Answer: The correct statement is atoms contain small, negatively charged particles.
Explanation:
J.J.Thomson was a scientist which discovered electrons that are present in an atom.
He did an experiment and gave a model for this. The experiment conducted by him was Cathode Ray experiment and the model given by him was Plum pudding model.
From cathode ray, he showed that the cathode ray was composed of a negatively charged particles and named it as electrons. From plum pudding experiment, he said that the electrons are embedded in the atom. These particles carry negative charge and are very small as compared to the atom.
Hence, the correct statement is atoms contain small, negatively charged particles.
B. Air
C. Milk
D. Vinegar in water
Answer:
B
Explanation:
b/c air is not seen by eye
B. The more hydrogen in the molecule, the stronger the force.
C. The more polar the molecules, the stronger the force.
D. The larger the atomic radius, the stronger the force.
The more polar the molecules, the stronger the force. Hence, option C is correct.
Dipole-Dipole forces are the interaction between molecules of the permanent dipole. It occurs between the partially charged positive molecules and partially charged negative molecules.
Polar molecules align themselves so that the δ– end of one molecule is near the δ+ ends of other molecules.
The molecules are thus attracted to each other. Dipole-dipole forces exist between polar molecules.
The greater the polarity, the stronger the dipole-dipole forces.
Hence, option C is correct.
Learn more about dipole-dipole force here:
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The final temperature of the gas is 260.01 K.
The final temperature can be calculated by using the equation as follows:-
........(1)
Here, and
is the pressure of this gas before and after the changes.
and
is volume of this gas before and after the changes.
and
is the temperature (in degrees Kelvins) of this gas before and after the changes.
Given values:-
Substitute all the values in the equation (1) as follows:-
Hence, the final temperature of the gas is 260.60 K.
To know more about:-
Explanation:
The data is given as follows.
= 1.12 atm,
= 1.67 atm
,
,
= ?
Therefore, calculate the final temperature using the relation as follows.
=
=
=
= 260.605 K
= 260.61 K (approx)
Thus, we can conclude that final temperature is 260.61 K.