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Lecture notes, lectures chapters 3-16 - Practice exam
questions
Introduction To Psychology (Part A) (University Of Manitoba)
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PSYC 1200 PRACTICE EXAM QUEST
Convolution Recitation
BME 230
The goal of this lab session is to give you some insight into the form of the convolution sum and integral,
and to practice working convolutions. Convolution is a mathematical operation with a wide range of
applications; it
BME230 Lab 5: the Electrocardiogram & Heart Sounds
Introduction
The beating of the heart is accompanied by both electrical activity and sound. The measurement
of electrical activity produced by each heart beat cycle is called the electrocardiogram or ECG.
BME230 Lab 3:
A Temperature Sensor as a First Order Device
Introduction
Biomedical instruments often contain a front end, composed of a transducer, an amplifier, and
some type of filter(s). Together they generate the signal(s) analyzed and/or displayed by
Small, Low Power, 3-Axis 3 g
Accelerometer
ADXL335
FEATURES
GENERAL DESCRIPTION
3-axis sensing
Small, low profile package
4 mm 4 mm 1.45 mm LFCSP
Low power : 350 A (typical)
Single-supply operation: 1.8 V to 3.6 V
10,000 g shock survival
Excellent tempera
BME 230 Lab: Doppler Ultrasound
Introduction:
Continuous Wave (CW) Doppler ultrasound is an inexpensive, non-invasive technique
for monitoring blood flow in vivo. A typical CW Doppler is pictured below.
There are two major parts, the transducer, which tra
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186 Biological Control Svrlems Analysi;
8.3 The Semicircular Canal
Higher animals have evolved sensitive transducers of translational
and rotational skull motion in order to achieve both satisfactory
stabilization of the eye and general postural co
Numerical Calculation of Fourier Series Coefficients with the FFT
As described in Lathi section 6.6, pages 658-660, the Matlab FFT function can be used to
calculate the Fourier Series coefficients of a sampled periodic signal, like the ECG you recorded
in
Notes for Doppler lab writeup:
1. This lab does not require a formal writeup.
2.
3. Be sure to answer the questions in the lab handout:
a. What changes did you notice in the Doppler signal as you changed the
motor voltage?
b. What does the Doppler equatio
BME 230 Lab 4:
A Second-Order Mechanical System
Introduction
Second order systems appear often when modeling mechanical systems see for example the handout
on the semicircular canal in the human vestibular system. In this lab you will estimate the physica
Human Anatomy,
First Edition
McKinley & O'Loughlin
Chapter 22 :
Heart
1
Functions of the Heart
Center of the cardiovascular system, the heart.
Connects to blood vessels that transport blood
between the heart and other body tissues.
Arteries carry blood hi
Chapter 14
THE CARDIOVASCULAR SYSTEM
Introduction
Cardiovascular system: heart, blood and
blood vessels
Cardiac muscle
Makes up bulk of heart
Provides force to pump blood
Function: transports blood
2
THE ANATOMY OF THE HEART
Introduction
Located in
Homework 2. Due 09/27
CHE225, 2016
1. Water at T=298.15 K and P=1 bar is slowly supplied to a piston-cylinder system
that initially contains 5 moles of oxygen gas and 1 mole of water vapor at P=1 bar.
The piston-cylinder system is always in thermal equili
Homework 1. Due 09/20
CHE225, 2016
1. Two streams of water are continuously mixed in an adiabatic T-junction.
Assume that the total mass of water in the junction is negligible (equal to zero).
Stream 1: 1= 6kg/s
T1=73C
Stream 2: 2=4.5kg/s
T2=20C
a)
At t=0
Homework 3. Due 10/06
CHE225, 2016
Problem 1
A gas mixture of methane and steam at P=1 bar and t=400 oC (673.15K) is fed to a
reactor, where the following reactions take place:
CH4(g) + H2O(g) CO(g) + 3H2(g)
CO(g) + H2O(g) CO2(g) + H2(g)
The product strea
BME 230 (Fall 2016)
Problem Set 8
Topics:
FIR and IIR filter design with Matlab. The Fourier Series. Definition and properties.
System response to periodic signals.
Reading:
Lathi 6.1-6.4
Hsu 5.1-5.2, Solved Problems 5.1-15
To turn in:
1. 6.1-1 e
2. Find
Homework 4. Due 10/13
CHE225, 2016
Problem 1
A stream of superheated steam at t = 300 oC, P = 10 bar and mdot = 1 kg/s is
condensed inside of a heater into a saturated liquid water, which exits the heater
at P = 1 atm. A portion of the produced heat is ab
BME 230 (Fall 2016)
Problem Set 7
Topics:
Bode Plots. The z-transform and its properties. Total response of linear constant coefficient
difference equation systems via the z-transform
Reading:
Lathi 4.9, 5.1, 5.2, 5.3, 5.8 (optional- explains how the z an
BME 230 (Fall 2016)
Problem Set #5
Due October 15th by 11:59PM.
Topics:
The Laplace transform, its inverse and properties. Solution of LCCODEs via
Laplace transform. Computation of total system response via the Laplace transform.
System transfer function
BME 230 (Fall 2016)
Problem Set #4
Due October 5th
Topics:
Impulse and step response. Discrete-time convolution. The Convolution Integral
and properties. Impulse response of parallel and cascaded LTI systems. Zero-input
response of systems described by li
BME 230 (Fall 2015)
Problem Set 6
Due October 26th
Topics:
Feedback systems. Frequency response of LCCODE systems. Pole-zero plots.
Reading:
Lathi 4.5, 4.7-4.9
Hsu 3.4-3.7
To turn in:
1.
2.
3.
4.
5.
4.7-1 a, b
4.8-3 a, e
4.8-4
4.9-1
Sketched below is a sy