Answer:
Explanation:
Ionic bonds are formed by transfer of electrons between metal and non metals. Electronic configuration of calcium: Calcium atom will lose two electron to gain noble gas configuration and form calcium cation with +2 charge.
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E. If you knew the pressure, volume, and temperature of the helium in the balloon, what equation would you use to determine its number of moles? (2 points)
F. Your friend's mom has a great new car. What type of device does it use to move? Describe how this device operates, in terms of the second law of thermodynamics. (3 points)
G. The heat is getting to your friend. You start to share your iced drink with her, but the ice has disappeared! What phase change did the ice cubes undergo? What happened to the ice's molecules during this phase change? If the drink continued to heat, what would be its next phase change? (3 points)
H. Did the entropy of the ice cubes increase or decrease over time? Explain your answer, including a definition of entropy. (3 points)
6.A. The following is a nuclear equation for which type of decay process? (1 point)
235 92 U --> 4 2 He + 231 90 Th
B. Describe this type of decay process. What are the other two types of decay? How are the types of decay different? (4 points)
C. What is the name for the length of time of a decay process? How can this be used to calculate the amount of a radioactive element, compared to its original amount? (4 points)
7.A. Describe Einstein's famous equation, E = mc2, using two well-known conservation laws. Give an example of when you would use this equation. (4 points)
B. Describe fission and fusion. Explain how Einstein's equation relates to the concepts of fission and fusion. (5 points)
8. Describe an alternative energy source that involves the earth. (2 points)
Answer:
Legs are the 2nd class lever.
Arms are the 3rd class lever.
Explanation:
A lever is an inflexible body fit for turning on a point on itself. There are three types of lever
1) 1st class lever: (pivot is in the center of load and effort)
In the human body are uncommon. One model is the joint between the head and the principal vertebra
2) 2nd class lever: (load is in the center of pivot and effort)
In the human body, the 2nd class lever is found in the lower leg when somebody remains on tiptoes.
3) 3rd class lever: (The load is far from the pivot than the effort.)
In the human body; one model can be delineated in the elbow joint
Explains whether boron or arsenic is the dopant most likely used in the semiconductor layer marked with plus, so this layer is the emitter of a PNP transistor, so it could include boron.
The simplest semiconductor materials are made up of atoms of a single chemical element with four valence electrons, that is, tetravalent atoms. Two atoms, tetravalent, widely used in semiconductor materials are germanium (Ge) and silicon (Si).
P-Type - In P-type doping, boron or gallium is the dopant. Gallium boron has only three electrons and each one is external. When combined" in the silicon lattice or form "holes" "gaps in the lattice and a silicon electron has nothing to bind to".
See more about semiconductors at brainly.com/question/15184439
Answer:
D) This layer is the emitter of a PNP transistor, so it could include boron.
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Explanation:
Magnetic forces act at a distance. The opposites attract and pull each other closer
Answer: The correct option is D.
Explanation:
Thermal energy is the internal energy of the object due to the motion of the particles.
The kinetic energy is due to the motion of the particles. If the system has kinetic energy then it will have thermal energy.
When the object's atoms move faster then the thermal energy increases.
Therefore, the correct answer is thermal energy.
The correct option for above statement is:
Gravity and Inertia
Explanation:
For instance, Gravity from our sun holds us at an essentially same range all the way around. It makes sure we don't sling off into the wisdom of our solar system. Inertia, keeps us in movement, if there were no inertia, our revolution would stop at a standstill. If we stayed, we would be sucked into the sun by its gravity.