Marshall determines that a gas has a gage pressure of 276 kPa whats the absolute pressure of this gasA: 176 kPa
B: 156 kPa
C: 326 kPa
D: 376 kPa

Answers

Answer 1
Answer: The right answer for the question that is being asked and shown above is that: "B: 156 kPa ." Marshall determines that a gas has a gage pressure of 276 kPa whats the absolute pressure of this gas B: 156 kPa 
Answer 2
Answer: your answer is 376kpa hope this helps :) just toke the test :)
GUD LUCK!

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Which would be an example of biopsychology?                                                                 A.A psychiatrist prescribes medication for depression.                                                      B.A psychiatrist asks the patient how he deals with conflict.                                             C.A psychiatrist has the patient do a journal about his experiences.                                   D.A psychiatrist has the patient tell him about his childhood.

Answers

Answer:

Psychiatrist prescribes medication for depression.

Explanation:

took the question

Answer:

A psychiatrist prescribes medication for depression.

Which wave source can travel through the vacuum of space?

Answers

I suppose any 'source' of waves could travel through space.
But the only waves that could leave their source and travel
through space away from it are electromagnetic ones.

Answer:

ondas mecánicas,ondas electromagnética .

Explanation:

ondas mecánicas, como las ondas de agua de sonido, temblores del terremoto y, necesitan un medio material a través del cual viajar. Las ondas electromagnéticas, incluyendo rayos X, ondas de radio y luz visible, pueden viajar a través del vacío del espacio vacío. Estas ondas se mueven a la velocidad de la luz y consisten de vibrar campos eléctricos y magnéticos orientados en ángulos rectos entre sí.

A puppy is running with a speed of 11.2 m/s towards it owner when itgets distracted by a squirrel and stops running. If it halted its run in 2 s,
what is the puppy's acceleration?

Answers

Answer:

-5.6m/s²

Explanation:

Given parameters:

Initial speed  = 11.2m/s

Time of running  = 2s

Unknown:

Acceleration of the puppy  = ?

Solution:

Acceleration is the rate of change of velocity with time.

So;

   Acceleration  = (Final speed  - initial speed )/(time)  

final speed  = 0m/s

 Acceleration  = (0 - 11.2)/(2)    = -5.6m/s²

Final answer:

The puppy's acceleration is -5.6 m/s².

Explanation:

Acceleration is a measure of how quickly an object changes its speed. The formula for acceleration is a = Δv / Δt, where Δv is the change in velocity and Δt is the change in time. To find the puppy's acceleration, we can use the formula for acceleration:

acceleration = (final velocity - initial velocity) / time.

In this case, the initial velocity is 11.2 m/s and the final velocity is 0 m/s (since the puppy stops running). The time taken to stop is 2 s.

Substituting the values into the formula, we get:

acceleration = (0 m/s - 11.2 m/s) / 2 s.

Simplifying the equation gives us the acceleration of the puppy, which is -5.6 m/s².

Learn more about acceleration here:

brainly.com/question/11789833

#SPJ3

Two billion people jump up in the air at the same time with an average velocity of 7.0 m/sec. If the mass of an average person is 60 kilograms and the mass of Earth is 5.98 × 1024 kilograms:
a. What is the total momentum of the two billion people?
b. What is the effect of their action on Earth?

Answers

p=m x v =60 x 7.0= 420
total momentum = 420 x 2,000,000,000=dnt have a calculator
thier effect would shake the earth and kill some organism because they jump up at the same time and they wil probably land the same time .

Answer:

if jonah from david dobrik was there then that means they all broke thri the earth lol

Explanation:

Imagine a 10kg block moving with a velocity of 20m/s to the left. Calculate the kinetic energy of this block.

Answers

KE =1/2mv^2=0.5 * 10 * 20^2= 5*400=2000

The free-fall acceleration at the surface of planet 1 is 15 m/s2. The radius and the mass of planet 2 are twice those of planet 1. Part A What is g on planet 2

Answers

Answer:

3.75m/s²

Explanation:

g= GM/r²

For planet 1

g_(1)= GM/r²                   (i)

g_(1) = 15m/s²

for planet 2

radius= 2*r= 2r

g= GM/r

g_(2)= GM/(2r)²

g_(2)= GM/4r²

g_(2)=  GM/r² *1/4

from (i)

g_(2)=  g_(1) *1/4

g_(2) = 15/4

g_(2) = 3.75m/s²