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yulyashka
9 days ago
15

How might a collision between Neptune and Halley's Comet affect Neptune's orbit?

Chemistry
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During the lab, you will have access to a range of acids and bases as well as universal pH indicator paper. Think about how you
alisha [2963]

Answer:

Explanation:bxbxbd

6 0
2 months ago
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Magnesium and nitrogen react in a combination reaction to produce magnesium nitride: 3 Mg N2 → Mg3N2 In a particular experiment,
lorasvet [2795]
The mass of magnesium consumed amounts to 21.42g. Explanation: As per the balanced reaction, three moles of magnesium react with one mole of nitrogen, producing one mole of magnesium nitride. Given that the mass of nitrogen involved equals 8.33g, the moles of the reacted nitrogen equal a particular quantity. The required moles of magnesium, therefore, equals three times the moles of nitrogen utilized. Subsequently, the mass of magnesium needed is determined by multiplying the moles by its molar mass.
5 0
1 month ago
Citric acid is a naturally occurring compound. what orbitals are used to form each indicated bond? be sure to answer all parts.2
alisha [2963]

Response: Below are the orbitals responsible for each bond identified in citric acid per the attachment.

Response 1) σ Bond a: Carbon uses SP^{2} and Oxygen employs SP^{2}.

Clarification: The sigma bonds are formed through the hybrid orbitals of carbon and oxygen. This occurs at the 'a' location in the citric acid structure.

Response 2) π Bond a: Both Carbon and Oxygen have π orbitals.

Clarification: The π-bond at position 'a' consists of interactions between the π orbitals of carbon and oxygen.

Response 3) Bond b: Oxygen SP^{3} and Hydrogen solely utilizes the S orbital.

Clarification: The bonding at position 'b' includes oxygen and hydrogen atoms, with hydrogen utilizing its S orbital.

Response 4) Bond c: Carbon is SP^{3} and Oxygen is also SP^{3}.

Clarification: The bonding process at position 'c' involves both carbon and oxygen atoms with their respective hybrid orbitals.

Response 5) Bond d: Carbon atom has SP^{3} and the second carbon has SP^{3}.

Clarification: In position 'd', the bond formed between carbon atoms is SP^{3}, utilizing orbitals that underwent SP^{3} hybridization which are SP^{3}.

Response 6) Bond e: C1 has O SP^{2}.

C2 has SP^{3}.

Clarification: The carbon that contains oxygen and a double bond utilizes SP^{2} hybridized orbitals; conversely, carbon at C2 employs SP^{3} hybridized orbitals in this bonding at position 'e'.

7 0
3 months ago
An air sample consists of oxygen and nitrogen gas as major components. It also contains carbon dioxide and traces of some rare g
Anarel [2989]

Explanation:

A mixture refers to a substance that contains two or more different kinds of substances that are combined physically.

For instance, air is a mixture that contains oxygen, nitrogen, and other gases.

A heterogeneous mixture is characterized by uneven distribution of solute particles in the solvent.

For example, sand suspended in water is a heterogeneous mixture.

Conversely, a homogeneous mixture is one where the solute particles are uniformly distributed in a solvent.

A homogeneous mixture appears as a clear solution.

For instance, when salt dissolves in water, it forms a homogeneous mixture.

A solution is defined as a mixture of two or more substances combined together.

A compound consists of two or more different elements chemically bonded together in a specific mass ratio.

An element is the simplest form of a substance that comprises only one type of atom.

For example, a piece of sodium is composed solely of sodium atoms.

Conversely, a pure substance refers to a material consisting of just one type of molecule or atom.

For example, O_{2}, N_{2} etc are considered pure substances.

Thus, it can be concluded that the air sample can be described using the terms:

  • pure chemical substance.
  • heterogeneous mixture.
  • mixture.
4 0
2 months ago
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