What is a well-mixed mixture that contains a solvent and at least one solute

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Answer 1
Answer: Maybe a solution.
Solution- a mixture containing liquids that has a solute(Minor component) that is distributed within the solvent(Major component)...Hope that helped :)

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There is A picture of the question below so yea. If you will help me that will be great and amazing and very appreciated!!!!!!!!!!!!!!!!!!!!!

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ionic is when two atoms share electrons


From day 15-21 if fertilization does occur

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SO MENSURATION DOES NOT OCCUR AND THE FUSION OF SPERM AND EGG TAKES PLACE AND ZYGOTE IS FORMED

Which of these describes how an organism looks? a. its probability c. its hybrid b. its phenotype d. its genotype

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Answer: The correct answer is C) it's phenotype.

Phenotype corresponds to the morphological form or physical appearance of an organism. It is depicted due to the genotype (genetic makeup) of the individual.

In other words, phenpti is related to the physical traits or specific characteristics of the individual.

Therefore, it describes how an organism looks (such as eye color, hair color, skin color).

Thus, C) is the right answer.

Organism's Phenotype describes how an organism looks. So, In short, Your Answer would be Option B

Hope this helps!

According to the graph, what is the name for the change in water temperature that occurs at approximately 1300 m? A. halocline B. thermocline C. isocline D. baryocline

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the answer is b thermocline

Warm and cold fronts are formed by the movement of different air masses.

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That is true because the warm air goes up and the cold air comes down 

47.0 ml of an HBr solution were rotated with 37.5 ml of a 0.215 m lioh solution to reach the equivalent point. What is the molarity of the hbr solution

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Answer:

0.172 mol·L⁻¹

Step-by-step explanation:

1. Write the chemical equation for the reaction.

HBr + LiOH ⟶ LiBr + H₂O

===============

2. Calculate the moles of LiOH

c = n/V         Multiply each side by V

n = Vc

V = 0.0375 L

c = 0.215 mol·L⁻¹

Moles of LiOH = 0.0375× 0.215

Moles of LiOH = 8.062 × 10⁻³ mol LiOH

===============

3. Calculate the moles of HBr

1 mol HBr ≡ 1 mol LiOH

Moles of HBr = 8.062 × 10⁻³× 1/1

Moles of HBr = 8.062 × 10⁻³ mol HBr

===============

4. Calculate the molar concentration of the HBr

V = 47.0 mL = 0.0470 L

c = 8.062 × 10⁻³/0.0470

c = 0.172 mol·L⁻¹

The molarity of the HBr solution is 0,172 M.

The neutralization reaction between LiOH and HBr is the following:

HBr(aq) + LiOH(aq) → LiBr(aq) + H₂O(l)