Which contribution added to Rutherford's discovery of a positive nucleus?

Atoms are indivisible.
Electrons are scattered in an atom.
Neutrons are inside the nucleus of an atom.
Atoms of the same element have the same properties.

Answers

Answer 1

C : " Neutrons are inside the nucleus of an atom" is the answer because, Rutherford  theorized if the neutrons were in the center and the electrons were orbiting in separate energy levels the protons would be in the nucleus to keep the neutrons from floating. If the nucleus has neutral and positive particles, then it will be positive nucleus. Hope this helps

Answer 2

The discovery that added to Rutherford's discovery of a positive nucleus is neutrons are inside the nucleus of an atom.

Rutherford, through his ground breaking experiment with a thin gold foil was able to show that the nucleus is composed of a positively charged core called the nucleus.

In addition to this discovery, Chadwick in 1932 discovered the neutrons which are neutral particles but are also contained in the nucleus. They contribute to the mass of the atom.

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Related Questions

how many atoms of oxygen are contained in 47.6g of Al2(CO3)3? The molar mass of Al2(CO3)3 is 233.99g/mol.

Answers

Moles of aluminum carbonate = Mass / Molar mass = 47.6 g / 233.99 g molâ’1 =0.203 mol To find moles of oxygen: In each mole of the carbonate there are 9 moles of oxygen And thus there are 9 Ă— 0.203 moles of oxygen in the given quantity. = 1.83 moles of oxygen Within one mole of oxygen, we have 6.022 x 10^23 atoms Amount of atoms within 1.827 moles of oxygen = 1.83 x 6.022 x 10^23 = 1.10 x 10^24 atoms

Some common substances used in the laboratory are listed in the table. The chemical formulas of the substances are also listed beside their names.

How many of the listed items are elements?

Answers

there are five elements in the table

Answer:5

Explanation:

5

Copper, sulfur, gold, iron, and aluminum are elements, as their symbols suggest. The other four substances are compound with two elements each.

What was rutherfords contribution to the structure of an atom

Answers

The Nuclear Model-1909. Ernest Rutherford's great contribution to atomic theory was to show what happens to an element during radioactive decay. This enabled him to construct the first nuclear model of the atom, a cornerstone of present-day physics The Nuclear Model-1909.

The Nuclear Model-1909

Which example provides a complete scientific description of an object in motion? Question 3 options: The marble changed position quickly. The car traveled north. The marble moved 30 cm north in 6 seconds. The ball rolled 20 cm in 5 seconds.

Answers

The answer is the Car Traveling North... According to me

Answer:

The marble moved 30 cm north in 6 seconds. is correct

Explanation:

according to K12

100% sure

what is the volume, in liters, of 2.00 moles of hydrogen H at STP

Answers

Final answer:

To find the volume of 2.00 moles of hydrogen gas at STP, multiply the number of moles by the standard molar volume, 22.4 L/mol, resulting in 44.8 liters.

Explanation:

The volume of hydrogen gas at STP (Standard Temperature and Pressure) can be found using the standard molar volume. By definition, the standard molar volume of an ideal gas at STP, which is 0°C (273 K) and 1 atm pressure, is 22.4 liters per mole.

For 2.00 moles of hydrogen gas at STP, the calculation simply involves multiplying the number of moles by the standard molar volume:

Volume = 2.00 moles × 22.4 L/molVolume = 44.8 liters

Thus, 2.00 moles of hydrogen gas at STP occupy a volume of 44.8 liters.

Yttrium -90 has a half life of 64 hours . How much of a 120g sample will remain after 128 hours ?

Answers

30 grams. The definition of "half life" is the amount of time it takes for half of a sample of the substance to radioactively decay. Since the half life is 64 hours for Yttrium-90, after 64 hours, you will only have half of that isotope left, therefore there will be 120g / 2 = 60 g left after 64 hours. But you need to wait another 64 hours after that to reach 128 hours. So halve the amount again, getting 60g/2 = 30g after 128 hours. So the original 120 gram sample will decay to 30 grams after 128 hours.

At room temperature, which of these are oxide minerals? Select all that apply.
A.H2OB.CO2C.Al2O3D.Fe3O4

Answers

c. and d. are oxyminerals.

Answer:  C.[tex]Al_{2}O_{3}[/tex] and D.[tex]Fe_{3}O_{4}[/tex]

Explanation: Oxide minerals are the minerals in which the oxide anion is bonded to the central metal atom. These are useful for industrial purposes.

Out of the given options, only two of them can be categorized as the oxide minerals.  

H2O and CO2 will not be considered as oxide minerals.

If a system has 425 kcal of work done to it, and releases 5.00 × 102 kJ of heat into its surroundings, what is the change in internal energy of the system?

Answers

Final answer:

Using the first law of thermodynamics, the change in internal energy of the system, given the work done on the system and the heat released by the system, was calculated to be -2.28 × 10^6 Joules.

Explanation:

The subject of this problem is a classic concept in thermodynamics: the conservation of energy. According to the first law of thermodynamics, the change in the internal energy (ΔU) of a system is the sum of the heat (Q) added to the system and the work (W) done on the system, expressed in the equation ΔU = Q - W.

In this case, the work is performed on the system, amounting to 425 kcal. To convert this into a common unit like Joules, use the conversion factor 1 kcal = 4.184 × 10^3 J. Therefore, the work done on the system (W) is 425 kcal × (4.184 × 10^3 J/kcal) = 1.78 × 10^6 J.

The heat released by the system (Q) is - 5.00 × 10^2 kJ (the negative sign indicates heat is lost from the system). Converting into Joules gives -5.00 × 10^2 kJ × (10^3 J/kJ) = -5.00 × 10^5 J.

Substituting Q and W into the equation gives ΔU = (-5.00 × 10^5 J) - (1.78 × 10^6 J) = -2.28 × 10^6 J. Hence, the change in internal energy of the system is -2.28 × 10^6 J.

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Final answer:

The change in internal energy of the system is -1277.4 kJ.

Explanation:

The change in internal energy of a system can be calculated using the equation:



Change in internal energy = heat transfer - work done



In the given scenario, the system receives 425 kcal of work and releases 5.00 × 102 kJ of heat. To calculate the change in internal energy, we need to convert the units to a consistent format. 1 kcal = 4.184 kJ, so the work done is 425 kcal x 4.184 kJ/kcal = 1777.4 kJ.



Using the formula, the change in internal energy is:



Change in internal energy = 5.00 × 102 kJ - 3 kJ = -1277.4 kJ

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Radioactive isotopes of an atom are?

Answers

Radioactive isotope, also called radioisotope, radionuclide, or radioactive nuclide, any of several species of the same chemical element with different masses whose nuclei are unstable and dissipate excess energy by spontaneously emitting radiation in the form of alpha, beta, and gamma rays.

Answer:

Less stable

Explanation:

I took the K12 test

Which of the following statements is FALSE? A. Air temperatures over the ocean remain fairly constant throughout a 24-hour cycle. B. Air temperatures over the land can vary significantly throughout the day. C. Air temperatures over land reach their highest values in the mid-afternoon. D. Air temperatures over land are always higher than air temperatures over the ocean.

Answers

Answer:

d

Explanation:

Air temperatures over land are always higher than air temperatures over the ocean. This statement is false.

What is temperature ?

The physical concept of temperature indicates in numerical form how hot or cold something is. A thermometer is used to determine temperature. Thermometers are calibrated using a variety of temperature scales, which historically defined distinct reference points and thermometric substances.

Above the course of a 24-hour cycle, air temperatures over the ocean remain largely unchanged. Throughout the day, there can be large variations in the air temperature over the land. Mid-afternoon is when land-based air temperatures are at their maximum. Always higher than air over the ocean are air temperatures over land.

Water has a heat capacity that is around four times more than that of land, meaning it requires more energy to heat it up and reacts more slowly to temperature

Thus, option D is correct.

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In this chemical reaction a very reactive metal, sodium, combines with a poisonous gas and results in the formation of ordinary table salt. In the chemical reaction ______________ is the product.A)NaB)NaClC)Cl2EliminateD)a reactive metalDescribe the mass of the reactants and products given the balanced chemical reaction. A) The mass of the products is 2 3 that of the reactants. B) The mass of the reactants equals the mass of the products. C) The mass of the reactants is less than the mass of the products. Eliminate D) The mass of the reactants is greater than the mass of the products.

Antoine Lavoisier found that mass was conserved in chemical reactions when he saw thatA)heat was released in chemical reactions.B)the products differed greatly from the reactants.C)the mass of the products was the same as that of the reactants.EliminateD)the mass of the products were heavier than the mass of the reactants.
 A copper sheet is heated in a furnace until it melts. The hot liquid copper is then cooled until it becomes solid again. Compare the mass of the copper before and after melting.A)The new solid copper is lighter than the original sheet.B)The new solid copper is heavier than the original sheet.C)The new solid copper is the same weight as the original sheet.EliminateD)The molten copper was lighter than the sheet or the new solid.


Answers

The first one is B.
The second is B.
The third one is C.
The forth one is C.
Hope this helps.
exactly 1b 2b 3c 4c is the correct answer lol

What is the pressure of nitrogen in atmospheres of a sample that is at 745 mmHg?

Answers

The pressure of nitrogen in atmospheres of a sample that is at 745 mmHg- n2= .780 atm because 78 (from the 78%) 78/100=0.78.

balance the following reaction. CH4+O2==>CO2+H20

Answers

CH4 + 2O2 --> CO2 + 2H2O

Answer:

[tex]\huge \boxed{\mathrm{CH_4+ 2O_2 \Rightarrow CO_2 +2 H_2O}}[/tex]

[tex]\rule[225]{225}{2}[/tex]

Explanation:

[tex]\sf CH_4+ O_2 \Rightarrow CO_2 + H_2O[/tex]

Balancing the Hydrogen atoms on the right side,

[tex]\sf CH_4+ O_2 \Rightarrow CO_2 +2 H_2O[/tex]

Balancing the Oxygen atoms on the left side,

[tex]\sf CH_4+ 2O_2 \Rightarrow CO_2 +2 H_2O[/tex]

[tex]\rule[225]{225}{2}[/tex]

Water particles in gas coming off a pan of boiling water are moving faster or slower than the particles of the water in the pan

Answers

Answer:

faster.

Explanation:

Particles of water in the gas coming out of a pot of boiling water are moving faster than particles of water in the pot.

This is because the heat energy makes the molecules move faster, so the molecules "trapped" in the liquid are able to gradually break down the barriers of the liquid-air interface and, therefore, the amount of water. it decreases until it "disappears". When you boil water, that smoke you see coming out is nothing more than a bunch of molecules that have broken through the barrier and are free, gaseous. This was due to the rapid movement of these molecules.

We want to see what happens to the particle's speed in a given material as the temperature changes (increases in this case) and it faces a change of phase.

We will see that the particles in the gas (vapor of water) have a larger speed than the ones in the liquid water.

--------------------------------

To see this, first, we need to understand how the temperature manifests in a given material.

As we increase the temperature of the material, the kinetic energy of the particles that make the material increase (thus the speed increases). This causes the particles to move more, and this is why as we increase the temperature, is likely to see an increase in the volume.

This is the reason of why we usually see that a solid has less volume than a liquid, and a liquid has less volume than a gas (for the same mass of the same material).

Then as we increase the temperature of liquid water and that water starts to change of phase (by boiling) the kinetic energy of the particles increase, and thus, the speed increases.

Then the particles will be moving faster than the particles of the water in the pan.

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Magma is made up of melted or *blank* materials.
A. Intrusive
B. Molten
C. Extrusive
D. Cooled

Answers

The answer is For this question is B
The answer is B) Molten.

Match the scientist with his discovery or contribution.




Match

Term

Definition


J. J. Thomson A) Protons
John Dalton B) Atoms
Ernest Rutherford C) Electrons
James Chadwick D) Neutrons



I NEED THIS IN 5 MINUTS MAX

Answers

Thomson - Electrons  

Dalton - Atoms

Rutherford - Protons

Chadwick - Neutrons

will be the answer

The correct match of the scientists with their discovery are:

A. J. J. Thomson - Electrons  

B. John Dalton - Atoms

C. Ernst Rutherford - Protons

D. James Chadwick - Neutrons

What are subatomic particles?

An atom is made up of subatomic particles. Electron, proton, and neutron are the particles that form an atom.

Electron was discovered in 1898 and proton was discovered in 1908 and neutron was discovered in 1932.

Thus, the correct options are, A. J. J. Thomson - Electrons  

B. John Dalton - Atoms

C. Ernst Rutherford - Protons

D. James Chadwick - Neutrons

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The standard unit of mass is the: gram kilogram pound cubic centimeter

Answers

The standard unit mass of kilogram is the kilogram (kg)

Hope it helped!

Answer:

The standard unit of mass is the kilogram.

Explanation:

The kilogram is the basic unit of mass in the International System of Units. Among the seven basic units of the International System of Units, kilograms are the only basic unit with a prefix.

The XXVI General Conference on Weights and Measures of 2018 approved the definition of a kilogram based on fixing the numerical value of the Planck constant. The decision entered into force on May 20, 2019.

Which of the following is designed to convert energy into mechanical energy?
A.Blender
B.Kerosene heater
C.Flashlight
D.Baking oven

Answers

The answer would be D. Baking Oven

What is the smallest part of Substance called?

A. Element

B. Atom

C. Mixture

D. Molecule

Please help! ☺️

Answers

It is definitely a molecule 
The answer is a Molecule.

Can an element with eight valence electrons still be reactive?

Answers

no they cant bc it is a noble gas.

A newly discovered element, Y, has two naturally occurring isotopes. 87.8 percent of the sample is an isotope with a mass of 267.8 u, and 12.2 percent of the sample is an isotope with a mass of 269.9 u. What is the weighted average atomic mass for this element? 267.9 u 268.1 u 268.9 u 269.1 u

Answers

(0.878)(267.8) + (.122)(269.9) = 268.1 g/mol (B)

Answer :  The average atomic mass of this element is, 268.1 u

Explanation :

Average atomic mass of an element is defined as the sum of masses of each isotope each multiplied by their natural fractional abundance.

Formula used to calculate average atomic mass follows:

[tex]\text{Average atomic mass }=\sum_{i=1}^n\text{(Atomic mass of an isotopes)}_i\times \text{(Fractional abundance})_i[/tex]

For isotope-1 :

Mass of isotope-1 = 267.8 amu

Fractional abundance of isotope-1 = 87.8 % = 0.878

For isotope-2 :

Mass of isotope-2 = 269.9 amu

Fractional abundance of isotope-2 = 12.2 % = 0.122

Putting values in equation 1, we get:

[tex]\text{Average atomic mass }=[(267.8\times 0.878)+(269.9\times 0.122)][/tex]

[tex]\text{Average atomic mass }=268.1u[/tex]

Thus, the average atomic mass of this element is, 268.1 u

Which is the most accurate description of compounds?
a. They are formed by elements that join in any given mass ratio.
b. They have the same properties as the elements that make them up.
c.They have a unique set of properties that can be used as identifiers.
d. They cannot be broken down into the elements that form them through chemical changes.

Answers

Answer: c.They have a unique set of properties that can be used as identifiers.

Explanation:

Compound is a pure substance which is made from atoms of different elements combined together in a fixed ratio by mass.

Compounds can be decomposed into simpler constituents using chemical reactions.

Example: Water [tex](H_2O)[/tex]

[tex]2H_2O\rightarrow 2H_2+O_2[/tex]

Compounds have different properties than the elements it is made up of.

Thus the most accurate description of compounds is that they have a unique set of properties that can be used as identifiers.

how small do you think an individual atom is

Answers

tiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiny. atoms are smaller than anything else
Here is your answer:

Its so small that scientist need a special microscope just to see them.

Your answer is really tiny.

Which type of substance is graphene?

A-atom

B- molecule

C-compound

Will mark brainliest

Answers

Graphene is made of a single layer of carbon atoms that are bonded together in a repeating pattern of hexagons. So the answer is A- Atom.

Answer: B- molecule

Explanation:

An atom is the smallest entity of a substance which may or may not have independent existence.

Molecule is a pure substance which is composed of similar kind of  atoms.It can not be decomposed into simpler constituents using chemical reactions.Example: Hydrogen [tex]H_2[/tex]

Compound is a pure substance which is made from atoms of different elements combined together in a fixed ratio by mass.It can be decomposed into simpler constituents using chemical reactions. Example: water [tex]H_2O[/tex]

Graphene is a crystalline allotrope of carbon and thus is a molecule as it is made up of  similar kind of  atoms.

Define prediction and explain how it is used to formulate a hypothesis.

Answers

Answer:a prediction is a scientific guess that’s solely based on known knowledge

Explanation:

A prediction is used to make a hypothesis because it goes in hand of guessing an outcome that can be tested

A prediction is a scientific guess that is based on knowledge which is known.

What is knowledge?

Scientific knowledge is defined as a systemic explanation of phenomenon or behavior of interest that are obtained using the scientific method. The principal on which scientific knowledge depends is the test of knowledge.

The fact which makes scientific knowledge different from other knowledge is that it depends upon fact and scientific resources as well as data. Scientific knowledge helps us to improve and develop new technology find solution of practical problems and make informed decisions.

The procedure of aquaring scientific knowledge is a result of practice of the several method such as observation, filtering hypothesis, deduction of test for hypothesis following testing and experimentation which lead to confirmation or failure of the hypothesis.

Therefore, A prediction is a scientific guess that is based on knowledge which is known.

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How many grams of magnesium oxide can be produced when 97.2 g Mg react with 88.5 g O2?

Unbalanced equation: Mg + O2 → MgO

Answers

csiagentMg + O2 → MgO

Well you see that there are 2 oxygens on the reactant side while there is only 1 oxygen on the product side. To balance the oxygen, you can multiply the MgO on the product side by 2. So you have

Mg + O2 → 2MgO

Now if you take a look at the Magnesiums, there are 2 on the product, but only 1 on the reactant. You can multiply the magnesium on the reactant side by 2 to get both sides to equal with respect to magnesium.

2Mg + O2 → 2MgO

Are there equal amounts of each atom on both sides? Yes! That is the final balanced equation.

So 2Mg + O2 ---> 2MgO is the balanced equation.

A 20.0 % by mass solution of phosphoric acid (H3PO4) in water has a density of 1.114 g/mL at 20°C. What is the molarity of this solution?

Answers

Assume you have 1 L of the material (you can assume any volume you want, you'll get the same answer). 

Using the density, the one L has a mass of 1114 g 

20% by mass of phosphoric acid means the mass of phosphoric acid is 0.20 * 1114 g 

Calculate the moles of phosphoric acid 

Molarity, M, mole / L = moles of acid / volume or 1 L

Answer:

Molarity is 2.272M

Explanation:

The mass % of phosphoric acid is 20.0%

It means in 100 g of solution there is 20g of phosphoric acid in it.

Molarity = moles of solute dissolved per litre of solution.

So we need volume of solution

Volume can be calculated from mass and density as

Volume = mass / Density = 100/1.114 = 89.77 mL = 0.08977 L

Moles of solute = mass of solute / molar mass of solute

moles of solute = 20g / 98 = 0.204

molarity = [tex]\frac{moles}{volume}=\frac{0.204}{0.08977} =2.272M[/tex]

Which of these is a physical property?
Question options:


malleable

easy to digest

does not burn

becomes moldy quickly

Answers

The answer will be A. Malleable.

Hopes this helps!

scientists build theories to test their ideas about things that they cannot observe directly true or false?

Answers

Pseudoscience- Fake science

How many molecules are in each sample?4.6 g H2O

Answers

Hello!

We have the following data:

m (mass) = 4.6 grams
MM (molar mass) of H2O
H = 2 * 1 = 2 amu
O = 1 * 16 = 16 amu
--------------------------
MM (molar mass) of H2O = 2 + 16 = 18 g/mol

Solving:

Establishing a relation with Avogadro's number (6.10²³) we have:

18 g of H2O --------------- 6.10²³ molecules
4.6 g of H2O --------------- y molecules

[tex]18*y = 4.6*6.10^{23}[/tex]

[tex]18y = 2.76*10^{24}[/tex]

[tex]y = \frac{2.76*10^{24}}{18} [/tex]

[tex]\boxed{\boxed{y \approx 1.53*10^{23}\:molecules}}\end{array}}\qquad\quad\checkmark[/tex]


Answer: The number of molecules present in given amount of water are [tex]1.54\times 10^{23}[/tex]

Explanation:

To calculate the number of moles, we use the equation:

[tex]\text{Number of moles}=\frac{\text{Given mass}}{\text{Molar mass}}[/tex]

Given mass of water = 4.6 g

Molar mass of water = 18.0 g/mol

Putting values in above equation, we get:

[tex]\text{Moles of water}=\frac{4.6g}{18.0g/mol}=0.255mol[/tex]

According to mole concept:

1 mole of a compound contains [tex]6.022\time 10^{23}[/tex] number of molecules.

So, 0.255 moles of water will contain [tex]0.255\times 6.022\times 10^{23}=1.54\times 10^{23}[/tex] number of molecules.

Hence, the number of molecules present in given amount of water are [tex]1.54\times 10^{23}[/tex]

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