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Qaagi - Book of Why

Causes

Effects

by the scattering of light(passive) caused byScattering - A source of optical signal loss in a fiber optic system

Scientists continueddiscoveringto lower light loss in optical fibers

Donald Keckinventedthe first low loss optical fiber

co -to ... inventlow - loss fiber optic cable

Which factorscan causesignal loss in a fiber optic cable

impurities in the fiber materialcausedthe signal loss in optical fibers

Impurities in the fiber materialcausethe signal loss in optical fibers

the Rayleigh scattering lossmay causetransmission loss of light in the optical fiber

the impurities in glass wirescausea signal loss in optical fibers

We changed communicationsinventedlow - loss optical fibre

by physical fiber damage or any other situation that results in optical signal degradation(passive) caused byoptical signal loss

by optical fibers or optical components(passive) caused byoptical signal loss

by remote device(passive) caused byoptical signal loss

many factorscan resultin optical signal loss

a member of the Corning teaminventedthe low - loss optical fiber

the Corning teaminventedthe low - loss optical fiber

We changed communicationsinventedlow - loss optical fiber

Three Corning scientistsinventedlow - loss optical fiber

Robert Maurerinventedlow - loss optical fiber

research and developmentresultedin low - loss optical fiber

research and developmentresultingin low - loss optical fiber

1970inventedlow - loss optical fiber

Peter Schultz , Donald Keck , and Robert Maurerinventedlow - loss optical fiber

the factorscausesloss in optical fibers

small particlescausesloss in optical fibers

bendscausinglosses in optical fibers

breaks and bendscausinglosses in optical fibers

breaks ... bendscausinglosses in optical fibers

very little internal stresscausestransmission loss in optical fiber

very little internal stresswould causetransmission loss in optical fiber

small particlescausesloss in optical fibres

A ) Impurities in glass ( B(passive) is caused byLosses in optical fibre

Their combinationleadsto signal degradation in optical fiber Optical fiber

Their combinationleadsto signal degradation in optical fiber

mainly(passive) is ... composedOptical fiber splice loss

the reflection or scattering(passive) is caused byThe major power loss in optical fiber

for fundamental studies on optical fibers and optical fiber communication(passive) has been designedThe optical Fiber Loss

by the fiber optic itself(passive) caused byfiber optic loss

improper fiber optic handlingcausesfiber optic loss

by scattering(passive) caused byfiber optic loss

following semiconductor lasers and photo - diodeswas inventedfollowing semiconductor lasers and photo - diodes

This system(passive) is composed byThis system

to a worldwide effort for developing fiber - optic communication systemsledto a worldwide effort for developing fiber - optic communication systems

Signal attenuation(passive) is caused bySignal attenuation

by bendingcausedby bending

between input and output of an optical signal through each pathcausedbetween input and output of an optical signal through each path

between input and output of an optical signalcausedbetween input and output of an optical signal

during the transmissioncausedduring the transmission

for use in residential and business applicationsare designedfor use in residential and business applications

to a interruption for data transmissionwill leadto a interruption for data transmission

to changes in the power of backlight Embodiments of the present inventionleadsto changes in the power of backlight Embodiments of the present invention

from attenuation in the material itself and from scatteringresultfrom attenuation in the material itself and from scattering

for the transmission of a single ray or mode of light as a carrier and is used for long - distance signal transmissionis designedfor the transmission of a single ray or mode of light as a carrier and is used for long - distance signal transmission

when a fiber optic component insert into another one to form the fiber optic linkcausedwhen a fiber optic component insert into another one to form the fiber optic link

from attenuationresultfrom attenuation

some problem(passive) was caused bysome problem

to the attenuation of signalalso contributesto the attenuation of signal

a light signal(passive) may be causeda light signal

the fiber stress changes(passive) caused bythe fiber stress changes

to carry multiple light rays or modes at the SAME timeis designedto carry multiple light rays or modes at the SAME time

to carry multiple light rays or modes simultaneouslyis designedto carry multiple light rays or modes simultaneously

to carry multiple light rays or modes concurrentlyis designedto carry multiple light rays or modes concurrently

optical cable(passive) is composedoptical cable

cable(passive) is composedcable

The prepolished connector(passive) is designedThe prepolished connector

a break or fracturewill causea break or fracture

the position(passive) where ... is causedthe position

bend losses even when the fiber is macroscopically kept straightcan causebend losses even when the fiber is macroscopically kept straight

private data networks(passive) led byprivate data networks

in four effective fiber gratingsresultingin four effective fiber gratings

backscatteringcausesbackscattering

for shorter distances and most often deployed in data centers , enterprise and local area networksis designedfor shorter distances and most often deployed in data centers , enterprise and local area networks

The signal light LS(passive) is led byThe signal light LS

for inspecting the end - faces of cleaved or polished optical fibers with cladding diameters between 125 and 1200 micrometerdesignedfor inspecting the end - faces of cleaved or polished optical fibers with cladding diameters between 125 and 1200 micrometer

the uncertainty(passive) caused bythe uncertainty

of a plastic core andcomposedof a plastic core and

the standard for bend performance while remaining compliant to the most stringent ITU - T Recommendations G.652.D and G.657setsthe standard for bend performance while remaining compliant to the most stringent ITU - T Recommendations G.652.D and G.657

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