Lisa Tarman

Lycoming College
Physics Teacher

Biography

I teach Conceptual, College Prep, and AP Physics I. This is my 27th year teaching high school physics.

Education

BA Physics
Lycoming College
MA Physics Education
University of Virginia

Educator Statistics

Numerade tutor for 6 years
723 Students Helped

Topics Covered

Mastering Motion: Achieving Efficiency Along a Straight Line
Exploring the Fascinating World of Mechanical Waves
Discover the Science of Sound and Hearing: Your Guide to Better Listening
Understanding Electromagnetic Waves: A Comprehensive Guide
Unlocking the Secrets of Thermal Properties: Understanding Matter
Exploring the Wonders of Atomic Physics: A Comprehensive Guide
Discover the Fascinating World of Nuclear Physics
Discover the Fascinating World of Particle Physics Today
Understanding Reflection and Refraction of Light: A Comprehensive Guide
Motion in 2d or 3d
Discovering the Fundamentals: Newton's Laws of Motion Explained
Mastering the Rotation of Rigid Bodies: Tips & Techniques
Explore the Fascinating Dynamics of Rotational Motion
Understanding Equilibrium and Elasticity: A Comprehensive Guide
Discover the Properties of Quadrilaterals: A Comprehensive Guide
Discover the Power of Right Triangles in Geometry
Calculate Area and Perimeter - Easy Online Tools
Discover the Power of Similarity - Boost Your Results Today!
Foundations for Geometry: Building Blocks for Mathematical Understanding
Discover the Wonders of Geometry: An Introduction to Shapes and Space
Unlock the Power of Logic: Boost Your Critical Thinking Skills
Circles: Exploring the Beauty and Significance of Circular Shapes
Polar Coordinates: Understanding the Basics and Applications
Mastering Vectors: An Introduction to Vector Basics
Understanding Complex Numbers: A Comprehensive Guide
Mastering Equations and Inequalities: Your Guide to Mathematical Success
Functions
Mastering Linear Functions: A Comprehensive Guide
Mastering Polynomials: Essential Tips and Tricks | [Brand Name]
Explore the Fascinating World of Periodic Motion - Learn More Today!
Understanding Temperature and Heat: A Comprehensive Guide
Solving Systems of Equations and Inequalities: A Comprehensive Guide
Rational Functions: Understanding Their Properties and Applications
Mastering Newton's Laws: Tips for Applying Them Effectively
Understanding Moment Impulse and Collisions for Better Physics
Rotational Motion
Oscillatory Motion

Lisa's Textbook Answer Videos

01:50
University Physics with Modern Physics

(a) By how much would the body temperature of the bicyclist in Problem 17.89 increase in an hour if he were unable to get rid of the excess heat? (b) Is this temperature increase large enough to be serious? To find out, how high a fever would it be equivalent to, in $^\circ$F? (Recall that the normal internal body temperature is 98.6$^\circ$F and the specific heat of the body is 3480 J/kg $\cdot$ C$^\circ$.)

Chapter 17: Temperature and Heat
Section 7: Mechanisms of Heat Transfer
Lisa Tarman
02:57
Physics

$\because$ Predict/Calculate A child ridesa pony on a circular track whose
radius is 5.25 $\mathrm{m}$ (a) Find the distance traveled and the displacement after the child has gone halfway around the track. (b) Does
the distance traveled increase, decrease, or stay the same when the child completes one circuit of the track? Explain. (c) Does the
displacement increase, decrease, or stay the same when the child
completes one circuit of the track? Explain. (d) Find the distance
and displacement after a complete circuit of the track.

Chapter 2: One-Dimensional Kinematics
Lisa Tarman
01:25
Physics

A wave travels along a stretched horizontal rope. The vertical distance from crest to trough for this wave is 16 $\mathrm{cm}$ and the horizontal distance from crest to trough is 22 $\mathrm{cm} .$ What are (a) the wavelength and (b) the amplitude of this wave?

Chapter 14: Waves and Sound
Lisa Tarman
01:35
Physics

A surfer floating beyond the breakers notes 17 waves per minute passing her position. If the wavelength of these waves is 38 $\mathrm{m}$ , what is their speed?

Chapter 14: Waves and Sound
Lisa Tarman
01:45
Physics

The speed of surface waves in water decreases as the water
becomes shallower. Suppose waves travel across the surface of
a lake with a speed of 2.0 $\mathrm{m} / \mathrm{s}$ and a wavelength of 1.5 $\mathrm{m} .$ When these waves move into a shallower part of the lake, their speed
decreases to $1.6 \mathrm{m} / \mathrm{s},$ though their frequency remains the same.
Find the wavelength of the waves in the shallower water.

Chapter 14: Waves and Sound
Lisa Tarman
01:53
Physics

Tsunami A tsunami traveling across deep water can have a speed
of 750 $\mathrm{km} / \mathrm{h}$ and a wavelength of 310 $\mathrm{km} .$ What is the frequency
of such a wave?

Chapter 14: Waves and Sound
Lisa Tarman
1 2 3 4 5 ... 116

Lisa's Quick Ask Videos

03:14
Physics 103

A sports car accelerates at 3.20 m/s2 along a straight road. At t1 = 4.50 s and t2 = 5.50 s it passes two marks that are 35.0 m apart. What is the car's velocity at t0 = 0 s?

Lisa Tarman
04:25
Algebra

diamond problems

Lisa Tarman
03:06
Physics 101 Mechanics

A 3.0-kg block is dragged over a rough, horizontal surface by a constant force of 16 N acting at an angle of 37° above the horizontal as shown. The speed of the block increases from 4.0 m/s to 6.0 m/s in a displacement of 5.0 m. What work was done by the friction force during this displacement?

Lisa Tarman
03:02
Physics 103

Lisa Tarman
03:56
Physics 101 Mechanics

An astronaut has left the International Space Station to test a new space scooter. Her partner measures the following velocity changes, each taking place in a 10-s interval. What are the magnitude, the algebraic sign, and the direction of the average acceleration in each interval? Assume that the positive direction is to the right. (a) At the beginning of the interval, the astronaut is moving toward the right along the $x$-axis at 15.0 m/s, and at the end of the interval she is moving toward the right at 5.0 m/s. (b) At the beginning she is moving toward the left at 5.0 m/s, and at the end she is moving toward the left at 15.0 m/s. (c) At the beginning she is moving toward the right at 15.0 m/s, and at the end she is moving toward the left at 15.0 m/s.

Lisa Tarman
02:59
Physics 101 Mechanics

During an auto accident, the vehicle's air bags deploy and slow down the passengers more gently than if they had hit the windshield or steering wheel. According to safety standards, air bags produce a maximum acceleration of $60 g$ that lasts for only $36 \mathrm{~ms}$ (or less). How far (in meters) does a person travel in coming to a complete stop in $36 \mathrm{~ms}$ at a constant acceleration of $60 \mathrm{~g} ?$

Lisa Tarman
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