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High Level Physics 1
Rating: 5.0 out of 5(1 rating)
3 students

High Level Physics 1

Physics 1
Created byAce edu
Last updated 7/2019
English
English [Auto],

What you'll learn

  • High Level Physics 1
  • Physics 1
  • - Vectors snd Scalars - Linear Motion - Linear Motion Solved Problems - 2 and 3 Dimensional Motion - 2 and 3 Dimensional Motion Solved Problems
  • Solve all of the at the end of the lecture- ask questions to me- look to other books and examples

Course content

1 section12 lectures2h 9m total length
  • Introduction to Physics 11:21

    Explore physics 1 fundamentals, from measurements and estimation to motion in multiple dimensions with vectors and Newton's laws. Solve circular motion, energy, momentum, rotation, gravitation, and oscillation through examples.

  • UNITS AND MEASUREMENT22:24

    Explore the international si system, base units like meter, second, kelvin, mole, and prefixes used for scale. Learn about random and systematic errors, accuracy and precision, and practice unit conversions.

  • UNITS AND MEASUREMENT PROBLEM SOLVING12:07

    Apply propagation of errors to measurements, calculate percent and absolute uncertainties, and use fractional uncertainties to determine area and perimeter.

  • LINEAR MOTION PART 114:00

    Explore linear motion by distinguishing displacement, distance, velocity, and acceleration as vectors. Learn to derive average and instantaneous velocity and examine uniformly accelerated motion with velocity and position relationships.

  • VECTORS AND SCALARS PART 17:46

    Explore vectors and scalars, distinguishing direction and magnitude; learn vector and scalar examples, resolve components, and find the resultant in basic vector addition.

  • LINEAR MOTION PART 216:20

    Develop the velocity equation without time from linear motion, analyze corresponding displacement graphs, and work through example problems on acceleration, displacement, and timing to reinforce motion concepts.

  • VECTORS AND SCALARS PART 211:15

    Explore vectors and scalars, vector addition, opposite vectors, resolving components with cosine and sine, and the change in velocity with x and y components.

  • 2 AND 3 DIMENSIONAL MOTION PART 115:11

    Explore two- and three-dimensional motion by analyzing displacement and velocity vectors, axes, and curvature, then apply projectile motion with horizontal and vertical components under gravity.

  • LINEAR MOTION PART 312:17

    Learn constant-acceleration motion under gravity, derive y and v equations, and solve free-fall and thrown-upwards problems such as a 25 m/s throw to find max height and ground impact time.

  • LINEAR MOTION PART 47:15

    Study a linear motion catch-up: a student with constant speed chases a bus 25 meters ahead that accelerates. Find catch times 3.5 s and 8.4 s.

  • 2 AND 3 DIMENSIONAL MOTION PART 21:57

    Develop understanding of two- and three-dimensional projectile motion by deriving horizontal and vertical components, time relations, distance, height, gravity, and theta-based expressions.

  • 2 AND 3 DIMENSIONAL MOTION PART 37:22

    This lecture analyzes projectile motion, deriving max height when vy=0 and time as twice the time to reach max height, with range R = v0^2 sin 2 theta / g.

Requirements

  • Basic level of physics

Description

In this course you will be able to learn the very basis of Physics. If learning Physics has been a struggle for you now it is time to change it forever. By learning Functions you will be able to get the great scores on your tests.  Most people think that Physics is another version of math; however that isn’t the case. Physics is real life and math is abstract. In this course you will be enhancing your perspective to Physics in general with real life examples. Please try you best to take notes and solve questions by yourself first and then look to the solutions.

This course covers the topics below:

Introduction to Physics 1 delves into the fundamental principles that govern the physical world, providing a comprehensive foundation for understanding the intricacies of the universe. The course begins with a crucial exploration of Measurement and Uncertainty, where students learn the art and science of precise measurement and the inherent uncertainties within the process. The accompanying Solved Problems in this section serve as practical applications, guiding students to navigate through real-world scenarios.


Moving forward, the study transitions to the essential concepts of Vectors and Scalars, uncovering the distinctions between these mathematical representations of physical quantities. The subsequent Solved Problems offer a hands-on approach, demonstrating how to manipulate vectors and scalars in problem-solving situations.


Linear Motion takes center stage as the course progresses, unraveling the mysteries of objects in motion along straight paths. Through engaging examples and applications, students grasp the principles governing Linear Motion. The corresponding Solved Problems provide a structured approach to applying these principles, reinforcing understanding through practical exercises.


The exploration of 2 and 3 Dimensional Motion expands the scope of understanding, introducing complexities that arise when motion occurs in multiple dimensions. This section challenges students to conceptualize and analyze motion in a broader spatial context. The Solved Problems become intricate problem-solving exercises, allowing students to master the application of physics principles in dynamic, multidimensional scenarios.


In summary, Introduction to Physics 1 takes learners on an intellectual journey through the foundational topics of Measurement and Uncertainty, Vectors and Scalars, Linear Motion, and 2 and 3 Dimensional Motion. The integration of Solved Problems enhances the educational experience, providing valuable insights into the practical application of physics principles.



Who this course is for:

  • High school students, Ib students, College students, A Level students