Answer is: C. Water can dissociate many ionic compounds through ion-dipole interactions.
For example, dissociation of potassium bromide: KBr(aq) → K⁺(aq) + Br⁻(aq).
Some ionic compounds cannot dissociate in water, for example calcium sulfate (CaSO₄), silver chloride (AgCl), lead(II)-carbonate (PbCO₃).
An ion-dipole is electrostatic interaction between a charged ion (cations and anions) and a molecule that has a dipole (in this example water).
Dipole is a separation of positive and negative charges. In water, hydrogen has positive and oxygen has negative charge.
Answer:
-1215.9J is the work done
Explanation:
It is possible to find work done in the change of volume of a gas at constant pressure using:
W = -P×ΔV
Where W is work, P is pressure and V is change in volume}
Replacing:
W = -6atm×(5L-3L)
W = -12atmL
As 1atmL = 101,325J, work done in joules is:
-12atmL ×(101.325J / atmL) = -1215.9J is the work done
The value of work done when a volume increases from 3 liters to 5 liters at 6 atm of pressure is -1215.9 Joules.
Workdone on any boby or by the body will be calculated as:
W = -P×ΔV, where
W = workdone
P = applied or exerted pressure = 6 atm
ΔV = change in volume due to workdone = (5-3) L
Negative sign in the formula shows that work is done on the opposite side of the pressure or volume.
On putting all these values on the above equation, we get
W = -6atm × (5L-3L)
W = -12 atmL
We know that, 1 atmL = 101,325 J,
So, workdone in joules will be written as:
-12 atmL × (101.325J / atmL) = -1215.9 J
Hence, -1215.9 J is the workdone.
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Tetra phosphorous octa bromide is the compound name for P4Br8.
What is compound?
A substance is from a combination of two or more different chemical elements. They are pure chemical substances found in nature.
The name is tetra because there are 4 phosphorous and octa means there is 8 bromide.
The ratio of phosphorous and bromide is 4:8.
Tetra phosphorous octa bromide is the compound name for P4Br8.
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Answer:
The atom's energy will decrease by 8.99 x 10⁻²⁶ J.
Explanation:
The atom's energy will go down by an amount equal to the energy of the photon that it emits.
The energy E of a photon is inversely proportional to its wavelength according to the following equation, where h is Planck's constant and c is the speed of light:
E = (hc)/λ
We substitute the values into the equation to solve for the energy:
E = (hc)/λ = (6.626 x 10⁻³⁴ J·s)(2.998 x 10⁸ m·s⁻¹) / 2.21 m
E = 8.99 x 10 ⁻²⁶ J
Thus, the atom's energy will decrease by 8.99 x 10⁻²⁶ J.
(2) weak ionic bond
(3) strong intermolecular force
(4) weak intermolecular force