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Sar ah -R o se La nc a st e r Mech an i c al E n g in eer i n g Po r tf o li o • Wi l l rec ei v e B S of Me c h an i cal E n gin ee ri n g i n Ju ne 2 0 1 7 , se e ki n g f u l l - ti me e mp l o yme n t star ti n g a f te r w a rd s • Com pl ete d 3 i n t e rn s h i ps at Appl e , 1 at Te s l a an d 1 at Peb ble T ech n o lo g ies• Ex p er ien ce wo rk ing wi t h t ig ht packagi n g , co s m et ic co ns t rain s and ext ens iv e rel i abil i t y s p eci f i cat i o ns timberland library0 y0 w0 h0" alt="" src="http://sarahrose.tech/bg2.png"/>R e c e nt I nt er nship Pr o j e c t s Peb bl e T i me St ee l M icr o pho ne M o dul eTh e Pr odu c tKey Co ntribu tio n sPe b b le Time Ste e l ma k e s use s of a mi cr o ph o n e fo r te x t re pl y an d voi c e co m m an d s in cer t ai n ap p s . Mi c r ophone Modul eHole I n ser t (W e l d e d)Dr il le d Ho le sMi c r ophone Br a c ke tThe mi cro ph o n e mo du l e is he ld sn u gl y aga i n st the h ou si n g’ s mi c op e ni n g th r ou gh the u se of a U - sh a pe d brac k e t . The br a c k et is se c u r e d to the h o u si n g wi th sc re ws, one of wh i c h is pl ac e d in a wel de d hole i n se rt tha t ad d s si gn i f i c ant man u f ac t u r i n g c o sts. Or i gi na lI re -d e si g n e d the mi c br a c ke t to el i mi n at e u se of the we l d e d hole i n se rt , re du c i n g man u f ac t u r i n g c o sts. I exp l o r ed tw o de si gn s. Ne w O n e S c r e w Desi gnNe w T w o S cr e w De sig nThe on e scre w d e si gn el i m i n at ed the u se of on e of the dri l l ed ho le s as its ri gh t si de wa s se c u r e d by ”di g gi n g ” into a wa l l of the h o u si n g. Afte r dro p t e st i n g, the tw o sc re w d e sig n out p e rf orm e d the on e sc rew d e si gn , wh i ch cam e l oose af t er ~7 1 m dro ps on co n cr et e . Th e two sc re w de si g n wa s use d. St r e ss M o ni t o r in g W e ar a b l eTh e T e ch n ol ogyKey Co ntribu tio n sSk in r e si sta n c e a c ross elect ro d es+-Volta g e M ea su re dAt Pe bb l e I was ta sk e d wi t h im p le m e nting a psy chol ogi ca l stress se n sor on a futu r e pro du ct . Th e se l e c t e d s e n sor , kn o w n as an el e ct r o d er m al a cti vi ty (E DA) s e n sor , me a su re d the co n d u ct an ce of the u se r’ s sk i n . Sin c e sw e a ti n g is a re ac ti o n of the body’ s symp a t h e t i c n e rvo u s syst e m , i n c rea se s in the sk i n ’ s co n d u ct an c e co u l d be re l a t e d to an i n c rea se in st re ss th ro ugh al g o r i t h mi c a n a l ysi s. El e c trode s Em patic a’s Em bra ce w it h EDA se n so rVo lta g e A pp lie d Known Imp e d a nc eBasi c sc h em a tic dia g ra m o f an EDA se n so rEDA se n sors app l y a sm a l l vol t a ge a cross el e ct r o d es in se ri es wi t h re si st i ve el em en t s of kn o w n im p e d a nc e . The re su l t a n t vo l tage a c ro ss the el e ct r o d es (wh i ch touc h the skin ) is th e n me a su re d to de t e rmi n e the sk i n ’ s re si st a n ce , an d thus its co n d u ct an ce . As such, one of the most im p o r ta nt fa c t o r s in the de si g n of an EDA se n sor is the fo r m fa c to r of the el ect r o d es . Ju m p Sc ar esWalkL yin g Do w nRu nP rototype 2 (B a c k )P rototype 1 (B a c k )I re se arc h e d sta t e of the ar t EDA se n so rs an d co n n ect ed Pe b b le wi t h se ve r a l ex p er t s in the fie ld . I prot ot ype d initia l fo r m fa c t o r s of se n so rs an d ra n prel i mi n ary t e sts on th e re l i a bi l i t y of the ir me a su rem ent s.The ab o v e gra ph sho ws skin co n d u ct an ce vs tim e for the “Prot ot ype 2 ” de vi c e . Th e t e st i n vol ved the use r rem ain i n g sti l l for 5 mi n u t es an d th e n wa t c h i n g a se ri e s of “j u mp - sc are ” vi de os. Ce r ta in pe ak s in the gr a ph c orre spon d to the u ser be i n g sc are d . The u se r the n wal ke d, lie d do wn , an d ra n on a tre a d m i ll . Although prel i mi n ary da t a co n t ai n ed mo t i o n a rti f a c t s, it co n f i r m ed tha t ”Pr o to type 2 ” was ad eq u at e fo r accu r at e co n d u ct an ce me a su rem ent . El e c trode s M o de l S and M o de l X Sun Vi so rTh e Pr odu c ts Key Co ntribu tio n s Mo del X Vi s o r Re l i ab i li t y Te s t i n g The Mo d el X su n vi sor is unique in tha t it at t a ch es to the A- pi l l ar of the ca r i n st e ad of the he a d line r (du e to the X’ s pa n o ram i c wi n dshi e l d). It fe a tur e s a se c o n d a r y bl a de tha t fl ip s do wn fo r ex t r a c ove r a ge , as we l l as a sl e e k mi rr o r an d va n i t y l i gh t s, co n ceal ed by a sm art cove r . The Mo d el S Sun V iso r at t a ch es to th e he a d line r an d ha s a plasti c c o ve r th a t co n c eal s a mi r ro r . Th e vi sor is cu r r en t l y wi t h o u t va n i ty lig hts . Mo del S Vi s o r Va n i t y Light s Sinc e th e vi sor is a lo ng, sl i m, c a n ti l eve re d be a m, it re qu i re d e xte n si ve t e sti n g to ensu re it wou l d not fa il in the fie ld . I d e ve l o pe d se v era l test fix t ur e s an d pro c e du res wh i ch t e sted bot h the ha pt ic an d strengt h pe rf o rma n ce s of the vi so r . Of not e we r e n ove l te sts co - re l ati n g wh a t a use r “f e e l s” whi l e u si n g the vi sor to quant i tati ve data . The t e st re su l t s I obta i ne d we r e u sed to i mprove th e vi sor ma n u f a c t u r i n g proc e sse s an d obta i n a be t t e r qu a l i t y pro du ct . I dev e l o pe d th e init ia l CAD an d proto type fo r a Mo d el S Sun Viso r tha t u ses a sm a rt - c o ve r to co n c eal a mi r ro r an d va n i ty lig hts . Th e d e si gn ha d to fit wi t h i n th e e xi st i n g su n vi sor sh a p e an d pac kagi n g . I ga in e d va l u a bl e sk i l l s wor ki n g wit h su r f a cin g in CA TI A du r i n g the pr oj e c t . I was gi ve n a tim e li ne of onl y 2 we e k s an d man aged to i mp re ss my ma n a g e r wi t h my progre ss d e spit e a lso wor ki n g on oth e r pro j ec t s si mul t a neousl y . Mod e l S A ir V e ntTh e Pr odu c tThe Mo d el S ai r ve n t fe a t ur e s a d e si g n tha t u se s the ai r - ve n t co n t r o l kn o b, i n ste a d of a sc ro l l wh e e l , to sh u t of f ai r flo w . Key Co ntribu tio nIm p ro v i n g Hap ti c Fee ling of Co nt r o l Kn o b Mov ement The ve n t u se s a m e c h a n i sm to ope n an d c l o se a doo r at its re ar tha t co n t r o l s ai r flo w . Du e to the en g ag e m en t of tw o ge a rs at th e mi d - po i n t of the kn o b’ s si de wa ys move m e n t , a dj u st i n g th e ai r flo w di r e c ti o n la c k e d a fee ling of sm oot h n e ss. Th e en g ag em en t of the ge a rs wou l d c a u se the amo u n t of fo r c e re qui re d to be highe r tha n wh en the ge a rs we r e n ’t en g ag ed . I wa s t a sk e d wi t h i mprovi n g th e smoot h n e ss wi t h o u t ch an g i n g the ove ra l l de si g n of the ve n t . To ac h i e ve a sm o o t h fe e ling I f oc u se d on maki n g the amo u n t of ef f o r t re qu i re d to move the co n t r o l kn o b i t se l f highe r . I bro ke th e kn o b do wn int o its ind iv id ua l co m p o n en t s an d mo di f i ed ea ch unt il the perf ec t “f ee l i n g ” wa s fou nd . I the n wo rke d wi t h th e ai r ve n t suppl i e r to transl a te t h e se mo di f i cat i o n s into in j e ct i o n mo l d i n g too l ch an g es to cr e at e a ne w ai r ve n t . Co n t ro l kn o bGe a r s iP a d Pr o Sma r t Keyb o a r d C o nnec to r s Th e Pr odu c tAp p le ’ s iPa d Pro ha s a Sm a rt Ke ybo a rd a c c essory wh i ch at t ach es magn et i ca l l y through a 3 - pi n co n n ect o r . The 3- pi n co n n ect o r s on bot h the iPa d Pro an d Sm a rt Ke yboard fe a tu r e a sl e e k de si g n . Wo r k i n g on App l e ’ s In t erc o n n e c t D e si gn group I wa s ab l e to co n t r i bu t e to bo t h co n n ect o r s . Key Co ntribu tio n sSmart Key b o ard Flex Cab le I de si gn e d the se c ti on of the ke yboard ’ s fle x ca b le wh i ch se n ds the k e ybo a rd si g n a l s to the ke ybo a rd’ s co n n ect o r . A ch al l en g i n g pr oj e c t du e to tight spa c e c on st ra i n t s an d the ne e d to me et el ect r i cal en g i n eer i n g re qu i re me n ts . Co nnect o r R eli ab ili t y T es ti n gI de ve l o pe d s e ve r a l re l i a bil i t y t e st s fo r th e c on n e c t ors, de t e rmi n i n g perf or ma n c e pa r a me t ers su c h as c orro si on re si st a n c e an d a ve r a ge co n n ect o r co n t act fo r c e . The re su l t s I provi de d drove de si g n ch an g es wh i ch le d to i mp rove d co n n ect o r perf o rmance . Re c e n t S c hool P r oje c t s El e vato r Inst all a t i o n H oi st SystemCa m b rid ge El ev at i n g , loc a te d in Ca m b rid ge ,Ca na d a , d e si gn e d an el e ct r i c el ev at o r syst e m tha t uses a mo t o r an d wi n ch a sse mbly to lift an e l eva to r cab up an d down a ra i l syste m. The mo t o r an d wi n ch a sse mbly, wh i c h is fix e d to th e top of the e l e va t or sh aft , wei gh s ap p r o x i mat el y 350 lb s . an d th e e l eva ti n g co m p an y lac k e d a sa f e me t h o d of i n st a l l i n g it . Wo r k i n g wi t h th r ee oth e r st u de nt s I c on c e i ve d , de si gn ed an d pe r f o r m e d det ai l ed a n a l ysi s on an i n st a l l a ti on system for the mo t o r an d wi n c h a ssem bl y . The mo t o r an d wi n c h ass e mb l y ar e fix e d to a sma l l sh e l f tha t is pu l l e d up the e xi sti n g e l e va t o r ra i l s by a ca b l e ac tu a te d wi t h a sm a l l wi n ch an d pu l l ey . On c e at the to p , th e a ssem bl y is pu sh e d on to a hold ing br a c k et an d se c u re d. Mo t o r an d W i n ch As s e m b l ySh el f u s ed to lif t wi n c h as s emb l yMo t o r an d W i n ch Ho l d i n g B r a c k e tSmal l L i ft i n g W i n c hPu l l eyAt t a c h m e n t fo r cab l e co n n ect ed t o pulle yLi f t i n g Cab l e El e vato r Inst all a t i o n H oi st SystemThe m ost ch al l en g i n g asp e c t of de sig n i n g the h oi st system wa s the co n cep t u al de si gn phase , as th e system ha d se v e ra l sp a c e an d sa f e ty const ra i n ts to ad h er e to . The syst e m had to fit i n si de of a ~ 40 in wide e l eva to r sh a f t , of wh i ch onl y the bac k wa l l co u l d be a r an y loa d . The system a l so ha d to h a ve a high fa c to r of sa f e ty (> 5 fo r an y loa d be a r i n g co mp o n en t ) as well as at l e ast 3 re dun da n t sa f ety fe a t ur e s . My maj o r co n t r i b u t i o n s to the pro j ec t were de velopi n g the id e a to use a rail ri di n g sh e l f to lif t the wi n ch a ssem bl y an d the detai l e d stru c tu ra l a n a l ysi s of the sh e l f i tself . Th e st ru c tu ral a n a lysi s i n v ol ved find ing the we a k e st po i n t s in th e sh elf asse mb l y an d perf o rmi n g e xtensi ve ca lc ul a t i o ns to det ermi n e at wh at lo a d s the y wou l d yield. Rai l Ri di n g S h el f!" #$ % & ' ( ) '*) $ + ' ,, ) -" #.)/ 0 1332.7693) lbs !" #$ % & ' ( ) '*) $ + ' ,, ) -" #.)/ 2 12.47179) lbs !$ 3 #.4!4 & 5' %6' 3 % )07 2!4 & 5' %!$ 3 #.46' 3 % )87 9E l bow vi ew e d f ro m ba c k of sh e l fThe el b o w co n n ect i n g the ve rti c a l an d hor izo nta l c - ch an n el s of the sh e l f was de t e r m i n e d to be the we a ke st poi n t . Th e high mo men t loa d an d th e low e r yie l d stre n gt h of the bo l t ed co n n ect i o n s ve rsu s sol i d st e e l c - ch an n el s co n t r i b u t ed to the w e a k n e ss. In i t i al Fre e bo dy di agram s of the syste m, u se d to ai d in c a l c u l a ti o n s, ar e pi c t u r e d ab ove . R ac e c a r Dr a g R ed ucti o n Syst e mWo r k i n g wi t h a te a m of fo ur oth e r stu de n t s I c o n c e i ved , de si gn ed an d bu i l t a mo del of a dr ag re d u c t i o n syst e m fo r Waterl o o’ s fo r m ula ca r . The goa l of the syst e m was to a dj u st the an g l e of the ra c e c ars’ wi n g s to ei t h er in cre a sedow n fo r c e or de c re a se dr ag dep en di n g on if the car wa s co r n er i n g or in a st ra i gh t - aw ay . I pe rf o rm e d link a ge syn t h e si s cal cu l at i o n s to de t e rmi n e the ap p r o p r i at e link a ge dime n si on s. I a l so pe rf o rme d fa tig ue ca lc ul a ti o ns to e n su re the system wo u l d not fa il . Along wi t h an o th er te a m me m b e r I co m pl et ed the CAD for the dra g re duc ti o n syste m. The fin a l pro du ct, in bot h the “u p” an d “down ” posi ti o n s.
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Result 2017

Result 2017

BISE Results
Matric & Intermediate
  • Lahore Board
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Karachi University Results 2017

Karachi University Results 2017 will be officially announced here.

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View Karachi University result 2017 from all educational boards.


Spread over 1200 acres of land, University of Karachi (KU) was established as a Federal University in 1951. However, through another act of the parliament in 1962 its status was redefined as university of the province of Sindh. On 23rd October, 1950 the Karachi University Act was passed and after an amendment in 1951, it was enacted and Prof A. B. A Haleem was appointed as its first Vice Chancellor. For the first two years, the University of Karachi remained as an examination University for the affiliated colleges. In the year 1953, it started its teaching and research activities at two Faculties of Arts and Science. Opened with an initial intake of 50 students, the university is now a sprawling structure of 53 Departments and 20 world class and highly reputable Research Centers and Institutes, under eight faculties of Arts, Science, Islamic Studies, Pharmacy, Management and Administrative Sciences, Law, Education and Medicine. At present, the enrolment of regular students at the Campus is slightly over 24,000. There are over 800 teachers and more than 2500 administration staff. Karachi University always proud of some renowned educationists and scholars associated with this institution of higher learning.

Karachi University KU has declared B.com Part 1 result 2013 on September 30th, 2013. B.Com part 1 students can check their annual exam result online here:
KU B.Com part 1 result 2013
Download UOK B.Com Part 1 Result 2013
Karachi of Karachi Result Statistics

KU, University of Karachi has announced MA result 2013 at the end of September 2013. This is regarding the final examination held in academic year 2012. You can download your MA KU result online here.
MA Result 2013 Karachi Examination 2012

B.Com Part 1 Karachi University result 2013 has been declared on 29th April 2013 for academic session 2012. Students can check their B.com part 1 final result 2013 for Karachi University online here or download.
Download UOK B.Com Part 1 Result 2013

University of Karachi (UOK), has announced the B.Com Part ii result 2012 today on 14 July 2012. Students can download their Bachelor of commerce (Bcom) result here online.
UOK Bcom Part 2 Result 2012



University of Karachi, Sindh, Pakistan has announced the B.Com Part 2 regular annual exams 2011 result for 2012 on 5th June, 2012.

BSC Part 1 Result 2012 Karachi University regualr has been announced on 9th June, 2012. You can view your BSC part 1 result here online. The examination for BSC part 1 was held in 2011.
Download Karachi Univeristy BSC Part 1 Result 2012

BCOM Part 2 Result 2012 Karachi University for exams 2011 Regular
Download Karachi Univeristy B.Com Part 2 Result 2012

Karachi University, Sindh, Pakistan has announced the B.Com Part 1 annual exams result 2011 on 10th August, 2011.
BCOM Part 1 Result 2011 Karachi University
Download Karachi Univeristy BCOM Part 1 Result

Karachi University, Sindh, Pakistan has announced the B.Com Part 2 external exams result 2011 on July 25, 2011.
Here is position holders names:
1- First position was got by Farhat Salam, by obtaining 790 marks out of the 1,100 marks.
2- Second position was taken by Nisar Ahmed by securing 779 marks.
3- Third position was obtained by Zaigham Riaz by securing 775 marks.

BCOM External Exam Result 2011
Download Karachi Univeristy BCOM Result 2011 External

BCOM Regular Exam Result 2011
Download Karachi Univeristy BCOM Result 2011 Regular





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