A. Work area cable
B. Horizontal cabling
C. Backbone cabling
D. Patchcord
A. Pulling friction
B. Lightning strikes
C. Fiber abrasion
D. Moisture
A. Larger
B. Same size
C. Smaller
A. Excess supplies are currently available from the far east
B. Has a higher bandwidth with laser sources which gives more distance capability with gigabit (and above) networks
C. Can be cabled in more compact cable designs
D. Costs half as much as other multimode fibers
A. Equipment Cord
B. Telecommunications enclosures
C. Work area outlets
D. Horizontal Cable
E. Equipment rooms
A. Uninterruptible power
B. Data quality ground
C. Air conditioning
D. All of the above
A. ST
B. SC
C. LC
D. Any connector with a FOCIS document
A. Weight in cable trays
B. Fire retardance
C. Bend radius
D. Pull strength
A. LSPM or OLTS (Light source and power meter, optical loss test set)
B. All of the above
C. Power meter
D. OTDR
A. Other wireless networks
B. Moving objects
C. All of the above
D. Remote controls like door openers
A. Multimode in backbones
B. Multimode in horizontal connections
C. Singlemode in horizontal connections
D. Singlemode in backbones
A. Connector type
B. Fiber size and type
C. Fiber size and connector type
D. Fiber size and loss specification
A. Fiber optics
B. Documentation
C. Cabling
D. Standards
A. Mounted on walls, not ceilings
B. Able to support deep bundles of cables
C. Made of plastic for safety
D. Wide enough to support cables without distortion