Answer:
To explain why they are revolting against the king
Explanation:
Hey there!:
E = energy gained (input) - energy lost (output)
∆E = 150J - 115 J
∆E = 35 J
Hope that helps!
The change in internal energy (?E) of the system is 35 J based on the first law of thermodynamics.
This problem can be solved using the first law of thermodynamics, which states that the change in internal energy (?E) of a system is equal to the heat added to it (Q) minus the work done by it (W) - this is expressed as ?E = Q - W.
In this particular case, the system loses 115 J of heat, so Q equals -115 J (as it's lost, it's negative), and 150J work is performed on the system which equals +150 J (as work is done on it, it is positive). Therefore, substituting these values into the formula, we get: ?E = -115 J - (-150 J) = 35 J:
So, the change in internal energy of the system is 35 J.
#SPJ3
an ion
inert
a molecule
An atom that has gained or lost electrons is called an ion. The correct answer is option b.
An ion is an atom or molecule with an uneven number of protons and electrons that produces a net electrical charge.
When an atom gains one or more electrons, it becomes negatively charged and is called an anion. When an atom loses one or more electrons, it becomes positively charged and is called a cation.
For example, when sodium (Na) loses one electron, it becomes a positively charged ion or cation:
Similarly, when chlorine (Cl) gains one electron, it becomes a negatively charged ion or anion:
Therefore, an ion is an atom that has gained or lost electrons. Option b is the correct answer.
Learn more about ion here:
#SPJ6
Answer : The approximate mass of is 65 grams.
Explanation :
First we have to calculate the moles of .
As, molecules of present in 1 mole of
So, molecules of present in mole of
Now we have to calculate the mass of .
Molar mass of = 98 g/mole
Therefore, the approximate mass of is 65 grams.