Answer:
Lemon
HCI
Blood
Saliva
Bleach
NaOH
Explanation:
Blood 7.35-7.45
Bleach 12.6
Saliva 6.2-7.6
Lemon 2-3
HCI 3.01
NaOH 13
To increase the polarity of HBr, the bromine atom can be replaced with a hydrogen atom.
A polar molecule is one in which a dipole moment exists. There is a positive end and a negative end in a polar molecule. Conventionally, the direction of the dipole is from the positive end of the molecule towards the negative end of the molecule.
If we want to increase the polarity of the molecule then we must substitute the bromine atom with a more electronegative atom. In this case, chlorine is the best option.
Missing parts;
If you wanted to change the polarity of hydrogen bromide (HBr) by substitutingthe bromine by a different atom. Which atom would increase the polarity of the molecule?
A. chlorine (CI)
B. iodine (1)
C. sulfur (S)
D. hydrogen (H)
Learn more: brainly.com/question/24775418
Answer:
This question is incomplete as it lacks options, the options are:
A. chlorine (CI)
B. iodine (1)
C. sulfur (S)
D. hydrogen (H)
The answer is A. Chlorine
Explanation:
Polarity of a substance in chemistry is a function of electric charges in the atoms of the molecules involved. Polarity, however, can be increased or decreased in molecules depending on the charges of the atoms that form them.
Since polarity increases when an atom in the molecule has a high ability to pull electrons toward itself i.e. electronegativity, one atom that can be substituted for Bromine in the hydrogen bromide (HBr) molecule in order to increase its polarity is CHLORINE. This is because Chlorine (Cl) is more electronegative than Bromine atom, hence, will pull more electrons from hydrogen to make the HCl molecule more polar than HBr.
2. A carbon-carbon bond with a bond order of 3
3. A carbon-carbon bond with a bond order of O
4. carbon-carbon bond with a bond order of 1
Answer:
Bond length of C=C is largest(134 pm) because both the carbon atoms have same electronegativity. In case of C=O. and C=N carbon is bonded to highly electronegative atoms so bond length is shoreter as compared to C=C
The number of moles of HBr and the concentration of the Ca(OH)2 solution is:
The number of moles HBr is = 0.001825
The concentration of Ca(OH)2 is= 0.009125 M
Data given as per question:
The Volume of the Ca(OH)2 is = 100.0 mL = 0.100 L
Then, Molarity of HBr is = 5.00 * 10^-2 M
After that Volume of HBR is = 36.5 mL = 0.0365 L
When The balanced equation is:
Then, Ca(OH)2 + 2HBr → CaBr2 + 2H2O
Then the Calculate molarity of Ca(OH) 2
After that b*Va* Ca is = a * Vb*Cb
Then ⇒with b = the coefficient of HBr is = 2
Now, ⇒with Va = the volume of Ca(OH)2 is = 0.100 L
After that ⇒with ca is = the concentration of Ca(OH)2 = TO BE DETERMINED
Now, ⇒with a = the coefficient of Ca(OH)2 = 1
Then ⇒with Vb is = the volume of HBr = 0.0365 L
Now, ⇒with Cb is = the concentration of HBr = 5.00 * 10^-2 = 0.05 M
Then 2 * 0.100 * Ca = 1 * 0.0365 * 0.05
Now, Ca is = (0.0365*0.05) / 0.200
Therefore, Ca is = 0.009125 M
After that, we Calculate moles HBr
Moles HBr = concentration HBr * volume HBr
Moles HBr = 0.05 M * 0.0365 L
Moles HBr = 0.001825 moles
Find more information Acid solution for neutralization here:
Answer:
The number of moles HBr = 0.001825
The concentration of Ca(OH)2 = 0.009125 M
Explanation:
Step 1: Data given
Volume of the Ca(OH)2 = 100.0 mL = 0.100 L
Molarity of HBr = 5.00 * 10^-2 M
Volume of HBR = 36.5 mL = 0.0365 L
Step 2: The balanced equation
Ca(OH)2 + 2HBr → CaBr2 + 2H2O
Step 3: Calculate molarity of Ca(OH) 2
b*Va* Ca = a * Vb*Cb
⇒with b = the coefficient of HBr = 2
⇒with Va = the volume of Ca(OH)2 = 0.100 L
⇒with ca = the concentration of Ca(OH)2 = TO BE DETERMINED
⇒with a = the coefficient of Ca(OH)2 = 1
⇒with Vb = the volume of HBr = 0.0365 L
⇒with Cb = the concentration of HBr = 5.00 * 10^-2 = 0.05 M
2 * 0.100 * Ca = 1 * 0.0365 * 0.05
Ca = (0.0365*0.05) / 0.200
Ca = 0.009125 M
Step 4: Calculate moles HBr
Moles HBr = concentration HBr * volume HBr
Moles HBr = 0.05 M * 0.0365 L
Moles HBr = 0.001825 moles
Answer:
6
Explanation:
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PLEASE HELP
First of all altitude, is the height of anything especially above sea level. So when your at different altitudes its hotter or colder. Like outside the higher that water gets it freezes cause it going all the way up to the cold mountains and as you go down in altitude depending on the day it gets warmer and evaporates.
Sorry, I don't know if I explained it well, hope I helped you out! :)
Explanation
Therefore