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The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star...

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The Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large Magellanic Cloud (LMC). Within the Tarantula, intense radiation, stellar winds and supernova shocks from the central young cluster of massive stars, energize the nebular glow and shape the spidery filaments. Around the Tarantula
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Page 1: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

The Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large Magellanic Cloud (LMC). Within the Tarantula, intense radiation, stellar winds and supernova shocks from the central young cluster of massive stars, energize the nebular glow and shape the spidery filaments. Around the Tarantula are other violent star-forming regions with young star clusters, filaments and bubble-shaped clouds.

Page 2: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Homework #2 will be posted shortly

It will be due Wednesday, September 23, noon

Page 3: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

A hallmark of science is that

theories are testable

Page 4: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

With Galileo’s observations, the revolution begun by Copernicus was nearly complete… The structure of the universe had been totally changed.

The motions of the planets were understood, at least from a geometrical perspective. Earth was no longer a “special” place in the universe.

The crowning achievement was yet to come - discovering the laws of nature and that naturally led to the newly determined structure.

Page 5: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Sir Isaac Newton (1642-1727)

Invented calculus

Invented the reflecting telescope

Connected gravity and planetary forces

Page 6: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Universal Law of Gravitation Between every two objects there is an attractive force,

the magnitude of which is directly proportional to the mass of each object and inversely proportional to the square of the distance between the centers of the objects.

Page 7: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

● Extending Kepler’s Law #1, Newton found that ellipses were not the only orbital paths.

● All orbits are “conic sections”– ellipse (bound)– parabola (unbound)– hyperbola (unbound)

● Orbital motion takes place around the center of mass

Orbital Paths from Law of Gravitation

Page 8: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

The Center of Mass

In Kepler's Laws, the Sun is fixed at a point in space (a focus of an ellipse) and the planet revolves around it. Why is the Sun privileged?

Kepler had mystical ideas about the Sun, endowing it with almost god-like qualities that justified its special place.

Newton demonstrated that the the Sun does not occupy a privileged postion and in the process he modified Kepler's 3rd Law.

Page 9: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

The center of mass is familiar to anyone who has ever played on a see-saw. The fulcrum point at which the see-saw will exactly balance two people sitting on either end is the center of mass for the two persons.

m1d1 = m2d2

Page 10: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Newton realized that in the planet-Sun system the planet does not orbit around a stationary Sun (a planet exerts as much gravitational force on the Sun as the Sun does on a planet).

Instead, Newton proposed that both the planet and the Sun orbited around the common center of mass for the planet-Sun system.

This led Newton to modify Kepler's 3rd Law.

Recall Kepler’s 3rd law: P2 / a3 = constant

Fg = Gm1m2/d2

Page 11: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

P2 = 42 a3 / G (m1 + m2)

G is known as the universal gravitational constant.

Newton’s Version of Kepler’s Third Law

If you can measure the orbital period of two objects (P) and the distance between them (a), then you can calculate the sum of the masses of both objects (m1 + m2).

Page 12: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

A Universe of Matter and Energy

What is matter?

What is energy?

Page 13: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Matter – material such as rocks, water, air; “stuff” composed of atoms

Energy – makes or has the potential to make matter move!

The history of the universe, including biological organisms, is based upon the interplay between

matter and energy.

Page 14: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Three Basic Types of Energy

• kinetic– energy of motion

• potential– stored energy; e.g., chemical,

gravitational, electrical, etc.• radiative

– energy transported by light (electromagetic radiation)

Page 15: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Conservation of Energy

Fundamental law of nature

Energy can be neither created nor destroyed

It can change form or be exchanged between objects.

The total energy content of the Universe was determined in the Big Bang and remains the same today.

K.E.

P.E. R.E.

Page 16: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Kinetic Energy (K.E.): energy of motion

K.E. = 1/2 mv2

(m is mass, v is velocity)

Page 17: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

On the microscopic level:

temperature

is a measure of the

average kinetic energy

of particles within a substance

Page 18: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Temperature Scales

Page 19: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Temperature vs. Heat● Temperature is the average

kinetic energy.● Heat (thermal energy) is the

total kinetic energy.

lower T higher T

same T

less heat more heat

Page 20: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Sound waves are a form of kinetic energy on a microscopic level

(organized vibration of molecules)

Page 21: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Applying what we’ve learned -

pizza vs. soup

caution in the kitchen

Page 22: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

The very first ever Blonde GUY joke..... And well worth the wait!

Page 23: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

An Irishman, a Mexican and a Blonde Guy were doing construction work on scaffolding on the 20th floor of a building.

They were eating lunch and the Irishman said, "Corned beef and cabbage! If I get corned beef and cabbage one more time for lunch, I'm going to jump off this building."

The Mexican opened his lunch box and exclaimed, "Burritos again! If I get Burritos one more time I'm going to jump off, too."

The blond opened his lunch and said, " Bologna again! If I get a bologna sandwich one more time, I'm jumping too."

Page 24: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

The next day, the Irishman opened his lunch box, saw corned beef and cabbage, and jumped to his death.

The Mexican opened his lunch, saw a Burrito, and jumped, too.

The blonde guy opened his lunch, saw the bologna and jumped to his death as well.

Page 25: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

At the funerals, the Irishman's wife was weeping. She said, "If I'd known how really tired he was of corned beef and cabbage, I never would have given it to him again!"

The Mexican's wife also wept and said, "I could have given him tacos or enchiladas ! I didn't realize he hated Burritos so much."

Everyone turned and stared at the blonde's wife. The blonde's wife said …

"Don't look at me. He makes his own lunch"

Page 26: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Potential Energy:

Energy that is “stored” within an object and that has the potential of being released in a different form

Page 27: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Gravitational Potential Energy

● gravitational potential energy is the energy which an object stores due to its ability to fall

● It depends on:– the object’s mass (m)– the strength of gravity (g)– the distance which it can fall (d)

m

d

g

● P.E. = mgd

Page 28: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

● gravitational potential energyg● P.E. = mgd

Page 29: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Mass-Energy Potential Energy

● mass-energy: energy is stored in matter itself

● this mass-energy is what would be released if an amount of mass, m, were converted into energy

E = mcE = mc22

[ c = 3 x 108 m/s is the speed of light]

Page 30: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Chemical Potential Energy● Chemical potential energy:

energy stored chemical bounds

Page 31: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

There are many additional examples of potential energy. e.g.,

stretched springs, …

Page 32: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Energy, while conserved, can be

transformed from one type of energy to

another

Potential Kinetic

Page 33: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Potential Kinetic

Page 34: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Kinetic Potential

Page 35: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

Orbits & Energy

MaximumKinetic Energy

MaximumPotentialEnergy

Downhill

Uphill

Page 36: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

From the

perspective of

energy, which

planet is more

difficult to reach

from the Earth?

Mars

Venus

Page 37: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

From the

perspective of

energy, which

planet is more

difficult to reach

from the Earth?

Mars

It is “uphill”

Page 38: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

ConceptTest

The gravitational potential energy of an interstellar cloud of gas that is slowly shrinking in size …

(yellow) stays the same

(red) slowing changes into other forms of energy

(green) slowly increases

(blue) interstellar clouds do not have gravitational potential energy

Page 39: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

ConceptTest

The gravitational potential energy of an interstellar cloud of gas that is slowly shrinking in size …

(yellow) stays the same

(red) slowing changes into other forms of energy

(green) slowly increases

(blue) interstellar clouds do not have gravitational potential energy

Page 40: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

ConceptTestIn the not too distant future scientists will develop an engine that produces more energy than it uses. This statement is …

(yellow) likely to be true

(red) false

(green) difficult to determine if this will happen or not.

(blue) this has already happened, but the government is suppressing this discovery.

Page 41: The Tarantula NebulaThe Tarantula Nebula is more than 1,000 light-years in diameter -- a giant star forming region within our neighboring galaxy the Large.

ConceptTestIn the not too distant future scientists will develop an engine that produces more energy than it uses. This statement is …

(yellow) likely to be true

(red) false

(green) difficult to determine if this will happen or not.

(blue) this has already happened, but the government is suppressing this discovery.


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