We need the five example of uniform and non-uniform motion.
Accelerated. The concept of "uniform motion" is a mathematical abstraction, like an infinite plane. ALL mass in the universe is constantly being accelerated by gravitational forces from every other mass in the universe. Specifically, a satellite in orbit is constantly falling toward the Earth under gravity - but because of the inertia of the satellite, it is continually missing the Earth! In the absence of gravity, the satellite would proceed in a straight line tangent to its current elliptical orbit.
A speed that is more than five times faster than the speed of sound is equivalent to Mach 5. In this case, the speed range you provided, 3820-7640 mph, falls within the Mach 5 category.
When a line of clouds moves across the sky, it is an example of cloud motion due to wind patterns in the atmosphere. The movement of clouds is influenced by wind speed and direction in the specific atmospheric region where they are located.
An Eastern Star uniform is worn by members of the Order of the Eastern Star, a fraternal organization open to both men and women. The uniform typically consists of a white dress for women and a dark suit for men, usually adorned with emblematic symbols of the organization. The uniform is generally worn during official meetings and ceremonies.
That refers to using the gravity of a planet - for example Jupiter - to speed up a spacecraft. Note that the spacecraft approaches the planet with a certain speed, and goes away from it at the same speed, with respect to the planet. However, since in doing so it changes direction, and since the planet orbits the Sun, it is possible to set things up so that the spacecraft leaves with a greater speed with respect to the Sun.
Yes, a person running is an example of non-uniform motion because their speed and direction are changing as they move. This is in contrast to uniform motion, where an object travels at a constant speed and in a straight line.
If the graph of speed versus time is a straight line, then the acceleration is constant/uniform. If the graph is curved or has a sharp corner, the acceleration is non-uniform, i.e. not constant. A uniform acceleration means the speed changes by fixed amount every unit of time, e.g. +3 m/s every second.
A car driving around a circular track at a constant speed is a good example of uniform circular motion.
No, not all motions are uniform. Uniform motion refers to an object moving at a constant speed in a straight line. Other types of motion include non-uniform motion, which involves changes in speed or direction, and circular motion, where an object moves in a circular path at a constant speed.
In physics, "uniform" typically refers to a condition where a physical quantity (such as velocity or acceleration) remains constant or does not change with time. For example, uniform motion means an object is moving at a constant speed in a straight line without acceleration or deceleration.
r=d/t is farmula of speed or uniform speed and its si unit is m/s.
Uniform speed is when an object travels a consistent distance in a constant amount of time, maintaining a steady pace. Non-uniform speed refers to an object that does not travel a consistent distance in a constant amount of time, meaning its speed is changing throughout its motion.
The motion of an apple falling from a tree is an example of non-uniform motion. This is because the speed of the apple changes as it falls due to the acceleration of gravity acting on it.
there is motion all around you. a car is good example of motion. a car moving at a uniform speed on a straight road is an example of uniform motion. a car moving at differing speeds on a non straight road is an example of non uniform motion.
An object moving along a curved path at varying speeds is an example of non-uniform motion. This means that the object is not maintaining a constant velocity but is instead experiencing changes in speed or direction.
1. You will have a uniform acceleration of about 9.8 meters/second2 when an object is in free fall near the Earth's surface - for example, when you drop an object, and air resistance can be ignored. 2. Any situation where the force is constant. 3. Uniform acceleration is often assumed for simplicity, for example, when accelerating a car.
Find out the time using speed and acceleration, (time=speed/acceleration) and then use it to find out uniform velocity. From that find out uniform acceleration. (as uniform acceleration is equal changes of velocity over equal intervals of time)