Select the correct answer. which element can bond with titanium (ti) to form a polar covalent bond? a. beryllium (be) b. fluorine (f) c. manganese (mn) d. nitrogen (n) e. oxygen (o)

Answers

Answer 1

The element that can bond with titanium (Ti) to form a polar covalent bond is Nitrogen (N).

What is a Covalent Bond?

In this type of bond, the atoms of the element share only one electron. As an example, we can mention the chlorine gas Cl2, in which the two chlorine atoms share an electron to achieve chemical stability.

Hence, we can see that to bond with Titanium, there needs to be an element that would form a polar covalent bond and this is Nitrogen and this is because of their electronegativity difference.

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Related Questions

Please Help I need an explanation on how to do this

Answers

Balanced equation(That should be NaClO_3)

[tex]\\ \rm\Rrightarrow Cl_2+2NaOH\longrightarrow NaCl+NaClO_3+H_2O[/tex]

Remember that it's a ionic equation not general equation

So

We have to balance it accordingly

Answer:

Balanced equation(That should be NaClO_3)

\begin{gathered}\\ \rm\Rrightarrow Cl_2+2NaOH\longrightarrow NaCl+NaClO_3+H_2O\end{gathered}⇛Cl2+2NaOH⟶NaCl+NaClO3+H2O

Remember that it's a ionic equation not general equation

So

We have to balance it accordingly

The type of surface that warms up the slowest is .

Answers

Answer:

Answer might be Water...

A surface with a high reflectivity or low heat conductivity typically warms up at the slowest rate. Ice, snow, and some metals, like aluminium, are examples.

A smooth surface is one that doesn't have any ridges or other surface imperfections. It is smooth and devoid of any roughness, dents, or lumps. This kind of surface, which is highly reflective, is frequently seen in materials like glass, polished metal, or plastic. Rough texture: An uneven or irregular texture is indicative of a rough surface. It has lumps, ridges, or other abnormalities that microscopically obstruct the smoothness. Rough surfaces reduce the reflecting qualities of light by scattering it in many directions. Wood, concrete, or coarse fabrics are a few examples of rough surfaces.

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A gas cylinder contains exactly 1 mole of oxygen gas (o2). how many molecules of oxygen are in the cylinder? 4.01 × 1022 molecules 6.02 × 1023 molecules 9.03 × 1024 molecules 2.89 × 1026 molecules

Answers

The number of molecules of oxygen in the cylinder would be  6.022 x [tex]10^{23}[/tex]

Number of molecules of gases

According to Avogadro, 1 mole of any substance contains 6.022 x [tex]10^{23}[/tex] molecules.

In this case, there is 1 mole of oxygen gas in the cylinder. Thus, following the established rule by Avogadro, there would be 6.022 x [tex]10^{23}[/tex] molecules of oxygen in the cylinder.

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Answer:

6.02 x10^23

Explanation:

i did the test

What is the compound N₂O3 called?

Answers

Answer:

Explanation:

Dinitrogen trioxide is a nitrogen oxide. Nitrogen trioxide appears as a blue liquid with a sharp, unpleasant chemical odor.

Description: Dinitrogen trioxide is a nitrogen oxide.ChEBINitrogen trioxide appears as ...

Synonyms: Dinitrogen trioxideNITROGEN TRIOXIDENitrogen oxide (N2O3)10544-7...

Molecular Formula: N2O3

Molecular Weight: 76.012 g/mol

Answer:

It is called Dinitrogen trioxide. Hope this helps!

20 Infer Check the box to show which would tell you for sure if you had a sample of real gold.
Color of your sample. Yes No
What happens when you strike your sample with a hammer.
The location where your sample was found.

Answers

Answer:

C but read the limitation

Explanation:

Gold sample

Color wouldn't tell you much. In fact it may fool you. Fool's Gold is the same color as gold.

Gold is very malleable. That's what hitting gold with a hammer will do.  It tends to shape the gold without destroying it into lots of pieces. A lot of yellow things have that property.

If only it was that simply. Yes if you are sure there is gold in that location. You have to pick this answer, because the other 2 don't work. So this is possible, but not the best way. The best way is to subject the sample to chemical treatment. If you are left with a yellow sample, then you could make the case for it being gold.

A scientist finds a fossil that she thinks might make a good index fossil.

Which characteristic does this fossil most likely have?

Answers

Answer: A fossil will usually have remains or impressions of an animal or plant.

Answer:

the answer is b

Explanation:

trust me

What is the expansion for the chemical symbol of tungsten?.

Answers

Tungsten is a rare metal found naturally on Earth almost exclusively as compounds with other elements. Tungsten gets its W symbol from its German name Wolfram. Wolfram comes from Wolframite, which was one of the ores in which Tungsten was most found.


1 start with 25°C and a volume of 10.0L. If I increase the volume to 15.0L, what is my new temperature? (Equation that is helpful: K= 273 + "C)

Answers

Answer:

If in volume of 10.0L it is 25°C than it will be 37.5C volume in the new temperature if increased from 10.0L to 15.0L

Explanation:

10.0L=25°C

15.0L=?

10×2.5= 25

15×2.5=37.5

Kelvin(K)= C+273=T

=37.5+275=312.5

=C=312.5-275

=C=37.5

Molly inflates a beach ball to a volume of 8 liters in her air-conditioned house where
the temperature is 19°C. Later that day, Molly takes the beach ball to the beach. The
temperature at the beach was 33°C, and the air pressure at the beach is the same as
it was at the house.
What will happen to Molly's beach ball when she is at the beach?

Answers

The temperature at the air-conditioned house is 19° C. The temperature increases to 33° C in the beach. Molly's beach ball's volume will increase with increase in temperature.

What is the Charles law?

Charles' law states that volume of gas increase with an increase in the temperature of the gas.

When pressure remain constant, if temperature increases, the volume of the ball will also increase.

Thus, Molly's beach ball's volume will increase with increase in temperature.

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All stoichiometry calculations involve what important step?
metric fraction
molar mass fraction
molecules fraction
mole ratio fraction
DONE

Answers

Answer:

Mole Ratio Fraction

Explanation:

That's the answer.......

Answer:

D

Explanation:

Mole Ratio Fraction

Scientists hypothesize that Earth's first oceans were made of fresh water. How did oceans obtain fresh water?

Answers

Answer:

The oceans obtained freshwater from glaciers melting. The freshwater was then trapped into small places below waves, which could be a reason why there is not much freshwater in the world.

102. What is the Pauli exclusion principle? What is Hund's rule?

Answers

Pauli Exclusion Principle is about quantum numbers of an atom. Hund rule is about how electrons are filled to the orbitals of an atom.

3. fill in: name the organelle or organelles that perform each of the following functions. a. _____________________ convert sunlight to chemical energy. b. the _____________________ and the _____________________ help to support the plant cell and help it to maintain its shape. c. _____________________ store food or pigments. d. the _____________________ converts food into energy. it is found in both plant cells and animal cells.

Answers

Organelles are the components of the cells with various functions and roles. The correct blanks are chloroplast, cell wall and vacuole, vacuoles, and mitochondria.

What are the organelles?

The organelles are the cell components that have well-defined structures and functions to perform the designated task in the cell activity. Chloroplast is the organelle that converts solar energy into chemical energy through photosynthesis.

The cell wall and the vacuoles provide the structural framework and shape of the cell. The vacuoles also store food pigments in the cell. The mitochondria of the cell convert the food source into energy like ATP.

Therefore, the correct blanks are chloroplast, cell wall and vacuole, vacuoles, and mitochondria.

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formation of water: 2H2 + 1 O2 --> 2H2O
How many moles of H2O can be produced from 35 grams of O2?

Answers

Answer:

2.2 moles H2O

Explanation:

[tex]35g O_2 \mbox{ \cdot }\frac{1mol}{32g/mol} \mbox{ \cdot }\frac{2mol H_2O}{1mol O_2}= 2.1875[/tex], which rounds to about 2.2

Hurry please what will scientists do to solve invasive species? How will it problem solve? Will it be successful or effective?

Answers

Answer:

scientists could import or encourage breeding of a natural predator of the invasive species. it will be successful although may be a problem over time as the predator may become invasive.

Explanation:

this will greatly lower the amount of the invasive species as they are being consumed by an introduced predator, although you do risk making the predator an invasive species over time.

How much energy is released if a sample loses 0.001 kg mass through radioactive decay?

Answers

Explanation:

because the energy it can't be calculated

Mechanism of cell destruction of Poison oak

Answers

. Introduction
Poison oak (Toxicodendron diversilobum) and its eastern counterpart poison ivy (T. radicans) are two of the most notoriously painful plants in North America. The mechanism is similar to poison oak because it causes the body's immune system to destroy cancerous skin cells.

a solution contains 2 moles of hydrochloric acid.the volume of the solution is 250 cm3
what is its concentration in mol/dm³ ​

Answers

Answer:

1dm = 10cm

1dm3 = 10cm x 10cm x 10cm = 1000cm3

1L = 1000cm3

so 1litre = 1dm3

4 moles in 2 dm3

= 2 moles in 1dm3 = 2moles in 1L = 2M

1L = 1000cm

0.3 moles in 200cm3 =

200cm3 = 0.2L

so 0.3 moles in 0.2 L = 1.5 moles in 1 L = 1.5M

(I have tried to simplify and show why 1dm3 = 1L)

I hope this helps you understand!

3. Why do some reactions occur Nturally, and others do not?

Answers

Answer:

depends

Explanation:

because some are caused by different variables

A piece of metal weighing 0.035 kg was submerged in a graduated cylinder containing water. The water level rose from 2.0 mL to 9.0 mL. What is the density in g/mL of the metal

Answers

Taking into account the definition of density, the density of the metal is 5 [tex]\frac{g}{mL}[/tex].

What is density

Density is defined as the property that matter, whether solid, liquid or gas, has to compress into a given space.

In other words, density is a quantity that allows us to measure the amount of mass in a certain volume of a substance.

Then, the expression for the calculation of density is the quotient between the mass of a body and the volume it occupies:

[tex]density=\frac{mass}{volume}[/tex]

From this expression it can be deduced that density is inversely proportional to volume: the smaller the volume occupied by a given mass, the higher the density.

This case

In this case, the increase in the volume of water in the cylinder is due to the volume of the metal. This means that the volume of the metal can be calculated by taking into account the volume occupied by the water + the metal and the volume occupied by the water alone in the cylinder.

Then, you know that:

Mass= 0.035 kg= 35 g (being 1 kg=1000 g)Volume= Volumen water + the metal - Volume water= 9 mL - 2 mL= 7 mL

Replacing in the definition of density:

[tex]density=\frac{35 g}{7 mL}[/tex]

Solving:

density= 5 [tex]\frac{g}{mL}[/tex]

In summary, the density of the metal is 5 [tex]\frac{g}{mL}[/tex].

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What is one element that is found in the human body, air, or the universe ?

Answers

Answer:

Hydrogen

Explanation:

It is pretty much present everywhere :)

How does the number of molecules in 1 mol of oxygen compare with the number of molecules in 1 mol of nitrogen?
O 1 mol of oxygen has fewer molecules.
O 1 mol of oxygen has more molecules.
O Each sample has the same number of molecules.
O The molecules cannot be compared without knowing the mass.

Answers

Answer:

The molecules cannot be compared without knowing the mass.

PLS, I NEED HELP!!!!

Next, you will gradually apply heat to the sugar and observe the effects. Your goal is to identify the point at which sugar begins to melt. To get started, follow these steps. Then, answer the question that follows.


Pour 1 tablespoon of sugar into a cooking pan. Spread it out across the surface of the pan. Place the pan on a stove.

Because all stoves are different, you’ll need to identify your low, medium, and high heat settings before proceeding to step 3.

Use the method below to gradually heat the pan until you see the sugar begin to melt. Once the sugar melts, note how much time has elapsed and the final heat setting. If at any point the pan begins to smoke, immediately turn off the heat source and remove the pan from the heat. Heat the pan for these times and temperatures, stopping when the sugar begins to melt:

5 minutes on low heat

5 minutes on medium-low heat

5 minutes on medium heat

5 minutes on medium-high heat

5 minutes on high heat

When the sugar melts, turn off the stove and remove the pan from the heat. Do not touch the hot pan except by its handle. Use hot pads or oven mitts if the pan’s handle isn’t insulated. Let the pan sit off the heat on a heat-resistant surface until it cools.

Approximately how many minutes did it take for the sugar to melt? What was the final heat setting?

Repeat the process given in part D using salt instead of sugar. Did the salt melt? If so, approximately how many minutes did it take for the salt to melt?

Answers

When a high amount of heat is supplied, the sugar melts faster than when a low amount of heat is supplied.

What is melting?

The term melting has to do with the breakdown of the bonds that hold the molecules of a substance together. Melting occurs when heat is applied continously to a body.

Now, the time taken for the sugar to melt depends on the amount of heat supplied. In other words, when a high amount of heat is supplied, the sugar melts faster than when a low amount of heat is supplied.

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When a high amount of heat is supplied, the sugar melts faster than when a low amount of heat is supplied. low heat makes the sugar take awhile to melt. High heat was the final heat setting. I took about 8-10 minutes.

Predict and write the formulas for the two products of the reaction of aluminum metal al(s) with the copper(ii) chloride.

Answers

Answer:

Cu (s)  and AlCl₃ (s)

Explanation:

This reaction can be classified as a single-displacement reaction, aka. a single-replacement reaction. These reactions involve one element swapping out another element in a compound. In this reaction, aluminum is taking the place of copper (ii) in the copper (ii) chloride compound. Aluminum takes the place of copper (ii) specifically because aluminum is more likely form a cation than anion. Copper (ii) serves as a cation in the compound.

Al (s) + CuCl₂ (s) --> Cu (s) + AlCl (s)

The final products are copper (ii) metal and aluminum chloride. The metal of copper (ii) is produced instead of the cation in order to maintain the neutral charge balance of the reaction. The chorine has a subscript of 3 because aluminum usually forms cations of a +3 charge while chlorines form anions with a -1 charge.

The balanced equation is:

2 Al (s) + 3 CuCl₂ (s) --> 3 Cu (s) + 2 AlCl (s)

How can objects all be the same size but have a different mass? *help quick*

Answers

Answer:

All objects can have the same size but have a different mass!

This is true, although it sounds fake. This is one example, there is a Neutron star, and Neutron stars are as big as a city, but they have a mass which is hundreds of times greater than our sun's mass. Because of them having so much mass, they are also having so much gravitational energy, which makes them also have gravity. They're so small, but have so much mass that they can do much. Even a drop of a neutron star can punch open the earth! It's true, so yes, it is possible for objects the SAME size to be having different masses according to that example.

But let's look on how they can have different mass.

They can have different masses becase of different densities. Put a iron ball inside water, and put an apple as close to the iron ball's side, what happens? The apple floats, becuase the apple's mass is less than the water, and the iron ball's mass is MORE than the water. So, because the iron ball is denser than the apple, that's why, it has more mass than the apple. The apple isn't much dense, it isn't as dense as water or the iron ball. But the iron ball is much more denser than the water. So because of the different material densities of the material, that's why it can have different masses.

Remember to Remember those 2 examples I gave you... (neutron star vs sun, iron ball vs apple on water)

Classify: Heat that is transferred in a circular motion with warm particles rising and cool
particles sinking in a gas and liquid is called____
Convection
Conduction
Radiation

Answers

hello bro please set instar

Radiation cause it’s heat

Convert 65 grams of oxygen to moles

Answers

Here we will show you how to convert 65 grams of oxygen to moles of oxygen. Before we begin, note that oxygen (O) is a chemical element that you can find in the periodic table, and grams (g) is a metric measurement.

The atomic mass of oxygen is 15.9994. That means that one mole of oxygen weighs 15.9994 grams (15.9994 grams/moles). We can therefore make the following equation:

Grams × (1/15.9994) = Moles of Oxygen

Now that we have the equation, we can enter 65 grams into it to get 65 grams of oxygen converted to moles of oxygen:

Grams × (1/12.011) = Moles of Oxygen

65 × (1/12.011) = 4.0626523494631035

65 grams = 4.0626523494631035 Moles of Oxygen

65 grams of oxygen is approximately equal to 2.03125 moles.

To convert 65 grams of oxygen to moles, we need to use the molar mass of oxygen (O₂), which is approximately 32.00 g/mol. Oxygen exists as a diatomic molecule (O₂), so we use the molar mass of O₂ to convert from grams to moles.

The formula for converting grams to moles is:

Moles = Mass (in grams) / Molar mass (in grams per mole)

Given:

Mass of oxygen = 65 grams

Molar mass of oxygen (O₂) = 32.00 g/mol

Moles of oxygen = 65 grams / 32.00 g/mol

Moles of oxygen ≈ 2.03125 moles

Therefore, 65 grams of oxygen is approximately equal to 2.03125 moles.

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What information does the percent composition of an atom in a molecule give?

A. The total number of atoms of that element in a molecule
B. The total mass that element contributes to a molecule
C. The relative amount of mass an atom contributes to a molecule
D. The relative number of atoms one element contributes to a molecule

Answers

Answer:

C

Explanation:

The percent composition of an atom in a molecule gives information regarding the relative amount of mass an atom contributes to a molecule.

At which temperature does water have particles with a greater average kinetic energy than water with a temperature of 30°C?

77°F
95°F
280K
300K

Answers

Answer:

95F

Explanation:

First we convert these temperatures into °C:

77°F = 25°C

95°F = 35°C

280K = 6.85°C

300K = 26.85°C

When temperature increases, water molecules have a greater average kinetic energy ans are more likely to collide with each other.

Out of the 4 temperatures, only 95°F (35°C) is of a higher temperature than 30°C. Hence 95°F is the answer.

What will the pressure be if 89.9 moles of argon are contained in a 12.0 L cylinder that is pressurized at a temperature of 300 K?

Answers

P=nRT/Vp=89.9(8.314)(12)/300P=8969.14/300P=29.89atmP=29.9atm

Done!

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