The wave is not strong enough to move the object forward. It just passes along under the object and goes on its way.
Light passes through a microscope because microscopes use lenses to bend and focus the light that enters. This magnifies the object being viewed, making it appear larger and more detailed under the microscope. The light passes through the sample on the microscope slide, which is then magnified by the lenses to produce an image.
A projectile has an initial forward velocity.
For objects falling under constant acceleration (such as gravity), the distance an object travels each second is determined by the formula d = 0.5 * a * t^2, where "d" is the distance, "a" is the acceleration, and "t" is the time in seconds. This means that the distance traveled each second will increase quadratically as time passes.
A spring that is being squeezed or compressed is an example of an object under compression.
No, an object with mass will always experience the gravitational force, so it cannot be truly weightless when under the influence of gravity. Weight is the measure of the force of gravity acting on an object, so as long as gravity is present, the object will have weight.
Light bends as it passes from the water to the air - this changes the perspective of where the object is.
An ideal diode:Passes current in one direction only. (Under forward bias).Has no leakage current (passes no current under reverse bias).Has no forward voltage drop. (No voltage loss under forward bias - a real diode has Vd~=0.7)See links for more details.
Light passes through a microscope because microscopes use lenses to bend and focus the light that enters. This magnifies the object being viewed, making it appear larger and more detailed under the microscope. The light passes through the sample on the microscope slide, which is then magnified by the lenses to produce an image.
A projectile has an initial forward velocity.
yes the hereditary othuvars are in only forward class.
No.. they comes under the backward cast
This is the current that flows under the application of a forward voltage. For eg. the dc forward current for an LED may be 30 mA when a forward voltage of 2.0V is applied.
For objects falling under constant acceleration (such as gravity), the distance an object travels each second is determined by the formula d = 0.5 * a * t^2, where "d" is the distance, "a" is the acceleration, and "t" is the time in seconds. This means that the distance traveled each second will increase quadratically as time passes.
it sinks
The object (or complement) of the preposition under is the covers in the sentence "You can stay here under the covers."
an object
The object of the preposition "under" is "covers," as it is the noun that the preposition is referring to in relation to the verb "stay."