Part I. Kirchhoff's Laws in 2 Loops. a. Find the necessary KVL/KCL equations to solve the problem. b. Compute for I1, I2, and I3 c. Resketch the circuit and label the current with the correct direction and values for each resistor. Note: For every wrong direction of a current, wrong value of current, or missing current for each resistor minus d. Find V1V3,Vs,and V, e. Find P1P3,P5̟and P7 R1 E1 R3 R2 R4 R5 R6 E4 E3 R7 Given: R, = 200 E = 25V R2 = 100 E2 = 50V R3 = 300 Ez = 5.0V R4 = 450 E4 = 40.0V R5 = 650 R6 = 75N R, = 300 Rg = 250
Latent heat and phase change
A physical process in which a conversion among the basic states or phases of matter, i.e., solid, liquid, and gas takes place under the effect of a certain temperature and pressure is referred to as a phase change. Generally, the phase change of a substance occurs when heat transfer takes place between the substance and its surroundings. Based on the direction in which heat transfer takes place, different types of phase changes can occur.
Triple Point of Water
The branch of physics in which observer deals with temperature related properties is called thermodynamics.
Boiling Point of Water
Everyday examples of boiling is, boiling milk, heating water. One would have observed that when we heat water it goes through various stages and at one point bubbles show in water, and water keeps splashing with bubbles bursting, we in layman terms say that water is boiling.
Freezing Point of Water
In general, the freezing point of water is 0° Celsius, or 32° Fahrenheit. This is the temperature at which water will ordinarily change from its liquid state to its solid state (ice). However, there are certain conditions that can affect the freezing point of water. For example, a liquid may be supercooled or contain impurities so that it does not freeze at the ordinary freezing point.
DUE IN 30 MINUTES. Please answer it in GRESA Format (Given, Required, Equation, Solution, Answer). Please also include the illustrations, and answer it as neatly and as detailed as possible. Thank you!
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