Technician A says that narrow valve seats exert a higher force on the seat area. Technician B says that if intake and exhaust valve springs are of equal pressure, then the larger valve must have a narrower seat in order to have the same seating pressure as the smaller valve. Who is right?
a. Technician A only
b. Technician B only
c. Both A and B
d. Neither A nor B

Answers

Answer 1

Explanation:

I think both are correct.

Narrow seats have less area, therefore, given the same pressure the narrow seats will have greater force.

If the springs are of equal pressure, the larger valve must have narrower seats such that the seat AREA is the same between the two valves. If the area is the same and the pressure is the same, the force will be the same.


Related Questions

What musical form do you hear in Candle in the Wind?

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I’m not understanding your queen

what is the relationship of waste management and bioremediation?

Answers

Answer:

In the simplest terms, bioremediation is a waste management process using live organisms to neutralize or remove harmful pollutants from contaminated areas. Bioremediation is an environmental science that amplifies natural biological actions to remedy or remediate polluted groundwater and contaminated soil.

Explanation:

In the simplest terms, bioremediation is a waste management process using live organisms to neutralize or remove harmful pollutants from contaminated areas. Bioremediation is an environmental science that amplifies natural biological actions to remedy or remediate polluted groundwater and contaminated soil.

applications of fleming hand rule

Answers

Answer:

Fleming hand rule represents the direction of current in a generator's windings and induced current as a conductor is attached to a circuit such that it moves in a magnetic field.

Explanation:

Fleming hand rule represents the direction of current in a generator's windings and induced current as a conductor is attached to a circuit such that it moves in a magnetic field.

Fleming hand rule is used in the case of electric motors and electric generators.

Fleming hand rule is used to determine the following:

1. Direction of torque

2. Angular velocity

3. Angular acceleration

HURRY :)) In low light, it's _____ to see details, colors, and distant objects. FYI it's ed drivers!!!! A. Easier B. Harder C. Just as easy D. Impossible

Answers

Answer:

harder

Explanation:

Answer:

light

Explanation:

Technician A says that in a circuit that has 3 Ohms of resistance and operates on 12 volts, the amperage must be 4 amps. Technician B says that in a circuit has 3 Ohms of resistance and operates on 24 volts, the amperage must be 12 amps. Who is correct?

Answers

The technician that gave the correct statement is Technician A  

Determination of the current in the circuit for technician A

From the question given above, the following data were obtained:

Resistance (R) = 3 OhmsVoltage (V) = 12 VCurrent (I) =?

V = IR

12 = I × 3

Divide both side by 3

I = 12 / 3

I = 4 A

Thus, technician A is correct.

Determination of the current in the circuit for technician B

From the question given above, the following data were obtained:

Resistance (R) = 3 OhmsVoltage (V) = 24 VCurrent (I) =?

V = IR

24 = I × 3

Divide both side by 3

I = 24 / 3

I = 8 A

Thus, technician B is wrong as the current in the circuit is 8 A and not 12 A.

From the calculations made above, we can conclude that technician A is correct.

Learn more about ohm's law:

https://brainly.com/question/104895

During a storm, gage station A was inoperative but the surrounding stations, B, C, and D, recorded rainfall of 5.2, 4.5, and 6.1 in., respectively. The average annual precipitation for stations A, B, C, and D are 48, 53, 59, and 67 in., respectively. Estimate the storm precipitation for station A.

Answers

Answer:

4.247 in

Explanation:

Precipitation at A is P_a

similarly at P_b= 5.2 in, P_c= 4.5 in and P_d= 6.1 in

Normal annual rainfall at station A, B, C, D are

N_a = 48 in, N_b= 53, N_c= 59 in and N_d= 67 in

From the formula we have

P_a/N_a = 1/3( P_b/N_b+P_c/N_c+P_d/N_d)

⇒ P_a = 48/3(5.2/53+4.5/59+6.1/67)

P_a= 16×0.2654 = 4.247 in

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