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The atomic radius decreases from left to right and increases from top to bottom
Electronegativity increases from left to right and decreases from top to bottom on the periodic table.
In a direct relationship, as one variable increases, the other variable also increases. Conversely, as one variable decreases, the other variable decreases as well. The relationship between the two variables is positive and proportional.
The acidity of the solution increases. The hydronium ion concentration increases. The solution becomes more acidic as pH decreases below 7.0.
As the ionic radius increases, the lattice energy decreases.
Inertia. Inertia applies to both increases and decreases in velocity.
Answer #1:The Rotational Inertia of an object increases as the mass "increases" and thedistance of the mass from the center of rotation "decreases".=================================Answer #2:If Answer #1 were correct, then flywheels would be made as small as possible,and a marble would be harder to spin than a wagon wheel is.An object's rotational inertia (moment of inertia) increases in direct proportionto its mass, and increases in proportion to the square of the distance of themass from the center of rotation.
If the mass of an object decreases, its inertia will also decrease. Inertia is directly proportional to mass, so as mass decreases, so does inertia. This means the object will be easier to accelerate or decelerate.
I conducted the experiment and it doesn't increase but it decreases. The reason it decreases is because the restoring force remains the same but the mass, or more accurately the moment of inertia increases.
As frequency increases, the wavelength decreases and the energy of each photon (in the case of light) increases. Similarly, the period (time taken for one cycle) decreases as frequency increases.
It's mass.
When she pulls her arms in, her rotational kinetic energy increases because her moment of inertia decreases, causing her to spin faster.
The larger the mass, the more inertia it has and vice versa If an object has a large mass it increases to object's tendency to resist movement from an outside force, therefore a larger object has more inertia If an object has a small mass, the mass decreases the object's tendency to resist movement from an outside force, therefore a smaller object has less inertia larger object=harder to move smaller object=eaiser to move
The angular velocity of an object typically increases as it decreases in size, due to the conservation of angular momentum. This is because the moment of inertia decreases as the object's size decreases, causing the angular velocity to increase to maintain the same angular momentum.
Inertia decreases as mass gets smaller. Inertia is a measure of an object's resistance to changes in its state of motion, and is directly proportional to mass. As mass decreases, so does the inertia of the object.
Volume of most substances increases with heat and decreases with cold.
It decreases with height.