**100 POINTS**

Suppose you have a balenced stick with 3 weights on one side and only 1 weight on the other side.What needs to happen on the side with less weight for the objects to be balanced?

A.Nothing.The objects cannot be balanced

B.Move the 1 weight closer to the center

C.Set the 1 weight 3 times the distance from the center as the weights on the other side

D.Set the 1 weight 6 times the distance from the center as the weights on the other side

Answers

Answer 1

Answer:

B

Explanation:


Related Questions

What stresses can you experience in nursing

Answers

Answer:

Yes, Nurses are experience a stress in a higher rate at workplace.

Explanation:

We know that,

Stress in nursing :

According to association of american holistic nurses,

Nurses are experience a stress in a higher rate at workplace.

These stress are,

Physical demand

Management problems

lack of staff

Increment of number of patients

Face with death,

Fighting to infection as highly stressful factors in the workplace

Hence, Yes, Nurses are experience a stress in a higher rate at workplace.

Explain why wine glasses with long stems have broad base​

Answers

Answer:

The best glasses have a wider bowl than rim to allow for proper swirling. The swirl releases volatile aroma compounds and creates a vortex in the center of the glass towards which these compounds are drawn

Explanation:\\\

How much energy is needed to melt 5 g of ice? The specific latent heat of melting for water is 334000 J/kg.

Answers

Answer:

The needed energy to melt of ice is 1670 J.

Explanation:

Given that,

Mass of ice = 5 g

Specific latent heat = 334000 J/kg

We need to calculate the energy

Using formula of energy

[tex]Q=mL[/tex]

Where, m = mass

L = latent heat

Put the value into the formula

[tex]Q=5\times10^{-3}\times334000[/tex]

[tex]Q=1670\ J[/tex]

Hence, The needed energy to melt of ice is 1670 J.

It will be easier to lift a load in wheel Barrow if the load is moved towards the wheel. Give reason ​

Answers

Answer:

yes,  majority of the weight will be supported by the front wheel and not by you.

Explanation:

A student is standing in an elevator that travels from the first floor to the thenth floor of a building.The student exerts the greatest force on the floor of the elevator when the elevator is

Answers

Answer:

accelerating upward as it leaves the first floor.

Explanation:

When a person moves up in the elevator, the person's apparent weight is less then the actual weight. The person feels less weight than his or her actual weight. But just before the elevator starts moving the apparent weight of the person is equal to the normal or actual weight of the person before the movement. And after moving up in the elevator, the apparent weight is less than the actual weight, as one is moving against the force of gravity.

So in the context, the student exerts greatest force on the 1st floor as the elevator is accelerating upward when it leaves the first floor.

The velocity of a vehicle is typically expressed relative to which of the following?


Answers

The question is incomplete, however, The velocity of a vehicle is typically expressed relative to ground.

velocity is the measurement of a body's "pace of change of displacement in relation to time" when the body is traveling along a straight route.It is common knowledge that the word "linear" refers to something that is straight; therefore, when the body moves in a straight path, it is said to be linear velocity .Alternatively, velocity is the distance traveled by a body traveling in a specified direction during a predetermined period of time. Thus, the fundamental idea of linear velocity is provided by the union of these two quantities.Because it always has a direction velocity is a vector.

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According to O*NET, what is the most common level of education held by Emergency Medical Technicians?

post-secondary certificate
associate degree
some college, no degree
bachelor’s degree

The answer is post-secondary certificate, I found that out because I got the answer wrong on edg 2020.

Answers

Answer:

post secondary certificate.

Explanation:

Answer:

post secondary certificate sorry that you got it wrong

Explanation:

pleease answer this right ill give you 50 points

Answers

Answer:c a b I think I might be wrong but I’m pretty sure that’s it

Explanation:

An astronaut decides to perform an experiment to monitor how much weight he loses during his stay on the International Space Station. He weighs himself prior to takeoff, daily while on the space station, and again after returning to Earth.

Explain the following for 2 points each:

Identify what data from the weights he recorded should be considered in his experiment
For any weigh-ins that should not be used in his experiment, explain your reasoning
Explain the relationship between mass, weight, and gravity

Answers

Answer:

The first one is: His weight on the Earth before take-off and the weight after take-off back on Earth once he gets back should be recorded as his Independent variable and his dependent variable.

The second one is: If he gained the weight back that he had lost while on the trip then you should disregard them unless that was the weight he was when he weighed himself after he got back.

The Third one is: The mass of an object is the amount of matter it contains, regardless of its volume or any forces acting on it. … Gravity is a force that attracts objects toward the Earth. The weight of the object is defined as the force caused by gravity on a mass.

Explanation:

I took  the quiz earlier. Hope this Helps you.

Mark, a 73 kg physics student, rides a rollercoaster. At the bottom of a steep dive he experienced a net force of 1600 N. What was his acceleration at that point? Show your work.

Answers

Answer:

21.9m/s²

Explanation:

Given parameters:

Mass of the physics student  = 73kg

Net force  = 1600N

Unknown:

The acceleration at this point  = ?

Solution:

To solve this problem, we apply a knowledge of Newton's second law of motion which is mathematically expressed as;

        F  = m a

F is the friend

m is the mass

a is the acceleration

          1600  = 73 x a

              a  = 21.9m/s²

When does a car show positive acceleration?

Answers

Answer:

When it is accelerating or gaining velocity.

Explanation:

A car show positive acceleration when it is accelerating or gaining velocity. It would show negative acceleration if it was de-accelerating, slowing down or coming to a stop.

Answer:

When the velocity is increasing in the positive direction

Explanation:

You want to go swimming, but there is no lifeguard at the beach right now. You are not a good swimmer. The safest thing to do in this situation is to

swim only where you are able to stand

swim only with a lifeguard present

swim with a flotation device

swim with a friend in deep water​

Answers

Answer:

swim with flotation device

Explanation:

A bicyclist is traveling at +25 m/s when he begins to decelerate at -4 m/s2. How fast is he traveling after 5 seconds?

Answers

Answer:

The bicyclist goes at 5 m/s

Explanation:

Motion With Constant Acceleration

It's a type of motion in which the velocity of an object changes uniformly in time.

The equation that rules the change of velocities is:

[tex]v_f=v_o+at[/tex]

Where:

a   = acceleration

vo = initial speed

vf  = final speed

t    = time

It's given a bicyclist is traveling at v0=+25 m/s and decelerates at [tex]a=-4\ m/s^2[/tex]. We are required to calculate the speed after t=5 seconds.

Applying the formula:

[tex]v_f=25+(-4)*5[/tex]

[tex]v_f=25-20=5[/tex]

[tex]v_f=5\ m/s[/tex]

The bicyclist goes at 5 m/s

Differences between fundamental and derived quantities​

Answers

Answer:            Below...

Explanation:

Fundamental Quantities: based and defined by the process of measurement... some examples are length, mass, time

Derived Quantities:          can be defined through the fundamental quantities... some examples are velocity, volume, pressure

EX:  volume (derived q.) can be measured by mass (fundem. q.)

The passing of a wave through a material
A. Absorption
B.transmission
C.reflection

Answers

Answer:

B: transmission

Explanation: Transmission of waves occurs when waves pass through a given point or medium. Sound waves are transmitted through solids, liquids, and gases therefore the answer is the transmission

Can mechanical waves travel in a vacuum?
O yes
O no

Answers

No mechanical waves cannot travel in a vacuum

That is, mechanical waves cannot travel through a vacuum.

if the car ha a mass of 1000 kilograms, what is its momentum (v=35m/s)

Answers

Answer:

The momentum of the car is 35,000 kg.m/s

Explanation:

Momentum

Momentum is often defined as mass in motion.

Since all objects have mass, if it's moving, then it has momentum. It can be calculated as the product of the mass by the velocity of the object:

[tex]\vec p = m\vec v[/tex]

If only magnitudes are considered:

p = mv

The car has a mass of m=1,000 kg and travels at v=35 m/s. Calculating its momentum:

p = 1,000 kg * 35 m/s

p = 35,000 kg.m/s

The momentum of the car is 35,000 kg.m/s

The momentum of the car is 35000 kgm/s.

Momentum

Linear momentum, translational momentum, or simply momentum is the product of the mass and velocity of an object. It is a vector quantity, possessing a magnitude and a direction.

If m is the mass and v is the velocity of an object, then the object's momentum p is given below.

[tex]p = mv[/tex]

Given that the mass of the car is m=1,000 kg and travels at v=35 m/s. The momentum is given below.

[tex]p = 1000 \times 35[/tex]

[tex]p = 35000 \;\rm kg m/s[/tex]

Hence we can conclude that the momentum of the car is 35000 kgm/s.

To know more about the momentum, follow the link given below.

https://brainly.com/question/4956182.

A lift motor transfers 24 000J of energy in 1 minute travelling between floors. Calculate the power of the motor.

Answers

Answer:

400W

Solution :

power (w) = work done (J) ÷ time(s)

x= 24000J ÷ 60s = 400W

A fat person weighing 80 Kg falls on a concrete floor from 2m. If whole of the mechanical energy is converted into heat energy, then heat produced in SI units will be nearly

Answers

Answer:

The heat produced is 1568 J

Explanation:

The given parameters are;

The mass of the person, m = 80 kg

The height from which the person falls, h = 2 m

Mechanical Energy, ME = Potential Energy, PE + Kinetic Energy, KE

At the height, from where the person falls, the initial velocity of the person = 0 m/s

Therefore;

The initial kinetic energy, K.E. = 1/2·m·v² = 1/2 × 80 kg × (0 m/s)² = 0 J

From which we have;

The Mechanical Energy, M.E. = The initial Potential Energy, P.E. + 0 J

∴ The Mechanical Energy, M.E. = The initial Potential Energy, P.E.

The initial Potential Energy, P.E. = m·g·h

Where;

m = The mass of the person

g = The acceleration due to gravity ≈ 9.8 m/s²

∴ The initial Potential Energy, P.E. = 80 kg × 9.8 m/s² × 2 m = 1568 J

The Mechanical Energy, M.E. = The initial Potential Energy, P.E. = 1568 J

The whole mechanical energy is converted into heat energy, therefore, we have;

The Mechanical Energy, M.E. = The heat energy = 1568 J

The heat produced = The heat energy = 1568 J.

A jet takes off from Florida and flies 100 miles north and then 400 miles west. Determine the total distance travelled by the jet.

Answers

Answer:

90m

Explanation:

Distance is not a vector but a scalar quantity. depicted by a quantity only.

hence:

Distance is equal to 30+40+20 = 90 m

The top one is right

Kepler’s third law of planetary motion states that the square of a planet's orbital period is proportional to the cube of the average distance between the planet and the sun.


Please select the best answer from the choices provided

T
F

Answers

Answer:

Based on the options given, the most likely answer to this query is The square of the orbital periods of the planets are directly proportional to the cubes of their average distances from the Sun.  

Explanation:

Thank you for your question. Please don't hesitate to ask in Brainly your queries.

For Valentine’s Day, Sally received a helium-filled balloon at a party. On returning home she accidentally left the balloon in the car. Later she went to get the balloon and found it was partially deflated. After being in the house for an hour she noticed it was fully inflated again. Explain why this happened.

Answers

Answer:

If the temperature of the air in the balloon is less than the temperature of the air surrounding the balloon then the balloon will appear slightly deflated because of the difference in temperature.

As the temperature of the air in the balloon reaches the surrounding air temperature, then the balloon will appear to be fully inflated because the temperature of the air in the balloon is the same as the surrounding air temperature.

What do these two changes have in common? making paper from wood
photosynthesis
Select all that apply.
Both are chemical changes.
Both are changes of state.
Both conserve mass.
Both are caused by heating.​

Answers

Answer:

Both are chemical change as the new product is formed with new characteristics and can't be brought back to previous form.

How does surface area affect the amount of air resistance an object experiences?

Answers

The greater the cross-sectional area of an object, the greater the amount of air resistance it encounters since it collides with more air molecules. ... It will have to accelerate for a longer period of time before there is enough upward air resistance to balance the downward force of gravity.

How is temperature related to the motions of molecules?

Answers

Answer:

As the temperature increases, the kinetic energy of the molecules of the liquid increases.

Explanation:

In every population there is variation. It is important that this variation.

Answers

Answer:

Genetic variation is an important force in evolution as it allows natural selection to increase or decrease frequency of alleles already in the population.

rate the ans plz.

А
ray of light is incident on the surface of water at 45, and it gets refracted
inside water at an angle of 32. The absolute refractive index of water is​

Answers

Explanation:

Using Snell's Law, we have 1sin45° = nsin32°.

=> n = sin45° / sin32° = 1.33.

The refractive index of water is 1.33.

An object is dropped from rest from a 70.6 m tower. Air resistance is negligible. After 0.32 seconds, what is magnitude and direction of its acceleration?

Answers

Answer:

1,378.9ms²

Explanation:

Given the following

Distance S = 70.6m

Time t = 0.32secs

Initial velocity = 0m/s

Required

Acceleration

Using the equation of motion

S = ut+1/2at²

Substitute

70.6 = 0+1/2a(0.32)²

70.6 = 0.0512a

a = 70.6/0.0512

a = 1,378.9

Hence the acceleration is 1,378.9ms²

an aircraft is flying at height of 3400m above the ground.if the angle subtended at a ground observation point by the aircraft positions 10s apart is 30degree. what is the speed of the aircraft?

Answers

Answer: 588.9 m/s

Explanation:

Given that :

θ = 30°

Height, h = 3400m

Time, t = 10 seconds

From trigonometry ;

Tanθ = opposite / hypotenus

Tan 30 = 3400 / x

x tan 30 = 3400

0.5773502x = 3400

x = 3400 / 0.5773502

x = 5888.9727

Recall ;

Speed = Distance / time

Speed = 5888.9727 / 10

Speed = 588.897 m/s

Speed = 588.9 m/s

Suppose a car is moving in a straight line and steadily increases its speed. It moves from 35 km/h to 40 km/h the first second and from 40 km/h to 45 km/h the next second. What is the car's acceleration?​
a) 35 km/h/s
b) 40 km/h/s
c) 10 km/h/s
d) 5 km/h/s

Answers

Answer:

c

Explanation:

the first 35 to 40 acceleration will be 5 same as 40 to 45 ,

5+5=10

Car is moving in a straight line and steadily increases its speed. Then its acceleration in the first is  35 to 40 acceleration will be 5 same as 40 to 45 ,then 5+5=10.

What is speed ?

"Speed is the distance traveled per unit of time. It is how fast an object is moving. Speed is the scalar quantity that is the magnitude of the velocity vector. It doesn't have a direction."

What is acceleration ?

"Acceleration is the rate of change of the velocity of an object with respect to time. Accelerations are vector quantities. The orientation of an object's acceleration is given by the orientation of the net force acting on that object. "

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