Paula Fredriksen, Boston University: "Sin: The Early History of an Idea - Lecture 2: Flesh and the D
Jesus of Nazareth announced that God was about to redeem the world. Some 450 years later, the church taught that the far greater part of humanity was eternally condemned. The early community began by preserving the memory and the message of Jesus; within decades of his death, some Christians asserted that Jesus had never had a fleshly human body at all. The church that insisted that Jewish scriptures were Christian scriptures also insisted that the god who said "Be fruitful and multiply" actuall
Paula Fredriksen, Boston University: "Sin: The Early History of an Idea - Lecture 3: A Rivalry of Ge
Jesus of Nazareth announced that God was about to redeem the world. Some 450 years later, the church taught that the far greater part of humanity was eternally condemned. The early community began by preserving the memory and the message of Jesus; within decades of his death, some Christians asserted that Jesus had never had a fleshly human body at all. The church that insisted that Jewish scriptures were Christian scriptures also insisted that the god who said "Be fruitful and multiply" actuall
Carlos Eire, Yale University: "A Brusque History of Eternity - Lecture 1: The Birth of Eternity" –
Until fairly recently eternity was no mere abstraction or metaphor in the Christian tradition, but rather the ultimate destination for humankind, a metaphysical conceit with practical implications as inescapable as legal obligations, or taxes, or death. Eternity was an ineffable mystery, to be sure, but of no less value in human interaction than money itself, or crowns and thrones. In our own day, however, eternity seems a purely abstract concept best left in the hands of astrophysicists, a frig
Carlos Eire, Yale University: "A Brusque History of Eternity - Lecture 1: The Birth of Eternity" –
Until fairly recently eternity was no mere abstraction or metaphor in the Christian tradition, but rather the ultimate destination for humankind, a metaphysical conceit with practical implications as inescapable as legal obligations, or taxes, or death. Eternity was an ineffable mystery, to be sure, but of no less value in human interaction than money itself, or crowns and thrones. In our own day, however, eternity seems a purely abstract concept best left in the hands of astrophysicists, a frig
Carlos Eire, Yale University: "A Brusque History of Eternity - Lecture 2: Protestantism and the Refo
Until fairly recently eternity was no mere abstraction or metaphor in the Christian tradition, but rather the ultimate destination for humankind, a metaphysical conceit with practical implications as inescapable as legal obligations, or taxes, or death. Eternity was an ineffable mystery, to be sure, but of no less value in human interaction than money itself, or crowns and thrones. In our own day, however, eternity seems a purely abstract concept best left in the hands of astrophysicists, a frig
Carlos Eire, Yale University: "A Brusque History of Eternity - Lecture 3: From Eternity to Five-Year
Until fairly recently eternity was no mere abstraction or metaphor in the Christian tradition, but rather the ultimate destination for humankind, a metaphysical conceit with practical implications as inescapable as legal obligations, or taxes, or death. Eternity was an ineffable mystery, to be sure, but of no less value in human interaction than money itself, or crowns and thrones. In our own day, however, eternity seems a purely abstract concept best left in the hands of astrophysicists, a frig
20 - The value of life, Part II; Other bad aspects of death, Part I
Lecture 20 continues the discussion of the value of life. It considers the neutral container theory, which holds that the value of life is simply a function of its contents, both pleasant and painful, and contrasts this with the valuable container theory, which assigns value to being alive itself. The lecture then turns to a consideration of some of the other aspects of death that may contribute to the badness of death. Among the issues addressed are the inevitability, variability and unpredicta
18 - Paradise XI, XII
Professor Mazzotta continues his discussion of the Heaven of the Sun (Paradiso 10-14), where the earthly disputes between the Franciscan and Dominican orders give way to mutual praise. The tribute St. Thomas pays to the founder of the Franciscan order (Paradiso 11) is repaid by St. Bonaventure through his homage to St. Dominic (Paradiso 12). The chiasmic structure of these cantos is reinforced by the presence of Nathan and Joachim of Flora, the counterweights to Solomon and Sigier, among the s
16 - Paradise I, II
Professor Mazzotta introduces students to Paradiso. The Ptolemaic structure of Dante’s cosmos is described together with the arts and sciences associated with its spheres. Beatrice’s role as teacher in Dante’s cosmological journey is distinguished from that of her successor, St. Bernard of Clairvaux. An introduction to Dante’s third and final guide to the Beatific Vision helps situate the poetics of Paradiso vis-à-vis the mystical tradition. Professor Mazzotta’s introduction to th
3.014 Materials Laboratory (MIT)
This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics,
Lecture 36: Review
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 35: Kinetics: Catalysis
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 34: Kinetics (cont.)
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 33: Kinetics (cont.)
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 32: Kinetics (cont.)
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 31: Kinetics
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 30: Transition Metals
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 29: The Shapes of Molecules: VSEPR Theory
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 28: Transition Metals: Crystal Field Theory
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.
Lecture 27: Transition Metals
Introduction to chemistry, with emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Introduction to the chemistry of biological, inorganic, and organic molecules.













