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Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Jan 04, 2016

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Daniella Conley
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Page 1: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Launch Vehicles and Sensing Technology

Page 2: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

How Rockets Work

• Newton's Laws of Motion are:

–An object at rest tends to remain at rest

–An object in motion tends to remain in motion

–For every action there is an equal and opposite reaction

Page 3: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Conservation of Momentum

• Newton's Laws are all contained in a more general principle called conservation of momentum.

• Momentum is mass times velocity

• In a system that is not disturbed from outside, the total momentum stays constant.

Page 4: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Conservation of Momentum Means:

• If velocity is zero, momentum is zero (Newton's First Law)

• If velocity is not zero, and mass doesn't change, then velocity doesn't change (Newton's Second Law)

Page 5: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Conservation of Momentum and Newton’s Third Law

• If mass changes somehow, then so does velocity.

• If an object is stationary, and flings off mass, the rest of the mass moves in the opposite direction.

• The flung off mass has positive momentum, the rest has negative momentum, and the total momentum remains zero (Newton's Third Law).

Page 6: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Conservation of Momentum

Page 7: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Rockets and Jets• Rockets and jets work according to

Newton's Third Law.

• They fire mass out at high speed and acquire velocity in the opposite direction.

• They do not need something to push against. They move because they are expelling exhaust gases at high speeds.

• Tthe rocket or jet is pushing mass away, and the mass is pushing back (equal and opposite reaction.)

Page 8: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

How Rockets and Jets Differ

• Rockets and jets expel mass by burning fuel.

• A jet gets the oxygen for combustion from the atmosphere

• A rocket carries oxygen in some form with it.

• Thus rockets can function outside the Earth's atmosphere; jets can't.

Page 9: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Rockets are Mostly Fuel (and Oxygen)

• A rocket or jet has to carry all its remaining fuel with it. (And oxygen, if it’s a rocket).

• Most of the mass of the Space Shuttle is fuel, and most of that is used to get the remaining fuel off the ground.

• The miles-per-gallon fuel economy of the Space Shuttle in its first foot off the ground is pretty terrible!

Page 10: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

About Orbits and Satellites

• Satellites travel elliptical paths with the center of the Earth at one focus (Kepler's First Law)

• Inertia causes object to continue moving in a straight line

• Gravity pulls object to Earth

• Balance between the two = orbit

Page 11: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Newton’s Mountain

Page 12: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Important Orbits

• Low vs. High Inclination

• Almost all are Prograde

• Polar Orbits for global coverage

• Circular Orbits strongly preferred– Constant altitude– Constant speed

• Sun-Synchronous

• Geosynchronous

Page 13: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

About Orbits• You do not need to expend fuel to stay in

orbit

• Satellites need attitude control fuel to correct for atmospheric drag, lunar and solar gravity, etc.

• May want thrusters to help maintain orbits

• Spin stabilization helps

• Once below 200 km, atmospheric braking leads to re-entry

Page 14: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Three Pioneers of Rocketry

• Konstantin Tsiolkovsky (1857-1935)– Worked out theoretical problems of

spaceflight

• Robert Goddard (1882-1945)– First Liquid Fuel Rocket

• Hermann Oberth (1894-1989)– Helped create operational rockets

Page 15: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Robert Goddard -

First Liquid-Fuel

Rocket, 1926

Page 16: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

The V-1

Page 17: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

The V-2

Page 18: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

V-2: Air Force Museum

Page 19: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

V-2 shrapnel

Page 20: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

V-2 Components

Page 21: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

From Sapwood to

Sputnik• An existing rocket, the

SS-6, was used.• The warhead section

was removed• A cluster of four more

SS-6 engines was bolted around a central engine

• Very Dependable

Page 22: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Sputnik I

• October 4, 1957• S- (with) +

put’ (path) +-nik (one who) =Sputnik

• Literally, one who follows the same path

Page 23: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Early Rockets, Kennedy Space Center

Page 24: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Early Rockets, Huntsville AL

Page 25: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Gemini, 1965

Page 26: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Sensor Technology• Passive (senses only ambient signals)

• Active (emits signals)

• Imaging

• Non-Imaging

• Scanning (mechanical or electronic)

• Non-scanning

Page 27: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

The Single Most

Valuable Product of the Space Program

Page 28: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Crescent Earth

Page 29: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Himalayas from Space Shuttle

Page 30: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Volcano, Alaska

Page 31: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Fringing Reefs

Page 32: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Icebergs, Antarctica

Page 33: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

A Noble Myth

“In my life, I've seen the images from space of a blue-white-green world — there are no political lines drawn on this planet.

• Luis J. Rodriguez“The border between the United States and

Mexico is an imaginary line. It cannot be seen from space”

• The Border Zone:A History of Trade between the United States and Mexico, Julia Albright; Age of Irony, Winter 2004

Page 34: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

“You Can’t See Borders From Space”

Page 35: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Mexican Border

Page 36: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Mexican Border

Page 37: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Menominee County, WI

Page 38: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

U.S.-Canadian Border

Page 39: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Landsat View of

Green Bay

Page 40: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Landsat View of Green Bay

Page 41: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Landsat view of

Washington D.C.

Page 42: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Radar Image of New York

City

Page 43: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Spy Satellite Views of Soviet Aircraft Carrier

Page 44: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.
Page 45: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Spy Satellite View of Soviet Airfield

Page 46: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.
Page 47: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.
Page 48: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

World Trade Center, September 11, 2001

Page 49: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

And Now For Something Completely Different….

Page 50: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Gulf Stream in Infrared

Page 51: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Ultraviolet View of Earth

Page 52: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

The Ocean Floor From Space

Page 53: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

Earth and Moon Together

Page 54: Launch Vehicles and Sensing Technology. How Rockets Work Newton's Laws of Motion are: –An object at rest tends to remain at rest –An object in motion.

An Eclipse of the Sun – By Earth