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PIC Timer Sleep Mode
  • Classification:Hardware/embedded - SCM(51,AVR,MSP430...)
  • Development Tool:C-C++
  • Sise:44.0 KB
  • Upload time:2009/10/23 13:59:12
  • Uploader:linhnc308
  • Download Statistics:
Description
This is source code for PIC Microcontroller of Micrpchip Inc, act in sleep mode




File list:
PIC_SLEEPMODE
............\EX_WDT.bak
............\EX_WDT.C
............\EX_WDT.cof
............\EX_WDT.err
............\EX_WDT.esym
............\EX_WDT.hex
............\EX_WDT.lst
............\EX_WDT.PJT
............\EX_WDT.sta
............\EX_WDT.sym
............\EX_WDT.tre
............\INT0_Sleep.bak
............\INT0_Sleep.C
............\INT0_Sleep.cof
............\INT0_Sleep.err
............\INT0_Sleep.esym
............\INT0_Sleep.hex
............\INT0_Sleep.lst
............\INT0_Sleep.PJT
............\INT0_Sleep.sta
............\INT0_Sleep.sym
............\INT0_Sleep.tre
............\Timer0_Sleep.bak
............\Timer0_Sleep.C
............\Timer0_Sleep.cof
............\Timer0_Sleep.err
............\Timer0_Sleep.esym
............\Timer0_Sleep.hex
............\Timer0_Sleep.lst
............\Timer0_Sleep.PJT
............\Timer0_Sleep.sta
............\Timer0_Sleep.sym
............\Timer0_Sleep.tre
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[Fortran&C programs for the time-depe...] - Here we present numerical algorithms for both stationary and non-stationary solutions of the full threedimensional (3D) GP equation for a dipolar BEC, including the contact interaction. We also consider the simplified one- (1D) and two-dimensional (2D) GP equations satisfied by cigar- and disk-shaped dipolar BECs. We employ the split-step Crank–Nicolson method with real- and imaginary-time propagations, respectively, for the numerical solution of the GP equation for dynamic and static properties of a dipolar BEC.
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