Answer:
The speed of a turtle is 4m/s
Explanation:
speed = distance/time
distance = 100m
time = 25s
s = 100/25
= 4m/s
Answer:
that would be for force and motion and it would be newtons laws and that would be like inertia
Explanation:
it would be the law of inertia: every action has a equal ad opposite reaction.
hope this helps :)
Answer:
If these are your answer choices:
A. The sum of the horizontal forces is zero.
B. All the forces combine to give zero net force.
C. The forces occur as pairs of forces with equal magnitude and direction.
D. The forces all have the same magnitude.
The correct answer is B. All the forces combine to give zero net force.
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Genes are actually made up of the DNA. Genes are the functional unit and basic physical unit of the heredity.
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To know more about genes follow
in the same direction as the force
B.
independent of the force
C.
in the opposite direction of the force
D.
perpendicular to the force
Answer:
In the same direction as the force
Explanation:
Consider an object in which force is applied. The force applied moves the object in the direction of the force.
Suppose if the force is applied to the moving object in that case object moves in the direction of the stronger force.
Thus, according to the given question the applied force moves the object in its direction.
The transfer of thermal energy as heat requires a difference in temperature between the two points of transfer. Heat may be transferred by means of conduction, convection, or radiation. Conduction is the transfer of thermal energy (heat in transfer) due to collisions between the molecules in the object.
Heat transfer between two objects ends when they reach the same temperature or thermal equilibrium. This process is guided by the second law of thermodynamics and can be observed via changes in temperature. Once no net heat transfer occurs over time, a state of thermal equilibrium is reached.
The transfer of heat, or thermal energy, between two objects ends when those objects reach the same temperature, a state known as thermal equilibrium. This process is guided by the second law of thermodynamics, which indicates that heat will naturally transfer from a hotter object to a cooler one. For instance, if you put ice into a hot drink, heat transfers from the warmer drink to the colder ice until they both reach the same temperature. Furthermore, the internal energy of a system, which includes its thermal energy, is directly proportional to its temperature. Hence, observing the temperature change can provide an indication of when heat transfer has ceased.
However, it's important to note that the absence of a temperature difference doesn't mean energy isn't there; it just isn't available for work because no more heat transfer can occur without a temperature difference. This provides a fundamental characterization of a thermodynamic system and exemplifies that observation of no net heat transfer over time indicates a state of thermal equilibrium.
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