Special ways that animals' bodies work to help them survive in whatev
condition they're in, such as camels in the desert conserving water and
able to go days without drinking is what type of adaptation? *

Answers

Answer 1

Answer:

Physiological – special ways that animals' bodies work to help them survive in whatever condition they're in, such as camels in the desert conserving water and being able to go days without drinking.

Explanation:


Related Questions

Will anyone please help me solve this physics Problem?​

Answers

Answer:

I. Clockwise moment = 150 Nm

II. Anticlockwise moment = 400 Nm

III. 200 N

III. The anticlockwise moment.

Explanation:

From the question given above, we can obtain the answers to the questions as follow:

I. Determination of the clockwise moment.

Distance (d) = 1.5 m

Force (F) = 100 N

Clockwise Moment =?

Moment = Force × distance.

Clockwise moment = 100 × 1.5

Clockwise moment = 150 Nm

II. Determination of the anticlockwise moment.

Distance (d) = 2 m

Force (F) = 200 N

Anticlockwise Moment =?

Moment = Force × distance.

Anticlockwise moment = 200 × 2

Anticlockwise moment = 400 Nm

III. Determination of who will turn the sea saw.

Clockwise moment = 150 Nm

Anticlockwise moment = 400 Nm

Since the anticlockwise moment is greater than the clockwise moment, it therefore means that the anticlockwise moment will turn the sea saw.

Help plz!! I’ll give brainlist!! I need it fast plz

Answers

Answer:

1.A

2.E

3.C

4.i think A

Explanation:

1. A
2. E
3. B
4. D

the horizontal is on the left.
vertical is on the right.

for number one it says where was the speed zero? look at the line, A is at the bottom and horizontal is there.
same applies to the vertical which you get the answer E

- A 9,300 kg. railroad car traveling at a velocity of 15m/s strikes a second boxcar
at rest. If the two cars stick together and move off with a velocity of 6m/s, what is the mass
of the second car?

Answers

Answer:

13950kg

Explanation:

If we make the system both railroad cars, we know that the momentum of the whole system doesn't change because the forces are internal.

Let a be the mass of the second car.

The original momentum is 9300*15 kg*m/s+ a*0 kg*m/s = 139500 kg*m/s

After sticking together, the momentum is (9300+a)kg*6m/s, which should be equal to 139500 kg*m/s

Therefore (9300+a)*6 = 139500

9300+a = 23250

a = 13950 kg

Carmen is helping load furniture and boxes onto a moving truck. She picks up boxes of her things, places them on a cart, and pushes the cart to the moving van. Which term best describes the type of force Carmen is using? * contact speed gravity noncontact

Answers

Answer:

contact

Explanation:

A contact force is defined as a force which requires some contact to occur. When we apply force that is in contact with the objects are called as contact forces.

In the context, Carmen is loading furniture and boxes on a moving van by picking up by picking up the boxes or furniture on a cart and pushing it onto the van. Carmen uses contact forces to lift the boxes and furniture onto the van.

3. Electrons are the only part of an atom that can be transferred between materials. True or
False?

Answers

Answer:

True

Explanation:

Electrons can be transferred between materials as in chemical reactions solid substances lose electrons while other elements gain electrons to balance the electrons in reaction.It occurs by conduction,polarization and friction.

When you walk into a dark room and turn the light on, do the electrons travel all the way from the switch to the light?

Answers

Answer:

Yes

Explanation:

This is because for the light to come on, electric current has to flow through it which is due to electron motion. As the electrons move through the light, it turns electrical energy to light energy, so the light comes on.

a boy pulls his toy on a smooth horizontal surface with a rope inclined at 60° to the horizontal if the effective Force pulling the toy along the horizontal surface is 5-newton calculate the tension in the rope

Answers

Answer:

The tension in the rope is 10 N

Explanation:

The Force Vector

Like all vectors, the force has a magnitude and direction. Vectors can be decomposed into two perpendicular components on both axes.

The tension in the rope (F) can be calculated by using vector decomposition as follows.

The figure included below shows a force F which horizontal component is known to have a value of Fx= 5 Nw. The angle formed by the force and its horizontal component is 60°.

We can use the trigonometric ratio called the cosine to find the magnitude of F as follows:

[tex]\displaystyle \cos 60^\circ = \frac{5}{F}[/tex]

Solving for F:

[tex]\displaystyle F = \frac{5}{\cos 60^\circ}[/tex]

[tex]\displaystyle F = \frac{5}{\frac{1}{2}}[/tex]

Thus, F = 10 N

The tension in the rope is 10 N

A rocket travels 200,000 meters in a time of 4.40 seconds . what of the speed of the rocket ?

Answers

Answer:

the speed of the rocket is 45454.5455

Explanation: Because the speed formula is basically just distance/ divided by time all you need to do is divide 200,000 meters by 4.40 seconds. And then thus you will get the speed.

Answer:

45454.55 m/s

Explanation:

[tex]S=\frac{d}{t}[/tex]

= [tex]\\S=\frac{200000}{4.40}[/tex]

=45454.55 m/s

Two positive charges 12×10^-6C and 8×10^-6 are 10cm apart. Find the workdone in bringing them 4cm together

Answers

Answer:

W = 5.76 J

Explanation:

Given that,

Charge 1, [tex]q_1=12\times 10^{-6}\ C[/tex]

Charge 2, [tex]q_2=8\times 10^{-6}\ C[/tex]

The distance between charges is 10 cm.

Initial distance = 10 cm = 0.1 m

Final distance = 10 cm - 4 cm = 6 cm = 0.06 m

We need to find the work done in bringing the 4 cm together.

We know that,

Work done = change in kinetic energy

[tex]W=kq_1q_2(\dfrac{1}{r_2}-\dfrac{1}{r_1})\\\\\text{Put all the values}\\\\W=9\times 10^9\times 12\times 10^{-6}\times 8\times 10^{-6}(\dfrac{1}{0.06}-\dfrac{1}{0.1})\\\\W=5.76\ J[/tex]

So, the required work done is 5.76 J.

A element source has a decayed constant of 13.6pico per second. Calculate the half life of this element. ​

Answers

Answer:

5.1 x 10¹⁰s

Explanation:

Given parameters:

Decay constant  = 13.6 x 10⁻¹²/s

Unknown:

Half life of the element  = ?

Solution:

From the decay constant, we can find the half-life of this radioactive element.

  Half-life  = [tex]\frac{0.693}{decay constant}[/tex]  

     Half-life  = [tex]\frac{0.693}{13.6 x 10^{-12} }[/tex]   = 5.1 x 10¹⁰s

3. What is a manometer used to determine?
A the difference between two densities
B the difference between two forces
C the difference between two heights
D the difference between two pressures​

Answers

Answer:

D the difference between two pressures​

Explanation:

A manometer is a device used to measure the difference between the pressure in a place. Manometer is solely used to determine gas pressure.

The device compares gas pressure to atmospheric pressure at any given point. It measures pressure against a fixed reference or with respect to a differential pressure in a place. The column of liquid is the medium it uses to measure the pressure differences. Pressure is the force exerted per unit area.

Which of the following best explains why the noble gases are less likely to chemically
bond with other elements?
A They are all non-metals. |
B They are all rare elements.
C They all have a full outer shell of electrons.
D They have the highest atomic number in the row.

Answers

Answer:

a

Explanation:

Tom skis at an average speed of 5 m/s. How many mins does it take for Tom to ski 4050 m.

Answers

It takes him 810 minutes to ski 4050m

Divide 4050 by 5 to get 810

Suppose that two objects attract each other with a gravitational force of 16 units. If the mass of both objects was doubled, and if the distance between the objects was doubled, then what would be the new force of attraction between the two objects?

Answers

Answer:

Distance, such that displacement over time is taken into account doesn't change regardless of the length in x meters or mass in kg So the force will remain constant given 16 units

The new force of attraction between the two objects will be remain the same.

What is the gravitational law?

The gravitational law states that the gravitation force is the ratio of the product of the masses and the square of the distance between them.

Let the masses be m and M and the distance between them is r. Then the force is given as,

F = GmM / r²

Suppose that two objects attract each other with a gravitational force of 16 units.

F = 16

GmM / r² = 16 units

If the mass of both objects was doubled, and if the distance between the objects was doubled. Then we have

F' = G(2m)*(2M) / (2r)²

F' = 4GmM / 4r²

F' = GmM / r²

F' = 16 units

The new force of attraction between the two objects will be remain the same.

Learn more about gravitational law:

https://brainly.com/question/12692219

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The value of acceleration due to gravity is less at the top of Mount Everest then that in the terai reason, why?​

Answers

Answer:

The value of acceleration due to gravity is greater in terai than in mountain. In terai region the radius of earth is less as it lies close to the centre of the earth. Thus, the value of g is more in terai region.

All sound waves need a(n) _______________________________________ to travel through. 4. _____________________ and ___________________ can be used to describe a sound wave.

Answers

Answer:

Material medium

compressions and rarefactions

Explanation:

A sound wave is an example of a mechanical wave. All mechanical waves require a material medium for propagation. The medium for the propagation of sound is air. This is the reason why, if you cover your mouth, it will be difficult for another person to hear whatever you are saying.

Sound is also a longitudinal wave. Longitudinal waves are described in terms of compressions and rarefactions. Compressions refer to areas where air molecules crowd together while rarefactions refer to areas where the air molecules spread out.

If a 2000 N force is used to raise a piano at a rate of 10 m/s2, what is the mass of the piano?

Answers

Answer:

To solve this problem we will apply the principle of conservation of energy for which we have that the potential energy on a body, is equivalent to the work done on it at the given point. Therefore we will have the following equality

At the same time we know that work is equivalent to the Force applied over a given distance, so,

The potential energy is equivalent to the product between mass, gravity and height. Recall that the product of mass and gravity is equivalent to weight (The same given in the statement)

Equating,

Then,

Replacing,

Therefore the force needed to lift the piano is 600N

Explanation:

HOPE THIS HELPS!!!



How many newtons is the force of gravity g , acting on an apple with mass m = 200 g?​

Answers

Answer:

Mass of the apple is 200g or 0.2 kg

Force acting on it will be,

Force= Mass× acceleration due to gravity

Force= 0.2×9.8 Newton= 1.96 Newton

Answer:

2 N

Explanation:

The question requires you to express the weight of the apple into Newton

1 kg = 10 N

200g = 200/1000 = 0.2 kg

1 kg = 10 N

0.2 kg = ?

0.2 * 10 = 2 N

Write a sentence on how these words are used in real life situations

1. Average Velocity
2. Instantaneous Velocity
3. Acceleration

Answers

Answer:

Explanation:

You can approach an expression for the instantaneous velocity at any point on the path by taking the limit as the time interval gets smaller and smaller. Such a limiting process is called a derivative and the instantaneous velocity can be defined as.#3

For the special case of straight line motion in the x direction, the average velocity takes the form: If the beginning and ending velocities for this motion are known, and the acceleration is constant, the average velocity can also be expressed as For this special case, these expressions give the same result. Example for non-constant acceleration#1

A 56 kg object is attached to a rope, which can be used to move the load vertically.

a. What is the tension force in the rope when the object moves upward at a constant velocity?

b. What is the tension force in the rope when the object accelerates downward at a constant

acceleration of 1.8 m/s2

c. What is the tension force in the rope when the object accelerates upward at a constant

acceleration of 1.8 m/s2

Answers

Answer:

a) T=549.36N Upwards

b) T=448.56N Upwards

c) T=650.16N Upwards

Explanation:

The very first thing we can do to solve this problem is to draw a free body diagram we can use to analyze the situation (see attached picture).

On the diagram we can see there are only two forces acting on the object: the tension of the rope and the weight of the object itself.

a)

Since the object is moving at a constant speed, this means that its acceleration will be zero. So we can do a sum of forces like this:

[tex]\sum F=0[/tex]

T-W=0

T=W

T=mg

[tex]T=(56kg)(9.81m/s^{2})[/tex]

T=549.36N upwards

b)

For part b, since the object is accelerating downwards, we wil say that it's acceleration is negative, so [tex]a=-1.8m/s^{2}[/tex]

so we can do a sum of forces again:

[tex]\sum F=ma[/tex]

so

T-W=ma

T=ma +W

T=ma+mg

T=m(a+g)

and now we substitute:

[tex]T=(56kg)(-1.8 m/s^{2}+9.81 m/s^{2})[/tex]

which yields:

T=448.56N upwards (in this particular case, the tension always goes upwards)

c)

Since the object is moving upwards, we can say that its acceleration will be positive, so [tex]a =1.8m/s^{2}[/tex]

we can take the solved equation we got on the previous part of the problem, so we get:

T=m(a+g)

[tex]T =(56kg)(1.8 m/s^{2}+9.81 m/s^{2})[/tex]

which yields:

T=650.16N upwards

The tension force in the rope when the object moves upward at a constant velocity is 548.8 N.

The tension force in the rope when the object accelerates downward at a constant acceleration is 448 N.

The tension force in the rope when the object accelerates upward at a constant acceleration is 649.6 N.

The given parameters:

Mass of the object, m = 56 kg

The tension force in the rope when the object moves upward at a constant velocity;

T = ma + mg

at constant velocity, a = 0

T = mg

T = 56(9.8)

T = 548.8 N

The tension force in the rope when the object accelerates downward at a constant acceleration of 1.8 m/s².

T = mg - ma

T = m(g - a)

T = 56(9.8 - 1.8)

T = 448 N

The tension force in the rope when the object accelerates upward at a constant acceleration of 1.8 m/s².

T = mg + ma

T = m(g + a)

T = 56(9.8 + 1.8)

T = 649.6 N

Learn more about reading of elevator scale here: https://brainly.com/question/2516315

Medium is water. The wavelength is 4.75 m and the frequency is 600 Hz. Calculate the speed of the wave.

Answers

Answer:

126.32m/s

Explanation:

The formula for calculating the speed of wave is expressed as:

Speed of wave = frequency/wavelength

Given

Wavelength = 4.75m

Frequency = 600Hz

Required

Speed of the wave

Substitute the given value into the formula

Speed = 600/4.75

Speed = 126.32m/s

Hence the speed of the wave is 126.32m/s

If you pluck a guitar string hard the sound waves it gives off will have __________ amplitudes.
small
large

Answers

Answer:

large

Explanation:

the harder you pluck the louder it gets

If you pluck the guitar string hard, the sound waves it gives off will have larger amplitudes

What will be the amplitudes of the waves?

We know that, for soundwaves, the amplitude is related to the intensity of the sound.

If you pluck the guitar string hard, you will notice that the intensity of the sound increases. So we can conclude that the amplitude of the soundwaves will be larger than if you plucked the guitar string softer.

Then the complete statement would be:

"The sound waves it gives off will have larger amplitudes."

If you want to learn more about waves:

https://brainly.com/question/14015797

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Pls help I think it's pretty easy
Electromagnetic waves transfer energy and are produced by _____.

Answers

the transfer of energy by electromagnetic waves is called electromagnetic radiation. ... This causes a vibrating electric field, which in turn creates a vibrating magnetic field.

Force=mass x acceleration which of newtons laws does this best describe

Answers

Second law! Good luck
Second law

What he said

Why doesn't the earth block out the light between the sun and the moon during a normal month

Answers

Answer:

Explanation:

If a missile is launched from the equator toward an object in the Northern Hemisphere, should it be aimed to the left, to the right, or directly at its target? Why?

Answers

Answer:

Must be aimed to the left

Explanation:

Coriolis effect deflects wind or any moving item which has no contact with earth and has substantial distance to cover and moving at a substantial altitude. Coriolis effect deflectd the object to the right in the northern hemisphere. Therefore, missile must be aimed to the left, to nullify the coriollis effect.

How much is the velocity of a body when it travels 600m in 5 minutes?( with the full process)​

Answers

Its average speed, pretending that it traveled at a constant speed, is

v = s / t

= 600 m

5 x 60 s

= 2 m/s

but to be a velocity it needs a direction as well as a speed.

( Sorry. Can’t find a division line to put between the 600 m and the 5 x 60 s )

Charlie graduated with a bachelor’s degree in construction management. As he aspires to work in his dad’s construction firm, which educational institute does Charlie need to enroll in for professional certifications in construction?

Charlie needs to enroll himself in the BLANK for various professional certifications, and a master’s degree in construction science from the best university.

Answers

Answer:

He needs to enroll himself in CMMA. This company help young students obtain a well future in Construction Science.

terms involved in s=ut+1/2at^2​

Answers

Explanation:

The terms involved in S = ut + 1/2at²

S = displacement

u = initial velocity

a = acceleration

t = time.

Hope it will help :)

Answer:

the distance traveled or displacement (s) of an object using its initial velocity (u), acceleration (a), and time (t) traveled.

An inclined plane is set at an angle of 29 degrees above horizontalWhat is the acceleration of a 420 g block of ice sliding down the inclined plane? Assume no friction

Answers

The net force parallel to the plane is

F = m g sin(29°) = m a

where

m = mass of the block

g = magnitude of the acceleration due to gravity, 9.8 m/s²

a = mag. of acceleration of the block

where we take the direction of the block's sliding down the plane to be positive. Then

a = g sin(29°) ≈ 4.8 m/s²

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