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Newton's Law of Inertia
This resource provides instructional resources for Newton's First Law, the law of inertia.
Newton's Law of Action-Reaction
This resource is to support TEKS (8)(6)(C), specifically the Newton's third law or the law of action-reaction.
Given schematic diagrams, illustrations or descriptions, students will identify the relationship of electric and magnetic fields in applications such as generators, motors, and transformers.
6.01 Classifications of Waves
In this video, we explore the two fundamental categories of waves and give physical examples of each.
6.02 Properties of Waves
In this video, we define the fundamental quantities associated with waves, including frequency, period, amplitude, and speed.
6.03 Sound Waves
In this video, we explore how the mathematics and concepts of waves apply to a specific type of wave: sound.
6.04 The Doppler Effect and Interference
In this video, we explore the Doppler effect, which modulates the perceived frequency of waves depending on the relative motion between source and observer.
6.05 Applications of Waves
In this video, we explore how the mathematics and concepts of waves apply in the everyday world.
7.01 Electric Charge
In this video, we define electric charge, conductors, and insulators.
7.02 Coulomb's Law
In this video, we define Coulomb's law and examine the interaction between two stationary, charged particles.
7.03 Electric Field
In this video, we define the electric field and field line conventions.
1.01 The Nature of Science
In this video, we discuss the underlying philosophy of science.
1.02 Scientific Ethics
In this video, we discuss the ethics and morality required in the responsible practice of science.
1.03 Impact of Science
In this video, we discuss how science affects our lives.
In this video, we define work, which relates force to energy.
5.02 Kinetic and Gravitational Potential Energy
In this video, we define kinetic and gravitational potential energy.