Electron configuration for Lithium.

Answers

Answer 1

The answer to problem is [He] 2s1. Hope it helps

Answer 2

Your answer is [He] 2s1

Hope that helps :)


Related Questions

Identify three areas of energy research that scientists are working on today.

Answers

Your answer would be Solar, Hybrid and wind. Hope this helps!

Answer:

wind, solar, bioproduction

Explanation:

The wind energy, since in some places the wind reaches fast velocities, the scientist try to implement new technology to improve how to convert wind energy in electricity for example.

The solar energy, even we have by now the solar panels, there is still an area to research to obtain again the mayor quantity of energy with less materials.

The bioproduction, since the mammals we produce liquid and solid wastes, how to convert it into energy like gas, electricity, etc.

Which molecules shown on the graph above are likely candidates for evaporation? 
1. molecules under the left end of the curve
2. molecules under the apex of the curve
3. molecules under the right end of the curve
4. all molecules under curve "T2"

Answers

Answer : The correct option is, (3) molecules under the right end of the curve

Explanation :

Evaporation : It is type of process in which the phase changes from liquid state to gaseous state below the boiling temperature of the liquid.

As we know that the higher the temperature of the liquid [tex](T_2)[/tex], the more will be the molecule escaping into the gaseous phase than the lower temperature [tex](T_1)[/tex].

So, the molecules under the right end of the curve are likely candidates for evaporation.

Hence, the correct option is, (3)

Answer: molecules under the right end of the curve

Explanation: smart

Alfred wegener suggested that earths continents are moving. Which evidence support this theory

Answers

Answer:

Close geometric correspondence of continental coastlines.

Explanation:The main supporting clues that Wegener used were the geomorphological shape of the opposing continents across the Atlantic. Further evidence derived from the study of the continental shelf below the sea; the matching geometry is even better than the one of the emerged shoreline.Another strong supporting evidence is the presence of rocks of identical geological origin on different continents. It is actually possible to follow the strata limits on landmasses that now are separated by oceans. It is a strong clue that once these masses belonged to the same continent.

Answer:

As explained below

Explanation:

Alfred Wegener was the first to give the continental plate theory in 1912 and IT gained popularity in 1950 onwards when the publication came from the geologist and other scientists that proved that continent are spreading and as seafloor is itself moving and the evidence that he gave doe the theory are given as below.

1. Drifting away from the continents due to the pole wandering forces.

2. Jigsaw ft puzzle that coasts of South America and those of Africa have the same geologic and tectonic origin.

3. Presence of large and long mountain chains of mountains and ranges present in all the contents that form a chain.

4. Floral and Faunal evidence found in the lands of South America and Africa and the opening of the s-shaped Atlantic ocean that separated them apart.

5. Presence of similar climatic zones over the continents of the Gondwanaland and the northern Laurentia continent.

The seafloor spreading supports the evidence by the study of paleomagnetism and the age of rocks.

1. Define fission and fusion. Give an example of fission and fusion reflecting in real life application.

Answers

Answer :

Nuclear fission : In nuclear reaction, the nucleus of a larger atom breaks into two or more smaller nuclei. In fission process, protons and neutrons are produced and larger amount of energy is released.

Example : In nuclear power plant, the energy released from the process of nuclear fission which is converted into electrical energy that is used in our homes and factories.

Nuclear fusion : In nuclear reaction, the nuclei of two or more smaller atoms combine together to form single larger molecule. In fusion process, the mass of the resulting nuclei is more as compared to the starting nuclei and large amount of energy is also released.

Example : This process occurs in the sun and stars. In this, the isotopes of Hydrogen, Tritium and Deuterium combine together to form a neutron and a helium atom under high pressure and temperature.


1. Find the elements magnesium, cesium, and nitrogen on the periodic table. a. What monoatomic ions would each form? Write this with the appropriate symbol abbreviation. Be sure to use subscripts or superscripts as necessary. Example: Al3+ (5 points) b. Then, given what you know about chemical bonding, give the formulas for the types of ionic compounds they would produce with each other. Be sure to use subscripts or superscripts as necessary. Explain how you determined this. No credit without an explanation. (10 points)

Answers

a. Monatomic ions

Cs is in Group 1. It has one valence electron that it can lose to form a Cs⁺ ion.

Mg is in Group 2. It has two valence electrons that it can lose to form an Mg²⁺ ion.

N is in Group 15. It can gain three valence electrons to complete its octet and form an N³⁻ ion.

b. Ionic compounds

In an ionic compound there must be the same number of positive and negative charges.

It takes three Na⁺ ions to balance the charge on one N³⁻ ion, so the formula of sodium nitride is Na₃N.

It takes three Mg²⁺ ions (charge = +6) to balance the charge on two N³⁻ ions

(charge = -6), so the formula of magnesium nitride is Mg₃N₂.

Magnesium forms a Mg²⁺ cation, cesium forms a Cs⁺ cation, and nitrogen forms an N³⁻ anion. Magnesium nitride, cesium nitride, and magnesium ceside are the ionic compounds formed, with formulas Mg₃N₂, Cs₃N, and MgCs₂, respectively. Ionic compounds must have balanced total charges.

1. (a). First, let's identify the ions that each element forms:

Magnesium (Mg) is in Group 2 of the periodic table and forms a cation by losing two electrons: Mg²⁺. Cesium (Cs) is in Group 1 and forms a cation by losing one electron: Cs⁺. Nitrogen (N) is in Group 15 and forms an anion by gaining three electrons: N³⁻.

1. (b). Next, let's determine the formulas of the ionic compounds these ions can form:

Magnesium Nitride (Mg₃N₂): Magnesium (Mg²⁺) and nitrogen (N³⁻) combine in a 3:2 ratio to balance the total charges.Cesium Nitride (Cs₃N): Cesium (Cs⁺) and nitrogen (N³⁻) combine in a 3:1 ratio to balance the total charges.Magnesium Ceside (MgCs₂): Magnesium (Mg²⁺) and cesium (Cs⁺) combine in a 1:2 ratio to balance the total charges.

To determine the formulas, I considered the need for ionic compounds to be electrically neutral, meaning the total positive and negative charges must equal zero.

Which element is oxidized in the following reaction: CuO(s) + H2 (g) → Cu(s) + H2O (l)

Answers

Start by determining the oxidation numbers of each element on both sides of the equation CuO(s) + H2 (g) → Cu(s) + H2O (l)

Let's start with the reactants.

In the compound CuO(s), the oxidation number of O is -2 and the oxidation number of Cu is +2. (Remember, oxygen's oxidation number is -2 unless it's in a peroxide)

In H2(g) the oxidation number of H is 0 because it is in its elemental form.

Now onto the products

The oxidation number of Cu(s) is 0 because it is in its elemental form

In H2O(l) the oxidation number of oxygen is -2, and the oxidation number of H is +1.

Now let's summarize the change in the oxidation numbers of each element.

Cu: started as +2 and became 0

O: started as -2 and became -2 (didn't change)

H: started as 0 and became +1

To determine which element was oxidized, we look at which element lost electrons, and thus became more positive. So, we can determine that H was oxidized in this reaction, because it started with the oxidation number 0 and became +1.


Answer: you are a god

Explanation:

help me nowww please and thanks

Answers

The answer to your question is Gallium, or GA. The trick is to always check if they are along the same vertical column. This indicates that they have the same Valence electrons, which is involved in all the bonding and define the electronegative status of the atom.

Remark

I can't understand why this was reported. It's a perfectly straight forward question, unless someone recognized it as part of a test.

I know that the answer is supposed to be Ga, but in many ways Boron resembles Carbon than it does Ga. Be that as it may, the answer you want is Ga.

Sodium carbonate is often used in certain candies to create fizzy bubbles when solid weak acids in the candy are dissolved with saliva. Explain the fizzing effect.

Answers

Answer is: in chemical reaction with with weak acid, sodium carbonate produce carbonic acid (H₂CO₃), which decomposes into carbon(IV) oxide (fizzy bubbles) and water.

Balanced chemical reaction:

Na₂CO₃ + 2HClO → CO₂(g) + H₂O + 2NaClO.

Chemical decomposition is the separation of a carbonic acid into water and carbon dioxide: H₂CO₃ → CO₂ + H₂O.

A 46.9 gram sample of a substance has a volume of about 3.5 centimeters3. It is solid at a room temperature of 23ºC. Out of the four substances whose properties are given, which is the most likely identity of this substance?
Substance Density (g/cm3) Melting Point (°C) Boiling Point (°C)
molybdenum 10.28 2,623 4,639
mercury 13.53 -39 357
hafnium 13.31 2,233 4,603
lead 11.34 327 1,749
A.
molybdenum
B.
mercury
C.
hafnium
D.
lead

Answers

Answer:- C. Hafnium.

Solution:- Mass of the sample is 46.0 g and it's volume is [tex]3.5cm^3[/tex] .

From mass and volume, we can calculate it's density using the formula:

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

[tex]density=\frac{46.9g}{3.5cm^3}[/tex]

[tex]density=\frac{13.4g}{cm^3}[/tex]

On the basis of the density, this substance could either be mercury or hafnium. Since the substance is a solid at room temperature where as mercury is liquid. So, it can't be mercury.

The right choice is C) Hafnium.

Answer:

the one above me

Explanation:

What kind of reactions provide a star with energy?

Answers

The nuclear fusion reaction is the source of energy in a star. In nuclear fusion reactions, the nuclei of two atoms combine to create a new atom with the release of a lot of energy. The nuclear fusion reaction takes place in the core of the star where two hydrogen atoms fuse to become one helium atom.

²₁H + ³₁H --> ⁴₂He + ¹₀n + 17.59 MeV

In the fusion reaction above deuterium fuses with tritium to form helium and releases ~18 mega electron volt of energy.

7.602x1024 atoms of lead has a mass of ____________ grams.

(Enter just the number for this one.)

Answers

Hello!

To find the mass of 7.602 x 10^24 atoms of lead, we need to find the number of moles first, then we will be able to find the mass. To find the moles, we need to divide the total number of atoms by Avogadro's number, which is 6.02 x 10^23. Also, one mole of lead is equal to it's atomic mass, which is 207.2 grams.

1). Find the number of moles

(7.602 x 10^24) / (6.02 x 10^23) ≈ 12.62790

Using significant figures, there are 12.8 moles of lead.

2). Find the mass of lead

12.8 moles x 207.2 grams = 2652.16 grams

Using significant figures, the mass of the given amount of lead is 2650 grams. (Exact value is 2652.16 grams).

An unknown substance has hydrogen ion concentration of [H+]=3.1*10^-8M. Find the pH and classify the substance as acidic or basic

Answers

pH = 7.51. The substance is basic.

[H⁺] = 3.1 × 10⁻⁸ mol·L⁻¹.

pH = -log[H⁺] = -log(3.1 × 10⁻⁸) = 7.51

The substance is basic because pH > 7.

Final answer:

The pH of the substance with a hydrogen ion concentration of 3.1*10^-8M is 7.51, indicating that the solution is basic.

Explanation:

The pH of a substance can be calculated using the formula pH = -log[H+], where [H+] is the concentration of hydrogen ions in moles per liter (M). Given that the hydrogen ion concentration of the unknown substance is [H+]=3.1*10^-8M, we can calculate the pH as follows:

pH = -log(3.1*10^-8)

pH = 7.51

As the pH is higher than 7, the substance is classified as basic.

An atom’s lewis dot structure has two dots, which element could it be, and why?

Answers

Final answer:

An atom's Lewis dot structure with two dots indicates that it is Helium (He), which has two valence electrons in its outermost shell, achieving a stable electronic arrangement and typically not forming chemical bonds.

Explanation:

An atom’s Lewis dot structure with two dots indicates it has two valence electrons. The element that fits this description is Helium (He). The number of dots around an element's Lewis symbol represents its valence electrons, which are crucial for forming chemical bonds. Helium's electron configuration is 1s2, meaning it has two electrons in its outermost shell, both of which are depicted as dots in its Lewis dot structure. This structure is a visually simple method to represent valence electrons and predict bonding behavior. Helium, with its two valence electrons completely filling its first and only energy level, achieves a stable electronic arrangement, thus typically does not form chemical bonds with other elements.

Final answer:

An atom's Lewis dot structure with two dots likely represents helium (He), as the number of dots indicates valence electrons, and helium has two valence electrons, completing its outer shell.

Explanation:

An atom's Lewis dot structure with two dots could represent the element helium (He). This is because the number of dots in a Lewis dot structure indicates the number of valence electrons an atom has. Helium is in Group 18 of the periodic table, which is known as the noble gases. These elements are characterized by having a full outer shell of electrons. For helium, which is in the first period of the periodic table, having two valence electrons fills its outer shell, as it only has one shell. Therefore, its Lewis dot structure is represented with two dots, signifying its two valence electrons.

Which equation represents the reaction of a weak acid with water?
A.
HCl + H2O H3O+ + Cl-
B.
HCO3– + H2O H2CO3 + OH–
C.
H2O H + + OH-
D.
HCOOH + H2O H3O+ + HCOO-

Answers

Acid is anything which will give H+ to other species.

Have a look at the equations given.

In A) HCl changes to Cl- by giving its H+ to H2O. So HCl is an acid.

In B) HCO3- changes to H2CO3^2- by accepting H+. It did Not give its H+ rather it takes from other species. So it is not an acid at all.

In C) H2O is just breaking to H+ and OH-. It is not giving H+ to other species. So it is also not an acid in this reaction.

In D) HCOOH is giving its H+ to H2O. So it is also an acid.

So out of all reactions with water. The only two species are acting as acid with water namely HCl and HCOOH.

Out of these two HCl is very strong acid but HCOOH is a weak acid.

So the answer is D

Answer: The correct answer is Option D.

Explanation:

Weak acid is defined as the acid which does not completely dissociates into its ion when dissolved in water.

For the given options:

Option A: [tex]HCl+H_2O\rightarrow H_3O^++Cl^-[/tex]

HCl is a strong acid because it completely looses its proton when dissolved in water.

Option B: [tex]HCO_3^-+H_2O\rightarrow H_2CO_3+OH^-[/tex]

Hydrogen carbonate ion is a base because it is easily accepting a proton from water.

Option C: [tex]H_2O\rightarrow H^++OH^-[/tex]

The above equation represents the ionization of water.

Option D: [tex]HCOOH+H_2O\rightarrow H_3O^++HCOO^-[/tex]

Formic acid is considered as a weak acid because it does not completely dissociates into its ions when dissolved in water.

From the above information, the correct answer is Option D.

Which of the following represents radiant energy being converted to chemical energy?

a. A plant uses energy from the sun to make sugar stored in fruit.
b. A slingshot is used to shoot a rock across the room.
c. A lamp lights up after it is plugged into an outlet in the wall.
d. A rock sitting at the top of a hill is pushed down the hill.

Answers

ANSWER

The correct answer is A

EXPLANATION

Plants manufacture their on food by the process of photosynthesis. During this process, plants trap radiant energy from the sun by the help of chlorophyll in the leaves.

Radiant energy with other raw materials such as water, carbon dioxide and mineral salts is converted to food (in the form of starch) which contains chemical energy.

A substance did not change its chemical nature in a reaction. Which most likely describes the reaction?

A)It was heated.

B)It was hit with a hammer.

C)It was placed in a salt solution.

D)It was frozen.

Answers

The answer is D. It was frozen.

This is because freezing an object doesn't change chemical properties, only change the state of the matter.


On a potential energy diagram, what is true about activation energy?

Activation energy is the same for both endothermic and exothermic reactions.
Activation energy is greater for endothermic reactions.
Activation energy is greater for exothermic reactions.
Activation energy is represented by a negative slope.

Answers

Why hello there!

The correct answer to your question is C because exothermic energy is based of on using heat and heat acts like the activation !

If my answer helped please mark me as brainliest i really want to rank up thank you and have the best day ever!

Answer:

I think the answer is B

How does chromatography separate substances

Answers

Chromatography is actually a way of separating out a mixture of chemicals, which are in gas or liquid form, by letting them creep slowly past another substance, which is typically a liquid or solid. ... As the mobile phase moves, it separates out into its components on the stationary phase

Answer:

Chromatography is really a method for isolating out a blend of synthetics, which are in gas or fluid shape, by giving them a chance to crawl gradually past another substance, which is regularly a fluid or strong.  

Explanation:

Chromatography can be utilized to isolate blends of hued mixes. Blends that are reasonable for division by chromatography incorporate inks, colors and shading operators in nourishment. Basic chromatography is completed on paper. ... Diverse parts of the blend will move at various rates.There are four primary sorts of chromatography. These are Liquid Chromatography, Gas Chromatography, Thin-Layer Chromatography and Paper Chromatography. Fluid Chromatography is utilized on the planet to test water tests to search for contamination in lakes and waterways.

What are the natural components of water?

Answers

two hydrogen atoms and one oxygen atom. hope this helped.

Two Hydrogen and 1 Oxygen Atoms

A board has a mass of 750 g. If you ground the whole board down to sawdust, what would be the mass of the pile of sawdust?

Answers

The law of conservation of mass states that mass can neither be created nor destroyed. For example in an isolated system, mass of the reactants is equal to the mass of the products. Thus, mass or the quantity of the system under consideration will remain unchanged through any physical or chemical process.

In the given example, the board initially has a mass of 750 g. It is physical transformed to sawdust by grinding. Based on the conservation of mass, the pile of sawdust would still weigh 750 g.

Without what do carbohydrates fats and proteins can not be changed into energy

Answers

vitamins is the answer to your question

Chemical properties

a) Can be observed without altering the identity of a substance

b). include mass and color

c) Include changes that alter the identity of a substance

d) Include changes of state of a substance

plz explain why too so i can actually learn it!!

Answers

The answer is C

Chemical properties or chemical changes are the ones which include changes that alter the identity of a substance. For example: burning of any substance which is also called combustion. You burn a piece of paper it changes its identity. It was cellulose fibres earlier now it’s ash after burning.
You burn petrol it was mixture of hydrocarbons but when burnt it changes to smoke which is just gases like carbon dioxide or nitrogen oxides. This is a chemical change




Changing of states is a physical change not chemical change. Think of meeting of ice the water molecules which were in solid state after melting become water molecules in the liquid state. Similarly, the evaporation or boiling will change the water molecules in the liquid state to the gaseous state also called its vapor state. These do not change identity it’s just the water molecules always may it be any state, solid, liquid or gaseous. So, boiling point and melting point are physical properties not chemical. The identity remains same during these processes.


Mass and color are not chemical properties. They don’t change identity when you measure them. If you weigh yourself on weight u won’t change into something else.

Chemical properties include characteristics that describe how a substance changes its chemical structure or composition, as in the case of flammability. The correct answer is c) Include changes that alter the identity of a substance, because chemical properties lead to chemical changes, which result in new substances with different identities.

The chemical properties of a substance refer to the characteristics that describe its ability to undergo specific chemical changes that alter its identity. For instance, the flammability of a substance is a chemical property because when a substance burns, it produces new substances with different chemical compositions. Observing a chemical property involves causing a chemical change.

a) Can be observed without altering the identity of a substance: This statement describes a physical property, not a chemical property.

b) Include mass and color: These are examples of physical properties, not chemical properties.

c) Include changes that alter the identity of a substance: This statement correctly defines a chemical property.

d) Include changes of state of a substance: Changes of state, such as melting or freezing, are physical changes, not chemical changes.

Therefore, the correct answer is c) Include changes that alter the identity of a substance, because chemical properties involve changes in the chemical structure or composition of a substance, such as its reaction to form new substances.

express in scientific notation (6.0x10^4) (3.1x10^-1)

Answers

The Answer is: 1.86×10^4


Answer:

1.86 x 104

Explanation:

This mathematical operation is a multiplication, so:

1.- Multiply the number as usual: 6 x 3.1 = 18.6

2.- Multiply the coefficients, remember since they coefficients, a multiplication, actually you need to add them: 4 + (-1) = 3+

3.- Then you write the number with the coefficient: 18.6 x 103

4.- In this case since the scientific notation just admit one number will be:

1.86 x 104

How many valence electrons are in an atom of strontium (Sr)? Consult the periodic table. A. 5 B. 2 C. 47.90 D. 22

Answers

The smallest and the basic particle of a chemical element is said to be an atom. It is made up of three subatomic particles that is electrons, protons and neutrons.  The neutrons and protons are present in the nucleus of an atom whereas electrons are present in the orbits around the nucleus of the atom.  There are several shells in the orbital depending on the atomic number.  The electrons which are present in the outermost shell are said to be valence electrons.

They can be determined by the electronic configuration of the element.

The atomic number of strontium, [tex]Sr[/tex] is 38. The electronic configuration of strontium, [tex]Sr[/tex] is:

[tex]1s^{2}2s^{2}2p^{6}3s^{2}3p^{6}4s^{2}3d^{10}4p^{6}5s^{2}[/tex]

From the electronic configuration it is clear that the outermost shell of strontium, [tex]Sr[/tex] is [tex]5s[/tex]. So, the number of valence electrons in strontium, [tex]Sr[/tex] is 2.

Hence, there are 2 valence electrons in an atom of strontium ([tex]Sr[/tex]).

The number of valence electrons are in an atom of strontium (Sr) is 2 and the correct option is option B.

Atomic number is the number of protons present in the nucleus of an atom. It is always equal to the number of electrons in orbit about that nucleus (in a nonionized atom). Thus, all atoms that have the same number of protons--the atomic number--are atoms of the same element.

The modern periodic table is arranged in such a way that all the elements have an increasing atomic number, and subsequently, increasing mass number.

Learn more about Atomic number, here:

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How many hydrogen atoms are in 6.90 mol of ammonium sulfide?

Answers

(NH4)2S this is chemcial formula of ammonium sulfide

in 1 mole of ammonium sulfide there are 4*2 = 8 moles of H atoms are present

but in 0.69 moles of ammonium sulfide = 8 * 0.69 =    calculate it

Answer : The number of atoms of hydrogen are [tex]3.32\times 10^{25}[/tex]

Explanation : Given,

Moles of ammonium sulfide = 6.90 moles

The chemical formula of ammonium sulfide is, [tex](NH_4)_2S[/tex]

In ammonium sulfide, there are 2 atoms of nitrogen, 8 atoms of hydrogen and 1 atom of sulfur.

As we know that,

1 mole of substance always contains [tex]6.022\times 10^{23}[/tex] number of atoms.

As, 1 mole of ammonium sulfide contains [tex]8\times 6.022\times 10^{23}[/tex] number of hydrogen atoms

So, 6.90 mole of ammonium sulfide contains [tex]6.90\times 8\times 6.022\times 10^{23}=3.32\times 10^{25}[/tex] number of hydrogen atoms.

Therefore, the number of atoms of hydrogen are [tex]3.32\times 10^{25}[/tex]

25pts! which of the following has the largest atomic radius mg mg2+ ca or ca2+

Answers

Ca has the largest atomic radius because it is further down the periodic table than Mg, and its cation, Ca²⁺, is still larger than Mg²⁺ because it retains an extra shell of electrons.

The atomic radius tends to increase as you move down a group in the periodic table because each successive element has an additional energy level, or shell. Conversely, atomic radius generally decreases as you move from left to right across a period because the effective nuclear charge increases, pulling the electrons closer to the nucleus. In the case of ions, cations (positively charged ions) are smaller than their neutral atoms because they have lost one or more electrons, reducing electron-electron repulsion and allowing the electrons to be pulled closer to the nucleus.

In comparing Mg, Mg²⁺, Ca, and Ca²⁺, we must remember that the neutral atoms will have a larger atomic radius than their respective cations. Between Mg and Ca, Ca is larger because it is lower on the periodic table. However, for the cations, Ca²⁺ is larger than Mg²⁺ because even though they have both lost two electrons, the calcium ion still has an additional shell of electrons compared to magnesium.

Therefore, among the given species, Ca has the largest atomic radius followed by Mg, then Ca²⁺, and finally Mg²⁺ having the smallest atomic radius.

Answer: ca

Explanation: .

Classify the properties based on whether they describe metals or nonmetals. They are good conductors of heat and electricity. They are brittle and break into sharp pieces. They are flexible and can be made into wires. They are mostly solids at room temperature. They are poor conductors of heat and electricity. They are solids, liquids, or gases at room temperature. Reset Next

Answers

Classified based on the properties of metals

They are good conductors of heat and electricityThey are mostly solids at room temperatureThey are flexible and can be made into wires

Classified based on the properties of nonmetals.

They are brittle and break into sharp piecesThey are poor conductors of heat and electricityThey are solids, liquids, or gases at room temperatureWhat are metals and non-metals?Metals are opaque, lustrous elements that are good conductors of heat and electricity. Most metals are malleable and ductile and are, in general, denser than the other elemental substances.The metals of antiquity are the seven metals that humans had identified and found use for in prehistoric times: gold, silver, copper, tin, lead, iron, and mercury.Aluminum, cadmium, chromium, copper, iron, lead, nickel, tin, zinc, or any combination of these elements are considered common metals.Non-metals are natural materials that do not produce heat or electricity and that are structurally brittle (can not be easily rolled, molded, extruding, or pressed). Hydrogen, carbon, nitrogen, oxygen, phosphorus, arsenic, and selenium are the non-metallic elements in the periodic table.

To learn more about  metals and nonmetals refer:https://brainly.com/subject/chemistry

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Answer: I just took the test and it was right!

Explanation:

How do the major and minor scale divisions relate the precision of measurements taken with a metric ruler or graduated cylinder?

Answers

Answer: Major scale and minor scale both relate the precision of measurements with more true value of measurement.

Explanation:

Major scale in a measuring device is maximum unit value on the scale that can be measured.

Minor scale in a measuring device is a least unit value on the scale that can be measured.

In a metric ruler major scale is 1 cm and minor scale is 0.1 mm which means one can measure accurate value up-to one decimal point and in 10 ml of graduated cylinder major scale division is 1 ml minor scale division is 0.01.


Electron A falls from energy level X to energy level Y and releases blue light. Electron B falls from energy level Y to energy level Z and releases red light. Which transition, from X to Y or from Y to Z, has a greater energy difference? Explain your answer and how you arrived at it. Use a diagram of the electromagnetic spectrum.

Answers

Answer: Transition from X to Y will have greater energy difference.

Explanation: For studying the energy difference, we require Planck's equation.

                                [tex]E=\frac{hc}{\lambda}[/tex]

where, h = Planck's Constant

c = Speed of light

E = Energy

[tex]\lambda[/tex] = Wavelength of particle

From the equation, it is visible that the energy and wavelength follow inverse relation which means that with low wavelength value, energy will be the highest and vice-versa.

As electron A falls from X-energy level to Y-energy level, it releases blue light which has low wavelength value (around 470 nm) which means that it has high energy.

Similarly, Electron B releases red light when it falls from Y-energy level to Z-energy level, which has high wavelength value (around 700 nm), giving it a low energy value.

Energy Difference between X-energy level and Y-energy level will be more.


The burning of the magnesium becomes uncontrolled (it burns brightly). oops! will the reported mole ratio of magnesium to oxygen be too high or too low as a result of this technique error? explain.

Answers

Answer:

The answer is Less oxidation will happen while its consuming, so the proportion to O² to magnesium would be substantially higher than common.  

Explanation:

At the point when decrease happens, a component picks up electrons and its oxidation number declines or is diminished. To decide whether a red ox response has happened and to distinguish the component oxidized and the component decreased: Assign oxidation numbers to all iotas in the equation.In ionic and free extreme responses, oxidation and decrease are characterized as procedures by which a component experiences a net misfortune or gain of electrons, separately. ... In reference to natural particles, oxidation is a procedure by which a carbon iota picks up bonds to more electromotive components, most usually oxygen.

Final answer:

Uncontrolled burning of magnesium leads to more oxygen being consumed than that needed for a perfect stoichiometric reaction. Hence, this would result in the mole ratio of magnesium to oxygen to be reported lower than it would be if the magnesium burning was controlled. The reaction with other substances like nitrogen or carbon dioxide can also influence the mole ratio.

Explanation:

If magnesium burns uncontrolled, it will consume more oxygen than required for the stoichiometric reaction with magnesium. As a result, the mole ratio of magnesium to oxygen will be reported lower than it actually is. In the reaction 2Mg(s) + O2(g) → 2MgO(s), one mole of oxygen reacts with two moles of magnesium. However, if magnesium burns uncontrollably, it will react with more than the required amount of oxygen.

Thus, an abundance of oxygen implies a decrease in the mole ratio of magnesium to oxygen. Apart from this, an uncontrollable burning of magnesium might lead to its reaction with nitrogen or carbon dioxide, which can further lower the reported mole ratio of magnesium to oxygen.

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