Explain how a hawk or eagle could use convection currents to soar upward without flapping its wings

Answers

Answer 1
Answer: Hawks will usually fly in a particular area and circle it many times right?Therefore these birds gain their altitude by riding in the current air with other surrounding masses,thats why birds can go high up without using too much energy

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A solution with a ph of 11 is first tested with phenolpthalein
Which best describes the purpose of a controlled experiment?
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How many moles of oxygen will be released when 250.0 grams of KClO3 is thermally decomposed ? 2KClO3 --> 2KCl+3O2<br /><br /> (Must be made to fit into this chart)

Answers

Molar mass KClO₃ = 122.5 g/mol and O₂ = 32.0 g/mol

2 KClO₃ ----------------> 2 KCl + 3 O₂

2 * 122.5 g KClO₃ ---------> 3 * 32 g O₂
250.0 g KClO₃ ------------> ?

mass of O₂ = 250.0 * 3 * 32 / 2 * 122.5

mass of O₂ = 24000 / 245

mass of O₂ = 97.959 g

number of moles O₂ :

1 mole --------- 32.0 g
? mole -------- 97.959 g

moles = 97.959 * 1 / 32.0

= 97.959 / 32.0

= 3.061 moles of O₂

hope this helps!

In most of its compounds, this element exists as a monatomic cation.(A) F
(B) S
(C) N
(D) Ca
(E) Cl

Answers

The answer should be (D) Ca, because all others either occur as diatomic or are anions.

What is the initials for sodium chloride

Answers

NaCL?
Not completely sure about this just to warn you:).
--Thanks, and hoped this helped!

tert-Butyl alcohol is a solvent with a Kf of 9.10 ∘C/m and a freezing point of 25.5 ∘C. When 0.807 g of an unknown colorless liquid was dissolved in 11.6 g of tert-butyl alcohol, the solution froze at 15.3 ∘C.Which of the following is most likely the identity of this unknown liquid?tert-Butyl alcohol is a solvent with a of 9.10 and a freezing point of 25.5 . When 0.807 of an unknown colorless liquid was dissolved in 11.6 of tert-butyl alcohol, the solution froze at 15.3 .Which of the following is most likely the identity of this unknown liquid?ethylene glycol (molar mass = 62.07 g/mol)1-octanol (molar mass = 130.22 g/mol)glycerol (molar mass = 92.09 g/mol)2-pentanone (molar mass = 86.13 g/mol)1-butanol (molar mass = 74.12 g/mol)

Answers

Answer: ethylene glycol (molar mass = 62.07 g/mol)

Explanation:

Depression in freezing point :

Formula used for lowering in freezing point is,

\Delta T_f=k_f* m

or,

\Delta T_f=k_f* \frac{\text{mass of solute}}{\text{molar mass of solute}* \text{weight of solvent in kg}}

where,

T_f = change in freezing point

k_f = freezing point constant= 9.10^0C/m

m = molality

Given mass of solute = 0.807 g

Molar mass of solute=? g/mol

weight of solvent in kg= 11.6 g=0.0116 kg

\Delta T_f=T^(o)_f-T_f=25.5^0C-15.3^0C)=10.2^0C

10.2=9.10* \frac{0.807}{\text{molar mass of solute}* 0.0116kg}

{\text{molar mass of solute}}=62.07 g/mol

Thus the solute is ethylene glycol which has same molecular mass as calculated, i.e 62.07 g/mol.

Which is the best metal to use in an alloy to increase its electrical conductivity?Aluminum (Al)
Silver (Ag)
Zinc (Zn)
Antimony (Sb)

Answers

Answer:

Its Silver!

Explanation:

I took a quiz, and i got it right!

If you mix metal oxide with water, the solution will be acidic. true false

Answers

Answer: False

Explanation:

Metal oxides that dissolve in water, react with water to form basic solutions.

Nonmetal oxides react with water to form acidic solutions.

Final answer:

False. The nature of the solution actually depends on the type of metal oxide. Not all metal oxides will make water acidic when mixed.

Explanation:

The statement that mixing metal oxide with water will result in an acidic solution is generally false.

Actually, the nature of the solution (acidic, basic, or neutral) after mixing metal oxide with water depends on the type of metal oxide. Some metal oxides, particularly those of alkali metals and alkaline earth metals (Group 1 and 2 in the Periodic Table), form basic solutions when dissolved in water. For instance, sodium oxide or magnesium oxide will react with water to form their respective hydroxides, which are basic in nature.

However, certain metal oxides like aluminum oxide or zinc oxide may react with water to form amphoteric solutions (can behave as both acids and bases).

Thus, not all metal oxides will make the water acidic when mixed.

Learn more about Metal Oxides and Water here:

brainly.com/question/31565517

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