Signals and Systems

Signals and Systems Made Easy - Step by Step - with the TI-Nspire CX (CAS) Calculator.

Solve Signals and Systems problems stepwise using this Ti-Nspire CX Program

Price:

$49.95

Signals and Systems Made Easy

Runs on TI-Nspire CX CAS and TI-Nspire CX II CAS only.
Program does not run on computers!

TI-Nspire CX CAS

TI-Nspire CX II CAS

APP PURCHASE

Enter the last 8 digits of your TI-Nspire's Product ID.

Located under 5:Settings → 4:Status → About

Sample ID: 1008000007206E210B0BD92F455. HELP .
(You would only type BD92F455 in below's box.)

Enter last 8-digits of the ID:
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After payment is made you will be sent an email containing app and key.

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Attention: This APP requires a CX CAS TI-Nspire.
The APP will not run on a CX TI-Nspire!
Check for the CAS symbol on the top right.

PROGRAM DESCRIPTION

Most Comprehensive Signals and Systems APP for the TiNspire: Covers typical topics for Electrical Engineers such as Signals, Systems, Circuits, Capacitators, Induction, Magnetism, Energy, Thermodynamics, Number Systems and Conversions, Periodic System of Elements.

FUNCTIONALITY & MENU ITEMS OF APP

SIGNALS and SYSTEMS
  • Classification & Examples
  • Deterministic vs Random Signals
  • Even vs Odd Signals
  • Periodic Signals
  • Analog vs Digital Signals
  • Unit Impulse Signal
  • Unit Step Signal
AC Circuits
  • Q=Xi/R
  • Q=R/Xc
  • Xi=2Pi*F*L
  • X=Xi-Xc
  • Vinst=Vmax*sin(theta)
  • Veff=Vmax*0.707
  • Single Phase ALL in 1 Solver
  • 3-Phase ALL in 1 Solver
  • Vp/Vs=Np/Ns
ELECTRICITY
  • Electricity & Induction
  • Electricity: Coulombs Law
  • Electricity: Voltage V=E*d
  • Electricity: λVoltage λV=W/q
  • Electricity: λV=Q/C
  • Electricity: P=Po*[1+a*(T-To)]
  • Electricity: q=Q*exp(-t/(R*C))
  • Electricity: q=Q*(1-exp(-t/(RC))
  • Electricity: C=K*eo*A/d
  • Electricity: E=1/2*C*λV^2
  • Electricity: R=λ*1/A
  • Electricity: Flux F=E*A
  • Electricity: E=Q/(4pr^2eo)
  • Electricity: F=s*Q/eo
  • Electricity: V=k*q/r
INDUCTION
  • Induction: EMF=B(L)(V)
  • Induction: I=V/R
  • Induction: Pac=1/2(Pacmax))
  • Induction: Pac=I_eff^2*R
  • Induction: I_eff=v(1/2Imax^2)
  • Induction: V_eff=v(1/2(Vmax)^2)
  • Induction: Vs/Vp=Ns/Np
  • Induction: Vp*Ip=Vs*Is
CIRCUITS & LAWS
  • Circuits & Laws: P=V*I
  • Circuits & Laws: V=R*I
  • Circuits & Laws: P=I^2*R
  • Circuits & Laws: P=V^2/R
  • Circuits & Laws: Vc=(V*R2)/(R1+R2)
  • Circuits & Laws: Read 1. Kirchhoff Law
  • Circuits & Laws: Read 2. Kirchhoff Law
MAGNETISM
  • Magnetism: F=q*v*B*sin(θ)
  • Magnetism: r= mv/(qB)
  • Magnetism: v=E/B
  • Magnetism: F=B*I*L*sin(θ)
  • Magnetism: N=T*A*m
  • Magnetism: t=F*r
  • Magnetism: t=B*I*A*sin(θ)
  • Magnetism: t=B*I*A*N*sin(θ)
  • Magnetism: B=μo*I/2pr
  • Magnetism: F/l=&muo*I1*I2/(2pd)
  • Magnetism: B=&muo*I/2R
  • Magnetism: B=N*&muo*I/2R
  • Magnetism: B=&muo*N/l*I
  • Magnetism: F=B*A*cos(θ)
  • Magnetism: λF=BA(cosθf-cosθi)
  • Magnetism: e=-N*(λF)/(λt)
  • Magnetism: F=I*B*l
  • Magnetism: Emf=NBA*delta*sin(θ)
  • Magnetism: Emf=-L*(λI)/(λt)
  • Magnetism: R=P*l/A
ENERGY
  • Heat: Q=m*c*λT
  • Heat: Q=m*L
  • Heat: W=λP*d*λV
  • Heat: λE=Q-W
  • Heat: Conduction
  • Heat: Convection
  • Heat: Radiation
  • Heat: w=-n*r*t*ln(vf/vi)
  • Miscellaneous: Heat (H)
  • Read Dissipated Energy
  • Miscellaneous: W=F*s*cos(θ)
  • Miscellaneous: W=F*s*sin(θ)
  • Miscellaneous: Power=W/t
  • Miscellaneous: E=mu*dx
  • Work Energy Theorem
  • Photon Energy: E=h*c/λ
TRANSFORMS
  • Laplace Transform – Step by Step
  • Laplace Transform of Unit Step and Heavyside Functions
  • Inverse Laplace Transform
  • Table of Laplace Transforms
  • Fourier Transform – Step by Step
  • Fourier Transform – Basic Signals
  • Inverse Fourier Transform – Step by Step
  • Table of Fourier Transforms
  • Z Transforms
  • Inverse Z Transforms
  • Table of Z-Transforms
  • Usual Fourier Series of Function over [-pi,pi]
  • RLC Circuit Analysis & LaPlace Transform
  • Convolution Integral
EXTRAS
  • Solve Any Equation
  • Solve 2×2 System of Equations
  • Periodic Table of Elements: Symbol
  • Periodic Table of Elements: Element Name
  • Read: Useful Constants
  • Find Absolute Error and % Error
  • Bode Plot
  • Pole Zero Plot
  • Convert: Normal to Scientific Notation & vice versa
SPECIFIC HEATS
  • Water
  • Ice
  • Steam
  • Methyl Alcohol
  • Benzene
  • Wood
  • Soil
  • Air
  • Aluminum
  • Marble
  • Glass
  • Iron/Steel
  • Copper
  • Silver
  • Mercury
  • Gold
  • Lead
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