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Med Tech Exam Review - Clinical Chemistry Exam Questions With Correct Answers

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Med Tech Exam Review - Clinical Chemistry Exam Questions With Correct Answers

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Med Tech Exam Review - Clinical
Chemistry Exam Questions With Correct
Answers

In the analytic technique of potentiometry, a comparison is made between the
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voltage of one half-cell connected to another half-cell. It is customary that all
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half-cell potentials be compared to the potential generated by a standard
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electrode. This standard electrode is: | | | | |




a. A hydrogen electrode
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b. a calcium electrode
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c. a potassium electrode
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d. a copper electrode
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e. an iron electrode - CORRECT ANSWER✔✔-A. a half-cell, also called an
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electrode, is composed of a single metallic conductor surrounded by a solution of
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electrolyte. An electrochemical cell consists of two half-cells. If two different
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kinds of half-cells are connected in such a way as to make a complete circuit, a
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current will flow because of the potential difference between the two electrodes.
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The connection must be between the two electrolyte solutions, usually by means
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of a salt bridge. The universally accepted standard half-cell with which all other
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half-cells are compared is the hydrogen electrode, arbitrarily assigned a potential
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E of 0.000 volt
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in an electrolytic cell, the half-cell where reduction takes place is known as the
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a. anode|

,b. cathode
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c. inidcating electrode
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d. reference electrode
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e. standard electrode - CORRECT ANSWER✔✔-B. oxidation involves the loss of
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electrons, and reduction the gain of electrons. In an electolytic cell composed of
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two different half-cells - for example, zinc in zinc sulfate and copper in copper
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sulfate - electrons will flow from the anode to the cathode. thus reduction takes
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place at the cathode
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mercury covered by a layer of mercurous chloride in contact with satruated
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potassium chloride solution is a description of which of the following types of
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electrodes?
a. antimony
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b. calomel
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c. hydrogen
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d. quinhydrone
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e. silver/silver chloride - CORRECT ANSWER✔✔-B. In practical applications of
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potentiometry, it is desirable to use one half-cell with a known and constant
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potential that is not sensitive to the composition of th ematerial to be analyzed.
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This is called the reference electrode. One common reference electrode is the
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calomel electrode, which consists of mercury covered by a layer of mercurous
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chloride in contact with a saturated solution of potassium chloride. The other
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half-cell, called the indicator electrode, is selected on the basis of the change in
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its potential with change in the concentration of the analyte of interest
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when the pH-sensitive glass electrode is not actively in use, it should be kept in
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a. distilled or deionized water
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,b. physiologic saline solution
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c. the medium recommended by the manufacturer
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d. a buffer solution with a pH near the pH of the internal solution in the electrode
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e. a buffer solution with a pH near the pH at which the electrode is to be used -
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CORRECT ANSWER✔✔-C. for optimum performance, pH-sensitive glass
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electrodes that are not actively in use should be kep timmersed in an aqueous
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medium. Since the exact composition of the pH-sensitive glass varies from one
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manufacturer to another, the glass electrode should be maintained in the
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medium recommended by the manufacturer. Usual media are water, dilute HCl,
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and buffer with a pH near the pH of the solution to be measured. The functioning
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of a glass electrode depends on the properties of the pH-sensitive glass. A typical
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glass electrode is made by sealing a thin piece of pH-sensitive glass at the end of
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a piece of glass tubing and filling the tube with a solution of hydrochloric acid
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saturated with silver chloride. A silver wire is immersed in the solution in the tube
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with one end extending outside the tube for external connection. This is
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essentially a silver/silver chloride reference electrode sealed within the tube with
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the pH-sensitive glass tip. This pH-sensitive glass functions appropriately only
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when it is saturated with water. Then eac surface of the glass develops a hydrated
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latice, where exchange of alkaline metal ions in the lattice for hydrogen ions in
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the test solution can occur
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Colligative properties of solutions include all of the following except:
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a. boiling point
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b. freezing point
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c. pH | |




d. osmotic pressure
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e. vapor pressure - CORRECT ANSWER✔✔-C. colligative properties of a solution
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are those properties that depend only on the number of particles in solution, not
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on the nature of the particles. The colligative properties are boiling point, freezing
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, |point, osmotic pressure, and vapor pressure. Terms used to describe the
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concentration of particles in solution are osmole (the number of particles,
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6.0224x10^23, that lowers the freezing point 1.86C) and osmolal (the| | | | | | | | | |


concentration of 1 osm of solute per kilogram of water). One mole of an
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unionized solute dissolved in 1 kg of water lowers the freezing pont 1.86C. thus it
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is an osmolal solution. For un-ionized substances such as glucose, 1 mol equals 1
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osm. For substances that ionize, such as sodium chloride, werein each molecule
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in solution becomes two ions and thus two particles, 1 mol of sodium chloride
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theoretically equals 2 osm. In practice, howerever, this is not always the case; an
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osmotic activit coefficient factor is used to correct for the deviation
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the freezing point osmometer is based on the principle that
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a. the freezing point depression is inversely proportional to the amount of solute
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in the solution
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b. the freezing point depression varies as the logarithm of the concenration of
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solute
c. the freezing point is raised by an amount that is inversely proportional to the
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concentration of dissolved particles in the solution | | | | | |




d. the freezing point is lowered by an amount that is directly proportional to the
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concentration of dissolved particles in the solution | | | | | | |




e. there is no relationship between freezing point depression and the
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concentration of dissolved particles in the solution - CORRECT ANSWER✔✔-D. the
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|freezing point of an aqueous solution is lowered 1.86C for every osmole of
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dissolved particles per kilogram of water. These particles may be ions, for
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example. Na+ and Cl-, or undissociated molecules such as glucose. The freezing
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point osmometer is an instrument designed to measure the freezing point of
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solutions. It uses a thermistor that is capable of measuring very small changes in
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temperature

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