<?xml version="1.0" encoding="UTF-8"?>
<openChecklist version="1.0">
  <title>Beechcraft BE-55 _ BE-58 Baron — BE55_TEST_a</title>
  <contentHash>7dcb3539fed29b93d9469645cd187e286e20890e253e743f94a39c61c1fa28be</contentHash>
  <aircraft make="Beechcraft" model="BE-55 _ BE-58 Baron" variant="" category="standard_normal"/>
  <verification sourceFidelity="unreviewed" operationalReview="none" completeness="full"/>
  <rights status="licensed" license=""/>
  <knownIssue severity="content_gap">Section "Open Book Questions" item count differs between passes (21 vs 85); verify nothing was dropped.</knownIssue>
  <sections>
    <section id="" phase="reference" criticality="normal">
      <title>Open Book Questions</title>
      <item type="subtitle" index="0" tickable="false" memoryItem="false" indent="0">
        <text>THE FOLLOWING QUESTIONS ARE OPEN BOOK</text>
      </item>
      <item type="note" index="1" tickable="false" memoryItem="false" indent="0">
        <text>Refer to the Army T-42A Operator’s Manual</text>
      </item>
      <item type="challenge" index="2" tickable="true" memoryItem="false" indent="0">
        <text>1. If the pilot’s brakes fail, the aircraft may be slowed using the
    parking brake.

     A. True.  The aircraft has two independent brake systems as a backup
        for just such an emergency.
     B. False.  Setting or pulling the parking brake knob does not
        pressurize the brake system, but closes the valve in the lines so
        that the hydraulic pressure built up by pressing the brake pedals
        is retained..</text>
      </item>
      <item type="challenge" index="3" tickable="true" memoryItem="false" indent="0">
        <text>2. Should the induction air filter become blocked by ice, dust, water,
    etc., a spring-loaded door will automatically open providing an
    alternate source of intake air.

     A. True.  If the normal air intake is sufficiently blocked, the
        partial vacuum created will open the spring loaded door.
     B. False.  The pilot must manually select the alternate air source by
        positioning the appropriate alternate air control lever, on the
        lower part of the throttle quadrant, to the ON position.</text>
      </item>
      <item type="challenge" index="4" tickable="true" memoryItem="false" indent="0">
        <text>3. In the event of a total failure of the aircraft’s electrical system
    which of the following engine instruments will still operate normally?
    More than one answer may be correct

     A. Tachometer.
     B. Manifold pressure gauge.
     C. Oil pressure gauge.
     D. Oil and cylinder head temperature gauges.</text>
      </item>
      <item type="challenge" index="5" tickable="true" memoryItem="false" indent="0">
        <text>4. Fuel boost pumps in the Baron _____________________

     A. are not normally used for takeoffs, landings, and in flight
     B. are used for priming, for failure of engine driven pumps, or to
        correct fuel pressure fluctuations.
     C. can draw fuel from any tank.
     D. All of the above.</text>
      </item>
      <item type="challenge" index="6" tickable="true" memoryItem="false" indent="0">
        <text>5. The two main fuel tanks in each wing leading edge contain _______
    usable and the two auxiliary tanks in the wing panels outboard of each
    engine nacelle contain ________ usable for a total useable fuel
    capacity of ________:

     A. 50 gal;  21 gal;  142 gal
     B. 40 gal;  31 gal;  142 gal
     C. 40 gal;  28 gal;  136 gal
     D. 37 gal;  31 gal;  136 gal</text>
      </item>
      <item type="challenge" index="7" tickable="true" memoryItem="false" indent="0">
        <text>6. If one engine fails in flight, which fuel tanks are available to feed
    the operating engine?

     A. Main only on good engine side; main and aux on dead engine side.
     B. Main and aux on good engine side; aux only on dead engine side.
     C. Main and aux on good engine side; main only on dead engine side.
     D. Main and aux on good engine side; main and aux on dead engine side.</text>
      </item>
      <item type="challenge" index="8" tickable="true" memoryItem="false" indent="0">
        <text>7. When may the fuel selectors be switched to the auxiliary tanks after
    takeoff?

     A. Only during level flight.
     B. Only after 60 minutes of fuel have been used from the main tanks to
        allow room for the fuel vapors being returned from the carburetor.
     C. The auxiliary tanks should only be used after the main tanks have
        been depleted.
     D. The auxilary tanks should only be used after the main tanks are
        half empty to maintain the airplane within its weight and balance
        limits.</text>
      </item>
      <item type="challenge" index="9" tickable="true" memoryItem="false" indent="0">
        <text>8. Illumination of the yellow battery charge rate caution light ________.

     A. indicates a battery overcharge rate exists
     B. is normal after engine start, but should extinguish within two to
        five minutes.
     C. may indicate a battery malfunction if this occurs in cruise flight.
         The emergency checklist should be followed.
     D. All of the above.</text>
      </item>
      <item type="challenge" index="10" tickable="true" memoryItem="false" indent="0">
        <text>9. Each alternator switch has three positions: OFF, ON, and RE-EXC. The RE-
    EXC position _________.

     A. Is used when the battery switch has been turned OFF because of a
        battery malfunction and the alternators have dropped off line.
     B. Is used to energize the alternators after normal engine starts.
     C. Is used to re-excite the alternator field if both alternators are
        off-line and the battery has deteriorated below the level required
        to re-establish normal alternator operation..
     D. Either A or C</text>
      </item>
      <item type="challenge" index="11" tickable="true" memoryItem="false" indent="0">
        <text>10. If the taxi light is inoperative, the landing lights may be used
    without restriction for ground operations.

     A. True.  There is no restriction on the use of the landing lights
        while on the ground.
     B. False.  The use of landing lights on the ground must be minimized
        since the flow of cooling air over the light shields is
        insufficient to prevent overheating.</text>
      </item>
      <item type="challenge" index="12" tickable="true" memoryItem="false" indent="0">
        <text>11. A minimum run takeoff followed by an obstacle clearance climb as
    described in the T-42 flight manual, _______.

     A. is a contingency maneuver performed below VMCA and below power-off
        stall speed.
     B. will result in a loss of aircraft control and probably a spin if an
        engine failure is experienced on takeoff before VYSE has been
        attained.
     C. is not an authorized maneuver for Langley Aero Club members (with
        or without an instructor on board).
     D. All of the above.</text>
      </item>
      <item type="challenge" index="13" tickable="true" memoryItem="false" indent="0">
        <text>12. If the fuel pressure on an engine drops below normal operating limits
    or a fuel leak exists or is suspected, the throttle should be retarded
    to idle and the engine shut down immediately.

     A. True.  It is important to retard the throttle to minimize the
        amount of fuel being pulled into the engine compartment.
     B. False.  Because of the danger of fire when the airflow through the
        engine nacelle is changed, under no conditions should the throttle
        be retarded when a fuel leak is even suspected.</text>
      </item>
      <item type="challenge" index="14" tickable="true" memoryItem="false" indent="0">
        <text>13. You are planning to takeoff on Runway 2 and the winds are reported as
    270 at 20.  What is the crosswind and is this within the Langley Aero
    Club’s 20 kt crosswind limits for the BE-55?</text>
      </item>
      <item type="challenge" index="15" tickable="true" memoryItem="false" indent="0">
        <text>14. What is the Accelerate / Stop distance for the following conditions?


   Rwy   17-35
   Gross Weight   5,100 lb
   Flaps Up
   Field Elevation  4,000 ft MSL
   Temperature 30° C
   Winds 350 at 10 kt
   A. 3960 feet
   B. 4200 feet
   C. 4400 feet
   D. 4280 feet</text>
      </item>
      <item type="challenge" index="16" tickable="true" memoryItem="false" indent="0">
        <text>15. What is the Single Engine Climb Rate using the conditions in Question
    14?

   A. 80 fpm
   B. 110 fpm
   C. 160 fpm
   D. 180 fpm</text>
      </item>
      <item type="challenge" index="17" tickable="true" memoryItem="false" indent="0">
        <text>16. Using the data below calculate the Center of Gravity location for
    N43657.  (Copies of the weight and balance data for all Aero Club
    aircraft are contained in a binder in the Flight Planning room)


   Pilot and front passenger 380 lb
   Rear seat passengers   380 lb
   Baggage  125 lb
   Full fuel


   A. 43.22 in aft of datum
   B. 50.16 in aft of datum
   C. 84.03 in aft of datum
   D. 840.3 in aft of datum</text>
      </item>
      <item type="challenge" index="18" tickable="true" memoryItem="false" indent="0">
        <text>17. What is the True Airspeed for the following conditions (two engines)?


Gross Weight   4,800 lb
Field Elevation  2,000 ft MSL
Temperature at the departure 16° C
Cruise Altitude  10,000 ft MSL
Cruise Power   60% BHP
   A. 168 knots
   B. 181 knots
   C. 178 knots
   D. 188 knots</text>
      </item>
      <item type="challenge" index="19" tickable="true" memoryItem="false" indent="0">
        <text>18. What is the Cruise Fuel Pressure for the conditions in Question 17?

   A. 5.6 PSI
   B. 6.5 PSI
   C. 6.3 psi
   D. 7.3 psi</text>
      </item>
      <item type="challenge" index="20" tickable="true" memoryItem="false" indent="0">
        <text>19. What is the Fuel Flow Per Engine (gal / hr) for the conditions in
    Question 17?

   A. 9.8
   B. 11.0
 C. 58.0
 D. 75.0</text>
      </item>
    </section>
  </sections>
</openChecklist>
