What bias conditions must be present for the normal operation of a transistor amplifier? A. The emitter-base junction must be forward biased, and the collector-base junction must be reverse biased.
B. Both junctions must be forward biased.
C. The emitter-base junction must be reverse biased, and the collector-base junction must be forward biased.
D. Both junctions must be reverse biased.

Answers

Answer 1
Answer:

The condition that must be present for the normal operation of a transistor amplifier is the emitter-base junction must be reverse biased, and the collector-base junction must be forward biased. The answer is letter C. It should not drive the transistor either into saturation or into cu – off, resulting in one will deem transistors to be inefficient


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Aspace walking astronaut has become detached from her spaceship! She’s floating in space with her handy tool belt attached to her waist, thinking about how she might get back to the ship, which she can see 50m from her current location. How can she get back to the ship? Use the language from the laws of motion in your answer.What can she do with the tool belt?

What will that action cause her body to do? Why?

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Write a paragraph which incorporates all of the above information.

Answers

Answer:

In order to get back to the ship, the astronaut must throw the belt in the opposite direction the spaceship.

From Newton's third law of motion:

For every action, there is equal and opposite reaction.

In order to throw the belt away, astronaut would apply some force which cause same amount of force acting on her body in the opposite direction which would take her towards the spaceship.

When a compression wave travel through a median, which way does matter in the median move?

Answers

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How much heat energy must be added to 52kg Of water at 68°F to raise the temperature to 212°F? The specific heat capacity for water is 4.186×10 to the third power J/kg times degrees Celsius

Answers

Answer:

The amount of energy added to rise the temperature Q = 17413.76 KJ

Explanation:

Mass of water = 52 kg

Initial temperature T_(1) = 68 °F = 20° c

Final temperature T_(2) = 212 °F = 100° c

Specific heat of water  C = 4.186 (KJ)/(kg c)

Now heat transfer Q = m × C × ( T_(2)  - T_(1) )

⇒ Q = 52 × 4.186 × ( 100 - 20 )

⇒ Q = 17413.76 KJ

This is the amount of energy added to rise the temperature.

Plizz help meeee thanks and have a wonderful day ​

Answers

Answer:

This is a Upside down Glass of Water Experiment

Explanation:

Explanation:

if I interpret the graphic correctly, then there is a basin fully filled with water on the left, then a piece of paper of a piece of glass, where the paper is in contract with the water on the left, and some water is delivered to the right.

then i suspect this shows the capillary effect of very narrow channels of water. like in the very tiny spaces between the fibers of the paper. as long as the paper is in contact with the water on the left, and the level of water is there higher than on the right, the surface tension of water kind of propels itself further along these narrow channels in the paper and supported by gravity and air pressure it drops even into the other side.

What kinds of bonds are possible between carbon and oxygen?

Answers

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The force of repulsion between two like-charged particles will increase ifA) the distance between the charged particles is increased.

B) the distance between the charged particles is decreased.

C) the magnitude of the charge on both the particles is decreased.

D) the magnitude of the charge on one of the particles is decreased.

Answers

The force of repulsion between two like-charged particles will increase if the distance between the charged particles is decreased.

What is coulomb's law?

According to Coulomb's law: The magnitude of each of the electric forces with which two point-at-rest charges interact is directly proportional to the product of the magnitude of both charges

And inversely proportional to the square of the distance that separates them and has the direction of the line that joins them.

The formula will be given as:

F=(kq_1q_2)/(r^2)

We can see that the force is inversely proportional to the distance of the two charges.

To know more about coulomb's law follow

brainly.com/question/66110

Answer:

B). the distance between the charged particles is decreased.

Explanation: