1/62
Proverbs 16:3
Name | Mastery | Learn | Test | Matching | Spaced | Call with Kai | Chat |
|---|
No analytics yet
Send a link to your students to track their progress
d. H
Most abundant element in the universe.
a. O2
b. Si
c. Al
d. H
a. O2
Most abundant element in the Earth.
a. O2
b. Si
c. Al
d. N2
b. Si
2nd most abundant element in the Earth.
a. O2
b. Si
c. Al
d. N2
c. Al
3rd most abundant element in the Earth.
a. O2
b. Si
c. Al
d. N2
a. O2
Most abundant nonmetal in the Earth.
a. O2
b. Si
c. Al
d. N2
c. Al
Most abundant metal in the Earth.
a. O2
b. Si
c. Al
d. N2
d. N2
Most abundant air gas.
a. H
b. O2
c. CO2
d. N2
e. He
f. None
Air is composed of the following except:
a. N2
b. O2
c. CO2
d. Ne
e. H
f. None
a. N2
71% of air is:
a. N2
b. O2
c. CO2
d. Ne
e. H
f. None
b. O2
29% of air is:
a. N2
b. O2
c. CO2
d. Ne
e. H
f. None
f. All
Air is composed of small amounts of:
a. CO2
b. Ne
c. H
d. a and b
e. b and c
f. All
c. Ar
The most abundant noble gas.
a. He
b. Ne
c. Ar
d. Kr
e. Xe
f. Rn
d. Kr - Xe is also considered the least abundant noble gas
The least abundant noble gas.
a. He
b. Ne
c. Ar
d. Kr
e. Rn
d. Xe
The least abundant noble gas.
a. He
b. Ne
c. Ar
d. Xe
e. Rn
a. K - Potassium
Primary or major intracellular cation:
a. K
b. Na
c. HPO4
d. Cl
b. Na - Sodium
Primary or major extracellular cation:
a. K
b. Na
c. HPO4
d. Cl
c. HPO4 - Phosphate
Primary or major intracellular anion:
a. K
b. Na
c. HPO4
d. Cl
d. Cl - Chloride
Primary or major extracellular anion:
a. K
b. Na
c. HPO4
d. Cl
a. Mg - Magnesium
Secondary or minor intracellular cation:
a. Mg
b. Ca
c. SO4
d. HCO3
b. Ca - Calcium
Secondary or minor extracellular cation:
a. Mg
b. Ca
c. SO4
d. HCO3
c. SO4 - Sulfate
Secondary or minor intracellular anion:
a. Mg
b. Ca
c. SO4
d. HCO3
d. HCO3 - Bicarbonate
Secondary or minor extracellular anion:
a. Mg
b. Ca
c. SO4
d. HCO3
a. H2CO3
Most important physiological buffer
a. H2CO3
b. SO4
c. NaOH
d. H2O
a. Acidic
CO2
a. Acidic
b. Basic
c. Neutral
b. Basic
HCO3
a. Acidic
b. Basic
c. Neutral
a. Respiratory acidosis
Increase CO2 will lead to:
a. Respiratory acidosis
b. Respiratory alkalosis
c. Metabolic acidosis
d. Metabolic alkalosis
b. Respiratory alkalosis
Decrease CO2 will lead to:
a. Respiratory acidosis
b. Respiratory alkalosis
c. Metabolic acidosis
d. Metabolic alkalosis
d. Metabolic alkalosis
Increase HCO3 will lead to:
a. Respiratory acidosis
b. Respiratory alkalosis
c. Metabolic acidosis
d. Metabolic alkalosis
c. Metabolic acidosis
Decrease HCO3 will lead to:
a. Respiratory acidosis
b. Respiratory alkalosis
c. Metabolic acidosis
d. Metabolic alkalosis
c. Vitamin C
Enhance absorption of Fe.
a. Vitamin A
b. Vitamin B
c. Vitamin C
d. Vitamin D
e. Vitamin E
d. Vitamin D
Enhance absorption of Ca.
a. Vitamin A
b. Vitamin B
c. Vitamin C
d. Vitamin D
e. Vitamin E
e. Vitamin E
Enhance absorption of Se.
a. Vitamin A
b. Vitamin B
c. Vitamin C
d. Vitamin D
e. Vitamin E
b. Blue vitriol - Cupric sulfate, CuSO4
Green vitriol - Ferrous sulfate, FeSO4
White vitriol - Zinc sulfate, ZnSO4
Enhance Fe utilization.
a. Green vitriol
b. Blue vitriol
c. White vitriol
d. Black vitriol
a. Black cylinder
Container for N2:
a. Black cylinder
b. Green cylinder
c. Blue cylinder
d. Dark green
e. Blue bottle
f. Grey
c. Blue cylinder
Container for NO2, N2O:
a. Black cylinder
b. Green cylinder
c. Blue cylinder
d. Dark green
e. Blue bottle
f. Grey
e. Blue bottle
Container for Mg(OH)2:
a. Black cylinder
b. Green cylinder
c. Blue cylinder
d. Dark green
e. Blue bottle
f. Grey
b. Green cylinder
Container for O2:
a. Black cylinder
b. Green cylinder
c. Blue cylinder
d. Dark green
e. Blue bottle
f. Grey
d. Dark green
Container for Ar.
a. Black cylinder
b. Green cylinder
c. Blue cylinder
d. Dark green
e. Blue bottle
f. Grey
f. Grey
Container for CO2:
a. Black cylinder
b. Green cylinder
c. Blue cylinder
d. Dark green
e. Blue bottle
f. Grey
a. Brown
Container for He:
a. Brown
b. Red
c. Maroon
d. Yellow
e. Coated w/ petroleum or under oil
f. Underwater
b. Red
Container for H2:
a. Brown
b. Red
c. Maroon
d. Yellow
e. Coated w/ petroleum or under oil
f. Underwater
c. Maroon
Container for Acetylene:
a. Brown
b. Red
c. Maroon
d. Yellow
e. Coated w/ petroleum or under oil
f. Underwater
d. Yellow
Container for Cl2
a. Brown
b. Red
c. Maroon
d. Yellow
e. Coated w/ petroleum or under oil
f. Underwater
e. Coated w/ petroleum or under oil - since Li is very reactive
Container for Li:
a. Brown
b. Red
c. Maroon
d. Yellow
e. Coated w/ petroleum or under oil
f. Underwater
f. Underwater
Container for white or yellow P:
a. Brown
b. Red
c. Maroon
d. Yellow
e. Coated w/ petroleum or under oil
f. Underwater
d. a and b - Silica and Sodium Carbonate
Major component of glass.
a. Silica
b. Na2CO3
c. MgOH
d. a and b
e. a and c
f. All
a. Glass Type I
Highly Resistant Borosilicate glass:
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. Glass Type IV
c. B
Added to type I glass to decrease coefficient of expansion and produce resistance against high temperature.
a. K
b. Se
c. B
d. Pb
b. Glass Type II
Treated Soda Lime Glass:
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. Glass Type IV
c. Glass Type III
Soda Lime Glass:
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. Glass Type IV
d. Glass Type IV
General Soda Lime Glass:
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. Glass Type IV
a. Glass Type I
What type of glass are Pyrex and Borosil?
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. Glass Type IV
c. Glass Type III
Glass type for dry powder packaging.
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. Glass Type IV
f. c and d
Glass Type III - also generally NP unless indicated otherwise
Glass Type IV - NP
Glass type not for parenteral:
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. Glass Type IV
e. b and c
f. c and d
b. Glass Type II
Water attack leach test is used for:
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. a and b
e. a and c
f. All
e. a and c - Glass Type I and III
Powdered glass leach test is used for:
a. Glass Type I
b. Glass Type II
c. Glass Type III
d. a and b
e. a and c
f. All
a. K
Added to glass for brown and amber color to be light resistant:
a. K
b. Se
c. MnO2
d. Borate
b. Se
Added to glass for red color.
a. K
b. Se
c. MnO2
d. Borate
c. MnO2
Added to glass for masking blue-green color Fe usually present in glass:
a. K
b. Se
c. MnO2
d. Borate
d. Borate
Added to glass to decrease coefficient of expansion:
a. K
b. Se
c. MnO2
d. Borate
b. Pb
Added to glass to increase refractive index:
a. Borate
b. Pb
c. Rare earths
d. HF
c. Rare earths
Added to glass for it to selectively absorb light of certain wavelengths thus used in spectrophotometry:
a. Borate
b. Pb
c. Rare earths
d. HF
d. HF
Added to glass for glass etching:
a. Borate
b. Pb
c. Rare earths
d. HF