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1. Anode cureent shld nt less than :Holding current 2. Photo current = 6.5 micro amps 3. Satisfies both additivity nd homogenity. 4. Mobility = 700 cm^2/ v.sec 5. E(2t) = E/2 6. Pin diode used for switching 7. Phenomenon was ducting 8. System was stable nd causal 9. Cro probe contains capacitive n/w 10. Acceleration by piezoelctric crsytal 11. Phase margin defines relative stability 12. Moving coil can be used for dc only 13. Intr non vectored inerrupt 14. Cmos is used in microprosessors 15. Tem mode cant propogate in cylindrical waveguide. 16. Type 2 system causes 40 db/ decade 17. Base for addition was 6. 18. Bandwidth increases four tyms 19. No of data bus 16,32,128 20. Te10 dominat mode in rectangular waveguide. 21. Vswr = INFINITE 22. Paramagntic becoms dia magnetic 23. Rth = 6 ohms 24. V2= 2 volts 25. Positive or donor on n side nd negative or acceptor on p side 26. Paralle connection y parameter 27. Y12 = .05 mho 28. Realtive permeability of free space is one 29. Reflection is zero for matched line 30. Three roots lies in lhs 31. H = 5.3 mili n/m 32. E is min H is max at conductor surface 33. Lvdt passive transducer 34. Schmit trigger gives square wave 35. Curent at steady state is 5 amps 36. Creeping errors due over compensation for friction 37. Q = 20000 38. For freq stablity crystal shld be AT CUT 39. Ferrites hav high permeability nd low dielctric losses 40. Fet mobility decreases with temp 41. Tunnel has voltage controlled current characteristics. 42. Beta = 79 43. Network function was non of them

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  • 1.Anodecureentshldntlessthan:Holdingcurrent2.Photocurrent=6.5microamps3.Satisfiesbothadditivityndhomogenity.4.Mobility=700cm^2/v.sec5.E(2t)=E/26.Pindiodeusedforswitching7.Phenomenonwasducting8.Systemwasstablendcausal9.Croprobecontainscapacitiven/w10.Accelerationbypiezoelctriccrsytal11.Phasemargindefinesrelativestability12.Movingcoilcanbeusedfordconly13.Intrnonvectoredinerrupt14.Cmosisusedinmicroprosessors15.Temmodecantpropogateincylindricalwaveguide.16.Type2systemcauses40db/decade17.Baseforadditionwas6.18.Bandwidthincreasesfourtyms19.Noofdatabus16,32,12820.Te10dominatmodeinrectangularwaveguide.21.Vswr=INFINITE22.Paramagnticbecomsdiamagnetic23.Rth=6ohms24.V2=2volts25.Positiveordonoronnsidendnegativeoracceptoronpside26.Paralleconnectionyparameter27.Y12=.05mho28.Realtivepermeabilityoffreespaceisone29.Reflectioniszeroformatchedline30.Threerootsliesinlhs31.H=5.3milin/m32.EisminHismaxatconductorsurface33.Lvdtpassivetransducer34.Schmittriggergivessquarewave35.Curentatsteadystateis5amps36.Creepingerrorsdueovercompensationforfriction37.Q=2000038.ForfreqstablitycrystalshldbeATCUT39.Ferriteshavhighpermeabilityndlowdielctriclosses40.Fetmobilitydecreaseswithtemp41.Tunnelhasvoltagecontrolledcurrentcharacteristics.42.Beta=7943.Networkfunctionwasnonofthem

  • 44.Noofloops=645.Del*B=046.Chrgeresidesatconductorsurface47.Doublecavitykylstronusedasanamplifier48.Rubymaserisprefferdforhigherbandwidth49.Bwofcascadedsyatem=12.8850.Gainofcascadedwasmultiplicationoftheirindividualgain51.8253usedasadelay52.Settlingtymisbasedoneroorband53.Capacityofchannelisinfinite54.TvndradarusesUHF55.Treeisnonlineardatastructure56.Zerorootlieinrhs57.Tworootsliesinrhs58.Excessthreewas10000111...59.CommunicationquestionwithefficiencygivenandS60Resonancefreq.measurementinclosedloop=M&Ncircles61.Pistonattenuator=waveguide62.accesstimeF1,F2,F3,F463.somethingaboutmonopulseorsteptracking64.CallbyvaluedefaultinC65.PartofmagneticpathwhichhaslargeMMF=Air66.Halleffectispositivefornhh>nee67.Tristatelogicisusedforhighspeedoperationbusimpedance68.Darlingtonconnectionconnectsa.Emitterb.collectorc.base69.Poweramplifiers0to90&180to27070.Asamplealiasfreqof14Hzandainputfreqof8Hzthensamplingfreqat71.propogationdelayinadder72.f(x)=ex,,,,0