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008 140724s2011 enka b 001 0 eng d
010 _a 2014415203
015 _aGBB073548
_2bnb
016 7 _a015578814
_2Uk
020 _a9781849190718 (pbk.)
020 _z9781849190725 (PDF)
035 _a(OCoLC)ocn743281867
040 _aNLE
_cNLE
_dCDX
_dYDXCP
_dBWX
_dCUV
_dMIA
_dMUU
_dMYG
_dEYM
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_dDLC
_dBD-DhUL
042 _alccopycat
050 0 0 _aTK7872.C65
_bM55 2011
082 0 4 _a621.315
_222
_bMIU
100 1 _aMiller, John M.,
_d1949-
245 1 0 _aUltracapacitor applications /
_cJohn M. Miller.
260 _aLondon :
_bInstitution of Engineering and Technology,
_c2011.
300 _axii, 363 p. :
_bill. ;
_c24 cm.
365 _aUS$
_b89.10
490 0 _aIET power and energy series ;
_v59
504 _aIncludes bibliographical references and index.
505 0 _a1. Types of ultracapacitors -- 2. Ultracapacitor modeling -- 3. Power and energy -- 4. Commercial applications -- 5. Industrial application -- 6. Heavy transportation application -- 7. Hybrid electric vehicles -- 8. Single-mode power split -- 9. 2-mode power split -- 10. Life cycle testing -- 11. Abuse tolerance -- 12. Future transportation systems.
520 8 _aThis text takes a critical look at physical storage of electricity in the devices known collectively as electrochemical capacitors and particularly as ultracapacitors.
650 0 _aSupercapacitors.
830 0 _aIET power and energy series ;
_v59.
906 _a7
_bcbc
_ccopycat
_d2
_encip
_f20
_gy-gencatlg
942 _2ddc
_cBK
955 _brk47 2014-07-24 z-processor to USASH/ART
_irk47 2014-07-24 to BCCD
999 _c32688
_d32688