Every atom of the _______ carbon has 6 protons.

Answers

Answer 1
Answer: The answer is element. Elements consist of identical atoms, which differ between elements. Atoms are the basic units of matter. They are made up of protons, neutrons, and electrons. Carbon is an element. It contains only of carbon atoms. Every atom of element carbon consists of 6 protons.Hope this helps. Let me know if you need additional help!
Answer 2
Answer:

Answer: Element

Explanation: hope this helps :3


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The nitrogenous bases cytosine and thymine area. purines.
b. a phosphate group.
c. a sugar group.
d. pyrimidines.

Answers

Purines are adenine and guanine. So the answer should be D (Pyrimidines). besides, phosphate group and pentose sugar are a part of a nucleotide.

Ethene is the first member of the a. Alkane series
b. Alkyne series
c. Saturated hydrocarbons
d. Unsaturated hydrocarbons
e. Aromatic hydrocarbons

Answers

The answer is (b.) alkyne series.

How many grams of CO2 are in 2.1 mol of the compound?

Answers

Answer: Chemical Reactions,Acids, and Bases Practice

1. 2Na+Br2--->2NaBr

2. 92.4g

3. Volume of the solution

4. Reacts with metals

5. Exothermic

6. Conserved

The molar mass of CO2 is 28 grams per mole. If you aregiven 2.1 moles of CO2 and you are required to find the grams of this compound,simply multiply 28 grams per mole of CO2 by 2.1 moles of CO2 and you will get 58.8grams of CO2.

What is the mass of potassium chloride when 6.75g of potassium reactants with an excess of chlorine gas the balanced chemical equation

Answers

2K+Cl₂→2KCl
First you need to find the number of moles of potassium that is present in a 6.75g sample.  To do this you need to divide the mass of potassium (6.74g) by its molar mass (39.1g/mol) to get 0.172mol K.  Since we are told that the reaction happens with excess chlorine we know that potassium is the limiting reagent and we can therefore ignore chlorine gas and convert the moles of potassium straight to the moles of potassium chloride.  Since we know that 2 moles of potassium creates 2 moles of potassium chloride we can say that 0.172mol K turns into 0.172mol KCl since the molar ratio is 2/2 which can be thought of as 1.  The final step is to multiply 0.172mol KCl by its molar mass (74.55g/mol) to get 12.85g of potassium chloride.

I hope this helps.  Let me know in the comments if anything is unclear.

In an oxidation-reduction reaction, the total number of electrons lost is(1) equal to the total number of electrons gained
(2) equal to the total number of protons gained
(3) less than the total number of electrons gained
(4) less than the total number of protons gained

Answers

Answer is: (1) equal to the total number of electrons gained.

In oxido-reduction reaction, at least one element lose and one element gain electrons.

Oxidation reaction is increasing of oxidation number of atom, because element lost electrons in chemical reaction.

Reduction is lowering oxidation number because atom gain electrons.

For example, in oxidation-reduction reaction: 2H₂ + O₂ → 2H₂O; hydrogen is oxidized (change oxidation number from 0 to +1) and oxygen i s reduced (change oxidation number from 0 to -2).

Hydrogen lost .four electrons anf oxygen gain four electrons

In redox reactions, there is no net loss or gain of electrons, so the answer is (1) equal to the total number of electrons gained

Explain why fluorine and chlorine are in the same group of the periodic table.Give the electronic structures of fluorine and chlorine in your explanation.

Answers

They have 7 electrons in their outer shell

Final answer:

Fluorine and chlorine are in the same group of the periodic table (Group 17) because they both have seven electrons in their outermost shell which leads to similar chemical behavior. Fluorine's electronic structure is 2,7, while chlorine's is 2,8,7.

Explanation:

Fluorine and chlorine are in the same group (Group 17) on the periodic table because they have similar electronicstructures, specifically, they both have seven electrons in their outermost (valence) shell. This same property results in similar chemical behaviors as elements in the same group of the periodic table tend to have similar properties because they have the same number of valence electrons.

The electronic structure of fluorine, which has 9 electrons in total, is 2,7. This means there are 2 electrons in the first energy level and 7 in the second. Chlorine, with 17 electrons total, has an electronic structure of 2,8,7. This means there are 2 electrons in the first energy level, 8 in the second, and 7 in the third.

Learn more about Group 17 Elements here:

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