he is 0.743 atm.

The partial pressure of a gas in a mixture is given by the product of the total pressure and the mole fraction of that gas.

The mole fraction of He in the mixture is:

X_He = n_He / (n_He + n_Ne)

where n_He is the number of moles of He, and n_Ne is the number of moles of Ne.

Plugging in the values given in the problem, we get:

X_He = 2.0 mol / (2.0 mol + 5.0 mol) = 0.2857

Therefore, the partial pressure of He is:

P_He = X_He * P_total = 0.2857 * 2.6 atm = 0.743 atm (rounded to three significant figures)

So, the partial pressure of He is 0.743 atm.

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Environmental science is a *

A. narrowly defined set of physical, life, and social sciences.
B. subject that only deals with the environment.
C. collective of like-minded people that attempt to raise awareness and take action to protect our environment.
D. interdisciplinary subject used to gain knowledge about the environment.

Answers

i would say that the answer is d?

PLEASE SHOW WORK PLEASE !!!! need help
Question 7 Calculate the pH of 0.81 M Mg(OH)₂. Show your work to earn points. Use the editor to format your answer Question 8 Calculate the pH of 0.27 M solution of the pyridine (CsHsN; K=1.7 x 10%)

Answers

7. the pH of 0.81 M Mg(OH)₂ solution is 9.19.

8. the pH of 0.27 M pyridine solution is 9.11.

Mg(OH)₂ is a base which dissociates to produce two OH⁻ ions.

Mg(OH)₂ → Mg²⁺ + 2 OH⁻

Let the concentration of OH⁻ ions produced be x.

Therefore, the concentration of Mg²⁺ is 0.81-x

Mg(OH)₂ → Mg²⁺ + 2 OH⁻

Initial concentration (M)    0         0

Change (M)                 -x         +2x

Equilibrium Concentration  0.81-x      x     x

Using Kb for Mg(OH)₂,Kb = Kw/Ka

Kw = 1.0 × 10⁻¹⁴ at 25 °C.

For Mg(OH)₂,Kb = [Mg²⁺][OH⁻]²/Kw= (x)²/0.81 - x

Kb = 4.5 × 10⁻¹² = x²/0.81 - x

On solving the equation,x = 7.7 × 10⁻⁶M

Therefore, the concentration of OH⁻ ions = 2 × 7.7 × 10⁻⁶ = 1.54 × 10⁻⁵ M

To calculate the pH of the solution, use the formula:

pOH = - log [OH⁻]= - log 1.54 × 10⁻⁵pOH = 4.81pH = 14 - 4.81 = 9.19

Thus, the pH of 0.81 M Mg(OH)₂ solution is 9.19.

Let the concentration of OH⁻ ions produced be x.

Therefore, the concentration of C₅H₅NH⁺ is 0.27 - x.

C₅H₅N + H₂O ⇌ C₅H₅NH⁺ + OH⁻

Initial concentration (M)   0.27      0

Change (M)                -x       +x

Equilibrium Concentration  0.27-x     x

Using Kb for C₅H₅N,Kb = Kw/Ka

Kw = 1.0 × 10⁻¹⁴ at 25 °C.

For C₅H₅N,

Kb = [C₅H₅NH⁺][OH⁻]/[C₅H₅N]= (x) (x)/(0.27-x)Kb = 1.7 × 10⁻⁹

= x²/(0.27-x)

On solving the equation,

x = 1.3 × 10⁻⁵ M

Therefore, the concentration of OH⁻ ions = 1.3 × 10⁻⁵ M

To calculate the pH of the solution, use the formula:

pOH = - log [OH⁻]= - log 1.3 × 10⁻⁵pOH

= 4.89pH = 14 - 4.89 = 9.11

Thus, the pH of 0.27 M pyridine solution is 9.11.

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