In your upper body there is a muscle called

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Answer 1
Answer: In your upper body there is a strong muscle called Pectoralis Major.Hope it helped you

Related Questions

I don't know what calculation to use, can someone help me?
Early in the history of geology, scientists debated two different views of how geologic processes work. These two ideas became known as uniformitarianism and catastrophism. Which of the following correctly describes the view of catastrophism?A.) Geologic changes only occur in sudden, devastating events.B.) Geologic changes only occur because of slow, gradual processes.C.) Geologic changes can be either sudden or gradual.D.) Geologic changes can quickly change Earth's structure.
In order to be neutral, an atom has to contain equal numbers of _______
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An engineer discovered that a TV set was receiving too much voltage to work properly.Which of the following circuit parts should the engineer add to make the TV set work properly?A.Switch 
B.Insulator 
C.Resistor 
D.Conductor

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The answer would be c. a resistor because resistors are made to drop the voltage

A cube is measure 1 cm on each side and has a mass of 2 grams. Will it float on water?

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Density = mass/volume
The density of water is 1g/cm^3

Density of the cube=2g/1cm^3
Density=2g/cm^3
Anything over the density of water will sink. The cube will not float.

Calculate the angular velocity of a clocks second hand, its minute hand, and its hour hand. State in Rad/s. What is its angular acceleration in each case?

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The angular velocity of a clocks second hand, its minute hand, and its hour hand are 0.1047rad/s, 1.745 × 10⁻³rad/s and 1.454 × 10⁻⁴rad/s respectively.

Time period for second hand; T = 60s

Time period for minute hand; T = 60m = 60 * 60s = 3600s

Time period for hour hand; T = 12hours = 12* 60 * 60s = 43200s

Now, we use the relation between angular speed and time period:

w = (2\pi )/(T)

Where ω is the angular velocity and T is the time period in seconds.

For Second hand

w = (2\pi )/(60s) = 0.1047rad/s

For Minute hand

w = (2\pi )/(3600s) = 1.745* 10^(-3)rad/s

For Hour hand

w = (2\pi )/(43200s) = 1.454* 10^(-4)rad/s

Therefore, the angular velocity of a clocks second hand, its minute hand, and its hour hand are 0.1047rad/s, 1.745 × 10⁻³rad/s and 1.454 × 10⁻⁴rad/s respectively.

Learn more: brainly.com/question/8711708

Second hand:

1 rev per minute = (2π radians/minute) x (1 min/60sec) = π/30 rad/sec

Minute hand:

1 rev per hour = (2π radians/hour) x (1 hr/3600 sec) = π/1800 rad/sec

Hour hand:

1 rev per 12 hours = (2π rad/12 hr) x (1 hr/3600 sec) = π/21,600 rad/sec

As long as the clock is in good working order, and the hands are turning steadily at their normal rate, there is no angular acceleration.

What h and n can friction produce

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well if this helps you I do not know what "h and n" is but I do know that

friction produces heat


The wavelength of the light is 0.63 micrometers. How much of this length stays in 1 centimeterHELP PLEASE

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11,066,669.
hope it help.

List 15 different energy sources

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Outlit
Solar pannels stuff like that if thats what your looking for