Origin of Modern Astronomy

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Presentation transcript:

Origin of Modern Astronomy Chapter 28.1 Origin of Modern Astronomy Who is Stan Hatfield and Ken Pinzke

28.1 Early Astronomy Ancient Greeks  Astronomy is the science that studies the universe. It includes the observation and interpretation of celestial bodies and phenomena.  The Greeks used philosophical arguments to explain natural phenomena.  The Greeks also used some observational data.

Astrolabe Makes no sense without caption in book

Calculating Earth’s Circumference Makes no sense without caption in book

28.1 Early Astronomy Ancient Greeks  Geocentric Model • In the ancient Greeks’ geocentric model, the moon, sun, and the known planets—Mercury, Venus, Mars, and Jupiter—orbit Earth.  Heliocentric Model • In the heliocentric model, Earth and the other planets orbit the sun.

Geocentric and Heliocentric Models Makes no sense without caption in book

28.1 Early Astronomy Ancient Greeks  Ptolemaic System • Ptolemy created a model of the universe that accounted for the movement of the planets. • Retrograde motion is the apparent westward motion of the planets with respect to the stars.

Retrograde Motion Makes no sense without caption in book

28.1 Early Astronomy The Birth of Modern Astronomy  Nicolaus Copernicus • Copernicus concluded that Earth is a planet. He proposed a model of the solar system with the sun at the center.

28.1 Early Astronomy The Birth of Modern Astronomy  Tycho Brahe • Tycho Brahe designed and built instruments to measure the locations of the heavenly bodies. Brahe’s observations, especially of Mars, were far more precise than any made previously.

28.1 Early Astronomy The Birth of Modern Astronomy  Johannes Kepler • Kepler discovered three laws of planetary motion: 1. Orbits of the planets are elliptical. 2. Planets revolve around the sun at varying speed. 3. There is a proportional relationship between a planet’s orbital period and its distance to the sun.

22.1 Early Astronomy The Birth of Modern Astronomy  Johannes Kepler • An ellipse is an oval-shaped path. • An astronomical unit (AU) is the average distance between Earth and the sun; it is about 150 million kilometers.

Planet Revolution Makes no sense without caption in book

28.1 Early Astronomy The Birth of Modern Astronomy  Galileo Galilei • Galileo’s most important contributions were his descriptions of the behavior of moving objects. • He developed his own telescope and made important discoveries: 1. Four satellites, or moons, orbit Jupiter. 2. Planets are circular disks, not just points of light. 3. Venus has phases just like the moon. 4. The moon’s surface is not smooth. 5. The sun has sunspots, or dark regions.

The Solar System Model Evolves Makes no sense without caption in book

28.1 Early Astronomy The Birth of Modern Astronomy  Sir Isaac Newton • Although others had theorized the existence of gravitational force, Newton was the first to formulate and test the law of universal gravitation.  Universal Gravitation • Gravitational force decreases with distance. • The greater the mass of an object, the greater is its gravitational force.

Gravity’s Influence on Orbits Makes no sense without caption in book