What are the 3 ways that magma can form

Answers

Answer 1
Answer: Heat Transfer , Decompression Melting or Flux Melting
Answer 2
Answer: The three ways that magma can be formed are through heat transfer, decompression melting and flux melting.

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What is one factor that helps keep the planets and other solar system objects in orbit around the sun? A.nuclear fusion in the sunB.the great distance between the sun and the planetsC.force of gravity the galaxy exerts on all objects in itD.the gravitational force between the sun and each object in the solar system
A car is stopped at a red light. When the light turns green, the car startsaccelerating again. In the process, a cup of coffee sitting in a cup-holder spillsout onto the rear seats. Why does this happen?
If you answer i’ll mark you as brainliest
Make the following prefix conversions. 2 km = cm

What do you think would happen if a lamp close to the sensor was left turned on overnight?

Answers

The sensor would go off
They would turn off automatically to save the battery. Hope it helped!

Neutrons have a
charge.
Answer here

Answers

Answer:

No

Explanation:

Neutrons do not have a charge. Neutrons are neutral.

Timmy placed a horseshoe magnet on his desk. He then sprinkled some iron filings around the magnet. In the images below, the poles of the horseshoe magnet are shown in white. Which of the following images best shows how the iron filings arranged themselves?

Answers

Answer:

The 3rd image

Explanation:

A magnet has 2 poles, north and south. Magnetic fields originate from the north pole and the move to the south pole.

They are concentrated at the poles where they are strongest.

The best  image that demonstrates the arrangement of the magnetic fields is the 3rd image.

Answer:

The 3rd image

A laboratory technician was examing a blood sample from a patient.He found a rare parasite that would cause the nausea and vomiting that the patient was experience which career pathway is being describe ?

Answers

Answer: Diagnostic

Explanation: For sure!

In what way might a chicken egg be a good model for a human head in a bicycle helmet design experiment ? How might a chicken egg not be a good model for a human head

Answers

Simulationinvolves an experimentation procedure which is performed in other to build a tentative model before being replicated in the real world. Hence, an egg is similar in terms of shape but differs in terms of size and strength

Testing the strength of an helmet using a real human head to could be deadly, hence similar objects are used to build a safe helmet before being tested on humans.

Model to be chosen would have similar characteristics with the real object. Interms of shape, an egg could be used to model the shape of the human head as they are somewhat similar in that aspect.

However, when it comes to characteristics such as size, hardness or thickness, an egg does not meet these properties when compared with the human head.

Learn more : brainly.com/question/13570998

Explanation: One way a chicken egg could be a good model for a human head in a bicycle helmet design experiment is that the egg has similarities to a human head in a helmet.

One way it's a bad example is that the chicken egg does not have the same thickness of human skulls or a bicycle helmet. It is just to fragile to have accurate results.

I hope this helped you!!

1. What could be the energy of a flying aeroplane?

2. Is work the same as power?

Answers

Explanation:

The total energy of an aircraft flying in the atmosphere can be calculated using equation 1. [2]

E = ½ m v2 + mgh

A Boeing 737-300 has a maximum takeoff weight of 5.65 × 104 kg, a cruise altitude of h = 10,195 m, and cruise speed of 221 m/sec. Inserting these numbers into the above equation, we obtain 7.03 GJ for the energy at cruise conditions. [3] However, the engines mounted onto the wings of the plane are required to provide additional energy per time, power, in order to keep the aircraft flying at a constant altitude and speed

Work is the energy needed to apply a force to move an object a particular distance, where force is parallel to the displacement. Power is the rate at which that work is done.