What charge will elements in group 16 typically have when forming ionic compounds? Example: sulfur (S, #16) (1 pt)
*
1 point
+1
+2
-1
-2

Answers

Answer 1
-2, elements in group 16 have 6 valence electrons and to fill the outer shell and make it 8 you have to add two more electrons but since this is adding to its negativity its a -2 and not +. its positive when you take electrons

Related Questions

What mass of iodine, I2 (molar mass 253.80 g/mol), must be used to prepare a 0.960 m solution if 100.0 g of ethanol, C2H5OH, is used

Answers

Approximately 551.63 grams of iodine (I2) must be used to prepare a 0.960 molar solution using 100.0 grams of ethanol (C2H5OH).

To determine the mass of iodine (I2) required to prepare a 0.960 molar solution using 100.0 g of ethanol (C2H5OH), we need to first calculate the number of moles of ethanol and then use the stoichiometry to determine the corresponding moles of iodine.

Step 1: Calculate the moles of ethanol (C2H5OH):

Molar mass of ethanol (C2H5OH) = 12.01 g/mol (C) + 2 * 1.01 g/mol (H) + 16.00 g/mol (O) = 46.07 g/mol

Moles of ethanol = Mass of ethanol / Molar mass of ethanol

= 100.0 g / 46.07 g/mol

≈ 2.17 mol

Step 2: Use the stoichiometry to determine the moles of iodine (I2):

From the balanced chemical equation for the preparation of the solution, we need a 1:1 mole ratio between ethanol and iodine.

Therefore, the moles of iodine = Moles of ethanol = 2.17 mol

Step 3: Calculate the mass of iodine:

Mass of iodine = Moles of iodine * Molar mass of iodine

= 2.17 mol * 253.80 g/mol

≈ 551.63 g

It's important to note that the molarity (M) of a solution is defined as the number of moles of solute per liter of solution. In this case, the molarity is given as 0.960 M, indicating 0.960 moles of solute per liter of solution.

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(a) State Dalton's Law of Additive Pressure. (b) A room contains moist air comprising of 0.3 moles of oxygen, 0.6 moles of nitrogen and 0.1 moles of water vapor at room temperature (25°
C) and pressure (1 atm). Given that the specific enthalpy of air at 25°
C is 298.18 kJ/kg, determine the following: i. Total number of moles of moist air in the room
ii. Specific enthalpy of the oxygen
iii. Specific enthalpy of the nitrogen
iv. Specific enthalpy of the water vapor

Answers

Dalton's Law of Additive Pressure states that in a mixture of gases, the total pressure exerted by the mixture is equal to the sum of the partial pressures of each individual gas component.

What is the relationship between the total pressure and partial pressures of gases in a mixture?

Dalton's Law of Additive Pressure states that in a mixture of gases, the total pressure exerted by the mixture is equal to the sum of the partial pressures of each individual gas component.

In the given scenario, the room contains moist air composed of 0.3 moles of oxygen, 0.6 moles of nitrogen, and 0.1 moles of water vapor at room temperature and pressure.

To determine the specific enthalpy of each component, we need to consider the properties of the gases.

i. The total number of moles of moist air in the room can be calculated by summing the moles of each component: 0.3 + 0.6 + 0.1 = 1 mole.

ii. The specific enthalpy of oxygen can be determined by multiplying the moles of oxygen (0.3) by the specific enthalpy of air at 25°C (298.18 kJ/kg). This gives us the specific enthalpy of oxygen.

iii. Similarly, the specific enthalpy of nitrogen can be obtained by multiplying the moles of nitrogen (0.6) by the specific enthalpy of air.

iv. The specific enthalpy of water vapor can be calculated by multiplying the moles of water vapor (0.1) by the specific enthalpy of air.

By performing these calculations, we can determine the specific enthalpies of each component of the moist air mixture.

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why do plants provide animals with fruit such as strawberries, apples, and mangoes

Answers

Answer:

to increase their number of species on the Earth and want to go long and long

Using the diagram, which two planes would intersect in HG?
Answer please .. :)

Using the diagram, which two planes would intersect in HG? Answer please .. :)

Answers

Answer:

I think D

Explanation:

it has both H and G in the planes.

help fast Which products are the result of a reaction between potassium fluoride, KF, and sodium hydroxide, NaOH?

KNa and FOH

KOH and NaF

Na and KFOH

K and FNaOH

Answers

Potassium fluoride and sodium hydroxide react to produce potassium hydroxide and sodium fluoride respectively. Option 2.

Chemical reaction

Potassium fluoride and sodium hydroxide undergo a double decomposition reaction. They exchange radicals to produce potassium hydroxide and sodium fluoride respectively according to the following equation:  

\(KF + NaOH --- > KOH + NaF\)

Potassium is able to displace sodium from sodium hydroxide because it is higher on the reactivity series of metals than sodium.

Thus, the product of the reaction of potassium fluoride and sodium hydroxide are \(KOH\) and \(NaF\).

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What happens when light passes through a solution? perform an activity with a homogenous to expalin what happen when light pass through it.








Answer fast and pls read the question ;-; and will give u brainliest

Answers

Answer:

light bends and makes effects in the water

Explanation:

Metals like potassium and sodium are kept in paroffin oil. Why?​

Answers

Answer:

because they are high reactive to the air thats why we keep them in paroffin oil

Question 8 Multiple Choice Worth 1 points)
(01 03 LC)
How is volume calculated given mass and density?
Sum of mass and density
O Mass divided by density
Mass multiplied by density
O Difference of mass and density
A what is the answer and

Answers

Mass divided by density.
Density = mass/volume so to get volume you have to divide mass by density :)

How many grams are there in 2.8 * 10 ^ 24 molecules of Li 2 O?

Answers

First, we must know Avogadro's number:

1 mol of any substance = 6.02x10^23 formula units (ions, atoms, molecules, etc)

Also, we can say this:

1 mol of Li2O = its mass expressed in grams

(from Li2O molar mass = 30 g/mol approx.)

Now,

1 mol Li2O = 30 g = 6.02x10^23 molecules Li2O

30 g Li2O ----------- 6.02x10^23 molecules Li2O

x ----------- 2.8x10^24 molecules Li2O

x = 140 g approximately

Answer: 140 g

You are a nurse giving a patient 0.75 cc per minute of a drug cocktail intravenously . A cc is 1ml of a solution . If the patient needs thr iv for 2 hours how many liters of this solution will you need to prepare

Answers

Answer:

90 mL

0.09 Liters

Explanation:

Givens

1 cc of solution = 1 mL

0.75 cc / min needed to go in intravenously.

2 hours needed.

? Liters

Solution

1 hour = 60 minutes

1 hours = 2 * 60 = 120 minutes

rate = 0.75 cc/minute

Liters = rate * time

Liters = 0.75 cc * 120 minutes

Liters = 90 cc

That's not the answer.

1 Liter has 1000 mL or ccs

x Liter has 90 mL          

Equation

1/x = 1000 / 90

Solution

Cross multiply

1000x = 90*1           Divide by 1000

x = 90/1000

x = 0.09 Liters.

Can I find a tutor help me wit this question?

Can I find a tutor help me wit this question?

Answers

Chemistry =>Introduction to Chemistry => Scientific Method

A scientific method corresponds to a methodology to obtain new knowledge.

We must start from an idea, an assumption of how a compound or a process behaves, this is our hypothesis.

Following this, we must identify what can affect our process, what are the variables, and what will be the response variable, for this we carry out an experiment.

Once the experiments have been carried out, we must analyze the results, draw conclusions as to why the behavior occurs, and if our hypothesis is true or not.

It is useless for us to obtain new knowledge if we do not share it, We have to share the results, in this way other people can start from that knowledge to create another,

Therefore, the answer will be:

1. Make a hypothesis

2. Conduct an experiment

3. Analyze the experiment data

4. Communicate the results

Please help: Which is an example of an internal stimulus

A.a sudden change of air temperature

B. An artificial light that attracts insects

C. Less water or sugar in the body

Answers

C is the answer according to me

Answer: it is C because it is part of a “animals” body as I would explain it.

Chlorine can bond with fluorine to form ClF. Chlorine can also bond with lithium to form LiCl. Which compound will have a greater partial charge?Question 2 options:A) Both compounds will have the same partial charge.B) ClFC) LiClD) Neither compound will have partial charge.

Answers

In this question, we have two compounds, ClF and LiCl. The first molecule is a covalent compound, since we will not have donation of electrons but instead the sharing of electrons, but in this case, the difference of the electronegativity will cause this molecule to have Polar covalent bond, which will cause partial charges to occur. LiCl is a molecule in which we have a greater difference in electronegativity, which makes this molecule be an ionic molecule, and not covalent. Since ionic compounds have real charges, the only possible answer will be ClF, since they have partial charges. Letter B

What is one way someone could benefit from the non-separation of a colloid mixture? Explain.

Answers

An example are the emulsions used in the food industry.

How someone could benefit from the non-separation of a colloid mixture?

One way someone could benefit from the non-separation of a colloid mixture is in the case of emulsions, which are a type of colloid mixture. Emulsions are mixtures of immiscible liquids, such as oil and water, stabilized by an emulsifying agent.

The non-separation of emulsions can be beneficial in various practical applications, such as the food Industry, where emulsions are commonly used in the food industry to create a wide range of products, including salad dressings, mayonnaise, sauces, and margarine. Emulsions provide desirable texture, appearance, and taste properties to these food products, and their non-separation allows for long shelf life and consistent quality.

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glycogenolysis releases a form of glucose that cannot enter glycolysis. what form of glucose is released?

Answers

Glycogenolysis is the process of breaking down glycogen, which is a stored form of glucose, into glucose. The form of glucose that is released during glycogenolysis is glucose-1-phosphate.

Glucose-1-phosphate cannot directly enter the glycolysis pathway, which is the process of breaking down glucose to produce energy in the form of ATP.

Instead, glucose-1-phosphate must first be converted to glucose-6-phosphate by the enzyme phosphoglucomutase, which is an enzyme involved in glucose metabolism. Glucose-6-phosphate can then enter the glycolysis pathway to produce energy.

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1 pts Question 7 Which of the following would generally result in a solid coming out of a solution a (crystallization)? Choose all that apply. Lower the temperature. Raise the temperature. Increase the pressure of the solution. Decrease the pressure of the solution

Answers

Lowering the temperature and increasing the pressure of the solution would generally result in a solid coming out of a solution through crystallization.

Crystallization is a process in which a solid forms from a solution by the arrangement of particles into a regular, repeating pattern. Here are the steps involved:

1. Dissolving: Initially, a solute is dissolved in a solvent to form a solution. The solute particles are dispersed and surrounded by the solvent molecules.

2. Saturation: The solution is then brought to a state of saturation by adding more solute or removing the solvent, such that no more solute can dissolve. At this point, the solution contains a high concentration of the solute.

3. Nucleation: When the solution becomes saturated, it becomes unstable, and the solute molecules start to come together and form tiny clusters or nuclei. These nuclei serve as the starting points for crystal growth.

4. Crystal Growth: Once the nuclei form, they start growing as more solute particles join the crystal lattice. This growth occurs by the addition of solute molecules from the solution onto the existing crystal surface.

Now, let's look at how temperature and pressure affect this process:

- Lowering the temperature: Decreasing the temperature of the solution slows down the movement of solute molecules, reducing their kinetic energy. This leads to a decrease in solubility, meaning less solute can remain dissolved in the solution. As a result, excess solute comes out of the solution and starts forming crystals.

- Increasing the pressure: When the pressure of the solution is increased, it compresses the solvent and alters its properties. This compression can enhance the solubility of the solute, allowing it to dissolve more effectively. Consequently, increasing pressure generally inhibits crystallization as more solute remains dissolved in the solution.

Therefore, lowering the temperature favors crystallization by decreasing solubility, while increasing the pressure generally inhibits crystallization by increasing solubility.

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Which two events will happen if more H2 and N2 are added to this reaction after it reaches equilibrium?
3H2 + N2 to 2NH3

Answers

If more \(H_{2}\) and \(N_{2}\) are added to the reaction 3\(H_{2}\) + N2 → 2\(NH_{3}\) after it reaches equilibrium, two events will occur Shift in Equilibrium and Increased Yield of \(NH_{3}\)

1. Shift in Equilibrium: According to Le Chatelier's principle, when additional reactants are added, the equilibrium will shift in the forward direction to consume the added reactants and establish a new equilibrium. In this case, more \(NH_{3}\) will be produced to counteract the increase in \(H_{2}\) and \(N_{2}\).

2. Increased Yield of \(NH_{3}\): The shift in equilibrium towards the forward reaction will result in an increased yield of \(NH_{3}\). As more \(H_{2}\) and \(N_{2}\) are added, the reaction will favor the production of \(NH_{3}\) to maintain equilibrium. This will lead to an increase in the concentration of \(NH_{3}\) compared to the initial equilibrium state.

It is important to note that the equilibrium position will ultimately depend on factors such as the concentrations of \(H_{2}\), \(N_{2}\), and \(NH_{3}\), as well as the temperature and pressure of the system. By adding more reactants, the equilibrium will adjust to achieve a new balance, favoring the formation of more \(NH_{3}\).

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How do I do an energy profile diagram

Answers

Answer:

first u have to like draw like a number line uk how dey do in math but instead of num u add wht eva da question askin u

Explanation:

assuming an efficiency of 49.20%, calculate the actual yield of magnesium nitrate formed from 148.4 g of magnesium and excess copper(ii) nitrate.

Answers

To calculate the actual yield of magnesium nitrate, you need to know the theoretical yield and then compare it to the actual yield. The theoretical yield is calculated based on the balanced chemical equation for the reaction between magnesium and copper(ii) nitrate. The actual yield is the amount of magnesium nitrate that was actually produced during the reaction.

About Magnesium Nitrate

Magnesium nitrate refers to the inorganic compound with the formula Mg(NO₃)₂ₓ, where x = 6, 2, and 0. These are all white solids. The anhydrous material is hygroscopic, quickly forming hexahydrate when in air. All salts are highly soluble in water and ethanol.

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Which is the best way to determine if an object is made of pure silver?

Answers

Answer:

The Nitric Acid Test is used to check if silver is pure or plated. To do so, file a small part of the item in a discreet area where it cannot be seen. Apply a few drops of nitric acid. If the area turns into creamy white, the silver is pure or sterling.

Explanation:

the nurse is preparing to administer insulin intravenously to a client with a blood glucose level over 600 mg/dl (33.33 mmol/l). what type of insulin will the nurse most likely give?

Answers

   nurse will most likely give regular insulin for intravenous administration to rapidly lower the client's blood glucose level.

Intravenous insulin is typically used in emergency situations to rapidly lower blood glucose levels. Given that the client's blood glucose level is over 600 mg/dL (33.33 mmol/L), the nurse will most likely administer a short-acting or rapid-acting insulin. These types of insulin have a faster onset of action and a shorter duration compared to intermediate or long-acting insulin.

The specific type of insulin commonly used for intravenous administration is regular insulin, also known as short-acting insulin. Regular insulin has a rapid onset of action, typically within 30 minutes, and a duration of around 4 to 6 hours. Its quick action allows for more immediate blood glucose reduction.

Therefore, the nurse will most likely give regular insulin for intravenous administration to rapidly lower the client's blood glucose level.

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Which piece of information do you need to determine whether a hydrocarbon
is saturated or unsaturated?
A. The type of C-C bonds in the molecule
B. The number of C-C bonds in the molecule
C. The type of C-H bonds in the molecule
D. The number of C-H bonds in the molecule

Which piece of information do you need to determine whether a hydrocarbonis saturated or unsaturated?A.

Answers

Answer:

A

Explanation:

Saturated means all the carbon atoms has four single bonds around it. These bonds are strong and won't break easily therefore saturated hydrocarbons aren't very reactive

Unsaturated means in one instance the C has a double bond with another carbon. This double bond can be easily broken therefore making unsaturated compounds more reactive than saturated compounds

So saturation deals with the type of bonds the carbon has with other carbon atoms. (The C-C bonds)

according to molecular orbital theory, where is the charge of the allyl carbocation below associated?

Answers

The delocalization energy as the difference between the total energy of the π electrons and the energies of the individual π bonds: an electron in one π bond has the energy of α+β.

MO theory and Resonance

- in MO theory, the entire molecule is treated as one entity, and all of the electrons in the entire molecule occupy regions of space called molecular orbitals.

- Two electrons are placed in each orbital, starting with the lowest energy orbital, until all electrons occupy orbitals.

- According to MO theory, the three p orbitals no longer exist. Instead, they have been replaced by three MOs, in order of increasing energy. Notice that the lowest energy MO, called the bonding molecular orbital, has no vertical nodes. The next higher energy MO, called the nonbonding molecular orbital, has one vertical node. The highest energy MO, called the antibonding molecular orbital, has two vertical nodes.

- The π electrons of the allyl system will fill these MOs, starting with the lowest energy MO.The allyl carbocation has only two π electrons, rather than three, because one of the carbon atoms bears a positive formal charge indicating that one electron is missing. The two π electrons of the allyl system will occupy the lowest energy MO (the bonding MO). If the missing electron were to return, it would occupy the next higher energy MO, which is the nonbonding MO. Focus your attention on the nonbonding MO.

There should be an electron occupying this nonbonding MO, but the electron is missing. Therefore, the colored lobes are empty and represent regions of space that are electron deficient. In conclusion, MO theory suggests that the positive charge of the allyl carbocation is associated with the two ends of the system, rather than just one end.

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Cuál es la densidad (g/ml) de un liquido de batería de automóvil, si tiene un volumen de 0,125 L y una masa de 155g¿?

Answers

Answer:

nnaaoooo sseeiiiiii!!!!!!!!!

Please help I don't understand this question

Please help I don't understand this question

Answers

Niagara Falls is a set of very large waterfalls located on the border between New York and Ontario, Canada. Over 200,000 cubic feet of fast-moving water falls approximately 180 feet every second. Water at the top of the Falls possesses kinetic energy and gravitational potential energy.

Option B is correct.

What is kinetic energy?

Kinetic energy of an object is the energy that it possesses due to its motion which is defined as the work needed to accelerate a body of a given mass from rest to its stated velocity.

In the case of water at the top of a waterfall, the water has kinetic energy due to its movement as it falls from the height. The velocity of the water increases as it falls, and the kinetic energy increases proportionally.

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1. Find the pH of 2.5 M sulfurous acid (H2SO3). FIrst Ka=1.3x10-2; second Ka= 6.3x10-8

2. Find the final concentration of [H+] in 2.0M phosphoric acid solution given that the first Ka=7.5x10-3, second Ka=6.2x10-8 and third Ka=4.8x10-13

Answers

We take into account the two dissociation processes of the 2.5 M sulfuric acid (H2SO3) solution to determine its pH. We solve for the concentration of H+ ions using the supplied equilibrium constant (Ka) values of 1.3x10-2 for the first step and 6.3x10-8 for the second step.

The concentration of H+ from the first dissociation is quite low because of the low Ka1 value. We determine that the concentration of H+ in the second dissociation step is roughly 3.97 x 10-4 M, resulting in a pH of 3.40.

We take into account each of the three dissociation processes for the 2.0 M phosphoric acid (H3PO4) solution. Ka1 = 7.5x10-3, Ka2 = 6.2x10-8, and Ka3 = 4.8x10-13 allow us to infer that the concentration of H+ in each phase is substantially lower than 2.0 M.

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The pressure of a 980.0 mL sample of gas at a constant temperature is increased from 0.4620 atm to
0.6320 atm. What is the final volume of the gas?

Answers

Answer:

P

1

V

1

T

1

=

P

2

V

2

T

2

Explanation:

P

1

V

1

T

1

=

P

2

V

2

T

2

, given a constant quantity of gas.

And thus,  

P

1

×

V

1

×

T

2

V

2

×

T

1

=

P

2

, even given this format, we can see the problem is dimensionally sound. We do need to use  

absolute temperature.

P

2

=

1.00

a

t

m

×

250

m

L

×

313

K

500

m

L

×

293

K

1

2

a

t

m

.

Explanation:

Which statement best describes a benefit of conducting a comparative investigation over collecting data from the Internet?

A comparative investigation can be repeated in a short time while collecting the continuous data from the Internet takes longer.
Conducting a comparative investigation is always less expensive than an investigation in which data is obtained from the Internet.
Conducting a comparative investigation is always less time consuming than obtaining data from the Internet.
A comparative investigation can provide a wider range of data than can be obtained from the Internet.

Answers

The correct expression which best reveals the advantage of conducting a comparative investigation over collecting data from the Internet is:

A comparative investigation can provide a wider range of data than can be obtained from the Internet

The correct answer choice is option d.

How a comparative investigation provides numerous information.

When making a research or investigation in certain areas such as the ones which involves comparative investigation, one great benefit of it is that it opens our eyes of understanding to get, see and understand information clearly in a function of their differences and similarities.

So therefore, we can now confirm that ease with with the compare the variation and similarities in comparative investigation is one of its advantage over data collection from the website.

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A device that measures properties of light given off by matter
is a(n) ?

Answers

Answer:

Oscilloscope

Explanation:

"We can check out the particle property of light by comparing light with sound using a device called a oscilloscope."

These particles of light are called “photons”. We can check out the particle property of light by comparing light with sound using a device called oscilloscope. Sound is known to have the characteristics of a wave

How to solve this get me a bit of help so I can do the rest

How to solve this get me a bit of help so I can do the rest

Answers

1) To calculate the molarity of NaClO₃ the first thing you need to do is transform 57 g of it in mole. For this, you use the following equation:

mole = mass / molar mass

molar mass of NaClO₃ = 23 + 35.5 + (3×16) = 106.5 g/mol

mole = 57/106.5

mole = 0.535 moles

2) Now you transform 300 mL of water into liters. You just need to divide it to 1000. So you have 0.3 liters of it.

3) Now you use the following equation to calculate the molarity:

M = n/V

M = Molarity

n = moles

V = volume of the solution

M = 0.535/0.3

M = 1.78 moles/Liter

Answer: 1.78 moles/Liter

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