A brick measures 25 cm by 12 cm by 13 cm. What is the volume of the brick in cm3? How many millilitters of water would this brick displace?

Answers

Answer 1
Answer:

Answer:

Volume of brick = 3900 cm3 = 3.9*10^3 cm3

Volume of water displaced = 3900 ml = 3.9*10^3 ml

Explanation:

Given:

Dimension of the brick = 25 cm, 12 cm, 13 cm

To determine:

a) Volume of the brick

b) Volume (ml) of water displaced by the brick

Calculation:

a) Volume of the brick (cube) is expressed as a product of the dimensions

Volume = length (l)*width(w)*height(h)

Volume = 25cm*12cm*13 cm = 3900cm^(3) = 3.9*10^(3) cm^(3)

b) The volume of water displaced is equal to  the volume of the brick.

Since, 1 ml = 1 cm3

Therefore, volume of water displaced = 3900 ml = 3.9*10^3 ml

Answer 2
Answer: 25 cm x 12 cm x 13 cm = 3900 cm^3 Water has a density of 1 mL/cm^3, so the brick would displace 3900 mL of water.


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Regarding water's ability to move up a glass tube, which of the following is true?

Answers

This ability of water is called a capillary action. This ability is exhibited by liquids where they flow in tubes without any assistance. This happens due to adhesion, cohesion and surface tension.

Which group tends to have the highest ionization energy? The lowest?a) Halogens; Alkaline earth metals
b) Alkali metals; Noble gases
c) Noble gases; Alkali metals

Answers

Final answer:

The group with the highest ionization energy is(option c) noble gases due to their full electron shell, making it difficult to remove an electron. The group with the lowest ionization energy is(option c) alkali metals because they have only one electron in their outermost shell, which can be easily removed.

Explanation:

The answer to the question is (c) Noble gases; Alkali metals. Ionization energy is the energy required to remove an electron from an atom or ion. A higher ionization energy means it is harder to remove an electron.

Noble gases have the highest ionization energies because they have a full electron shell, so they do not readily give up an electron. On the other hand, alkali metals have the lowest ionization energy, because they have only one electron in their outer shell, which is relatively easy to remove.

Learn more about Ionization Energy here:

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Which liquid is the most viscous A. Syrup B.water C. Milk D. Apple juice

Answers

The most viscous liquid between milk, apple juice, water, and syrup will be the syrup. The syrup is the thickest of these choices. A viscous liquid is slower to pour. The thicker the product is the more viscous it is. Water, milk, and apple juice all flow faster than syrup would. The correct answer is A: syrup.

The correct answer is A.syrup

What is the KE of a 4kg mass, moving at 3m/sec?

Answers

Answer:

The kinetic energy of a 4 kg mass moving at 3 m/s is 18 joules.

Explanation:

The kinetic energy (KE) of an object is calculated using the following formula: (image inserted)

Where:

KE: is the kinetic energy

m: is the mass of the object

v: is the velocity of the object

In your case, the mass (m) is 4 kg, and the velocity (v) is 3 m/s. Plugging these values into the formula.

The unit of kinetic energy is the joule (J), which is equivalent to a kg m^2/s^2. So:

KE = 18 J

An element has an atomic number of 92 and a mass number of 234. how many neutrons does the element have? 192 142 92

Answers

the atomic number of an element is characteristic to that element. Atomic number is the number of protons of that element.
Mass number is the sum of protons and neutrons of the element.
since protons and neutrons have a mass of 1 unit each, they together make up the mass of the element.
atomic number - number of protons - 92
mass number - number of neutrons + protons = 234
number of neutrons = mass number - atomic number 
neutrons = 234 - 92 = 142
answer is 142

What are the properties of an ionic bond?

Answers

Answer:

Ionic Compounds have high boiling and melting points as they're very strong and require a lot of energy to break. The electrostatic forces of attraction between oppositely charged ions lead to the formation of ions. Ionic compounds form crystals. These compounds are brittle and break into small pieces easily.

Explanation: