Answer: c
Explanation:energy cannot be made or destroyEd according to a law of energy
Answer:
The answer is C. that energy was transformed
Explanation:
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CaCo+Energy -> CaCo+CO2
B. As particles travel in straight lines, their paths sometimes meet, and then they bounce apart with no gain or loss of energy.
C. When particles pass close enough to one another, their attractions pull them together, and then they bounce apart with a loss of energy.
D. As particles travel in straight lines, their paths sometimes meet, and then they bounce apart with a loss of energy.
Answer: option B. As particles travel in straight lines, their paths sometimes meet, and then they bounce apart with no gain or loss of energy.
Explanation:
The kinetic-molecular theory explains the the properties and behavior of the gases in terms of the energy, size, and motion of the particles that form the gases.
According to this model, the gas particles are in constant random motion. The particles travel in straight line until they collide either with other particles or with the walls of the vessel. Such collisions are elastic, meaning that energy is not either gain or loss. Therefore, this theory does not consider either attractions or repulsions between the particles. The particles bounce apart and the total kinetic energy is conserved.
Answer:
B its B
Explanation:
To solve this we must be knowing each and every concept related to heart and its function. Therefore, the correct option is option B that is circulates oxygen-filled blood throughout the body.
The heart is an organ that acts as a blood pump. In spiders as well as annelid worms, it is a straight tube. In mollusks, it is a little more complex structure including one or more collecting chambers (atria) and a primary pumping chamber (ventricle).
The myocardial, a thick muscular wall, is made up of numerous layers in the heart. The endocardium lines the interior, while the pericardium, a narrow layer of tissue, covers the exterior. The interaction of these two parts of the human body results in a system that circulates oxygen-filled blood throughout the body.
Therefore, the correct option is option B that is circulates oxygen-filled blood throughout the body.
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