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Margarita [4]
3 years ago
6

Knowledge of atomic structure has evolved over time. Thomson discovered that atoms contain electrons, Rutherford discovered that

most of the mass of an atom is concentrated in its center, and Bohr discovered that electrons orbit the nucleus. Taken together, what do these discoveries demonstrate
Chemistry
2 answers:
zhenek [66]3 years ago
5 0
  <span>J.J. Thompson's plum pudding model was devised after the discovery of electron but before the discovery of the nucleus of the atom. Rutherford, who overturned Thompson's plum pudding model proposed that on his experiment (Rutherford model) he discovered that the atom has a tiny, heavy nucleus, which is named as nucleus of the atom.<span> While the most important properties of </span><em>atomic</em><span> and molecular </span><em>structure</em><span> was explained using the simple [picture of an atom called the Bohr Model. This model was proposed by Niels Bohr. He also concluded that an </span><em>atom</em><span> is a small, positively charged nucleus surrounded by orbiting electrons. </span></span> <span> The different theories and discoveries  by the great scientists mentioned above demonstrate the atomic model and composition of atoms.</span>  



sashaice [31]3 years ago
5 0

Answer:

A. The cumulative nature of science.

Explanation:

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The blank <br> and the blank <br> of atoms are the same on both sides of a chemical equation.
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Answer:

Every chemical equation adheres to the law of conservation of mass, which states that matter cannot be created or destroyed. Therefore, there must be the same number of atoms of each element on each side of a chemical equation.

Explanation:

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Which statement accurately describes the molecule Br2?
Zinaida [17]

there are no choices of statements

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The table below shows the volume of two samples, A and B, when placed in three containers of different volumes.
deff fn [24]

Answer: B is a gas because its volume is less than the volume of the containers.

Explanation: hope this help bye

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3 years ago
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Draw a Lewis structure for C2H3Cl . Include all hydrogen atoms and show all unshared electron pairs. None of the atoms bears a f
Korvikt [17]

Answer:

See attached picture.

Explanation:

Hello!

In this case, since C2H3Cl is an organic compound we need a central C-C parent chain to which the three hydrogen atoms and one chlorine atom provides the electrons to get all the octets except for H as given on the statement.

In such a way, on the attached picture you can find the required Lewis dot structure without formal charges and with all the unshared electron pairs, considering there is a double bond binding the central carbon atoms in order to compete their octets.

Best regards!

5 0
3 years ago
How much energy (in Joules) is required to convert 129 grams of ice at −23.0 °C to liquid water at 18.0 °C?
Karo-lina-s [1.5K]

Answer:

The energy that is required for the process is:

6230.7 J + 42957 J + 9715.2 J = <u>58902.9 joules</u>

Explanation:

This is a calorimetry problem:

Q = m . C . ΔT

Q = heat; m = mas; C is the specific heat and

ΔT = Final T° - Initial T°

Q = C lat . m

Q = Heat

m = mass

C lar = Latent heat of fusion

First of all we calculate the heat for ice, before it takes the melting point. (from -23°C  to 0°C)

Q = 129 g . 2.10 J/g°C . (0°C - (-23°C)

Q = 129 g . 2.10 J/g°C . 23°C → 6230.7 joules

Then, the ice has melted. To be melted and change the state it required:

Q = C lat . m

Q = 333 J/°C . 129 g → 42957 joules

And in the end, we have water that changed its T° from O°C to 18°C

Q = 129 g . 4.184 J/g °C . (18°C - 0°C)

Q = 9715.2 Joules

The energy that is required for the process is:

6230.7 J + 42957 J + 9715.2 J = 58902.9 joules

5 0
3 years ago
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