what componets make up two -thirds of your total fico score
what componets make up two -thirds of your total fico score
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To add two vectors that aren't parallel or perpindicular you resolve both of the planes displacement vectors into "x' and "y" components and then add the components together. (parallelogram technique graphically)AnswerResolve both of the planes displacement vectors into x and y components and then add the components
Analytical method means, using calculations. In this case, a vector in two dimensions (to keep the example simple) is separated into horizontal and vertical components; the components of both vectors are then added. You calculate the horizontal and vertical components with basic trigonometry; however, most scientific calculators have a function to convert polar to rectangular, to make this easier for you. They can also convert the final result back from rectangular to polar.
Projectile motion has two components horizontal motion and vertical motion. Gravity affects only the vertical motion of projectile motion.
An object's forward motion and the pull of gravity from a larger body, such as a planet or star, come together to form an orbit. The object's forward motion keeps it moving in a curved path, while gravity constantly pulls it towards the larger body, causing it to stay in a stable orbit.
The two components of projectile motion are the horizontal motion, which is constant and unaffected by gravity, and the vertical motion, which is affected by gravity and follows a parabolic path.
The two independent components of projectile motion are the horizontal motion (constant velocity) and the vertical motion (free fall). These two components combine to form a curved path due to the influence of gravity acting on the object.
The two factors that affect orbital motion are the mass of the objects involved and the distance between them. Gravitational force is stronger with larger masses and decreases as distance between objects increases.
Projectile motion consists of two components: horizontal motion and vertical motion. The horizontal component is constant and unaffected by gravity. The vertical component is influenced by gravity and accelerates downwards. By combining these two components, the path of a projectile can be accurately predicted using equations of motion.
The two main types of electron motion that are important in determining the magnetic property of a material are spin motion and orbital motion. Spin motion refers to the intrinsic angular momentum of an electron, giving rise to its magnetic moment, while orbital motion refers to the movement of electrons around the nucleus within an atom, contributing to the overall magnetic behavior of the material.
Two key components of a projectile's motion are its horizontal motion and vertical motion. The horizontal motion is constant and determined by the initial velocity, while the vertical motion is influenced by gravity, causing the projectile to travel in a curved path.
The two types of motion that electrons exhibit in an atom are orbital motion around the nucleus, and spin motion on their own axis. Orbital motion refers to the movement of electrons in specific energy levels around the nucleus, while spin motion refers to the clockwise or counterclockwise rotation of an electron on its axis.
The two velocity components of projectile motion are the horizontal component and the vertical component. The horizontal component remains constant throughout the motion, while the vertical component changes due to the acceleration of gravity.
The two components of projectile motion are horizontal motion, which is constant and unaffected by gravity, and vertical motion, which is affected by gravity and follows a parabolic path. Both components combine to determine the trajectory of the projectile.
Velocity and acceleration are two components used to define motion. Velocity describes the speed and direction of an object's motion, while acceleration describes how quickly an object's velocity is changing.