Answer:
Rock breaking apart when it falls from a cliff
Rock breaking apart when it falls from a cliff is an example of physical weathering (option B)
What physical weathering?Physical weathering, also known as mechanical weathering, involves the physical breakdown of rock into smaller pieces without changing its chemical composition.
In this case, the force of gravity and the impact of the falling rock cause it to break into smaller fragments, which is a mechanical process and a common example of physical weathering. The other options involve chemical weathering processes.
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A student has a mass (including clothes and shoes) of 65.0 kg. She drinks a 12 oz. can of soda, with a nutritional energy content of 140 Cal. Assuming that the efficiency of her muscles is 20%, how high can she climb without losing weight?
Conversion: 1 Cal = 1,000 cal = 4,180 J
She can climb 0.92 m without losing weight.
Explanation:
Gravitational potential energy is the energy consisting of the product of mass, gravity and height.
1 cal = 4184 J
140 cal = 585760 J
Energy = 585760 J, m = 65.0 kg = 65000 g, Efficiency = 20 %
GPE = mgh
where m represents the mass
g represents the gravity,
h represents the height.
585760 = 65000 [tex]\times[/tex] 9.8 [tex]\times[/tex] h
h = 0.92 m.
Two forces whose resultant is 100N,are perpendicular to each other.if one of them makes an angle of 60° with the resultant, calculate it's magnitude
Calculate the absolute pressure of an ocean depth of 1200atm. Assuming the density of liquid is 1200kg/m^2amd that (pa=1.01×10^6pa N/m^2
Magnitude of the force = 50N
Explanation:
Let one force be X
And the second force be Y
Both the forces are perpendicular, so α = 90°
The resultant R of the two forces = 100N
Angle between resultant and 1 force, α = 60°
We know,
R² = X² + Y² + 2XYcos 90
100² = X² + Y²
If X makes an angle of Φ = 60°
Then, tan Ф = Y sin α / X + Y cos α
Putting the values we find,
tan 60 = Y/X
Y = √3X
Putting Y = √3X in equation 1 we get,
(X)² + (√3X)² = 100 X 100
4X² = 100 X 100
X² = 2500
X = 50N
Therefore, magnitude of the force = 50N
A cart being pulled with 30N through a 2 m hallway over two seconds. How does it have the greatest power exerted on it
Answer:
Power = 30 [watts]
Explanation:
Initia data:
F = force = 30[N]
d = displacement = 2 [m]
By definition we know that work is equal to the product of force by the distance displaced
Therefore:
W = F * d = 30 * 2
W = 60 [J]
And power is defined as the amount of work done in a given time interval
time = t = 2 [sec]
Power = W / t
Power = 60 / 2
Power = 30 [W]
A cat sees its his favorite human come in the door and runs toward him. the cat starts with a velocity of 4.94 m/s and slows to a velocity of 1.78 m/s in 1.25 seconds.
a) Calculate the cat's average acceleration.
b) Calculate the cats displacement.
Answer:
Average acceleration =-2.53m/s^2
Displacement s = 4.2m
Explanation:
Which statement is true about air pressure acting in an object
Answer:
According to your question although you didn't include the options, it is obvious that when air pressure is acting on an object ,there is just as much air pressure pushing up as there is pushing down on the object,thereby creating a balanced for the object.
A 10-newton box rests on a table. What is the net force on the box? A. 0 N B. 10 N C. more than 10 N D. between 0 N and 10 N
A. 0 N is the net force acting on the box
Explanation:
Newton's first law of motion gives an insight to this problem, if an object stays in its position of either motion or rest, it can only change its current of either motion or rest is by applying an external force on it. If an object is resting on a table, there is a normal force acting perpendicular to the object and at the same, there is the gravitational force acting on the object in the perpendicular direction opposite to the direction of the normal forceHence, these two forces cancel and the resultant force will be zero. so it is in rest and it moves only when the resultant force is non zero.The ability of atoms to attract electrons in chemical bonds is called
________.
A. swarming
B. ionization energy
C. electronegativity
D. electronic shielding
Electronegativity is the ability of atoms to attract electrons in chemical bonds. It is an important concept in predicting bond types and molecular properties.
Explanation:The ability of atoms to attract electrons in chemical bonds is called electronegativity. Electronegativity is a measure of an atom's tendency to attract a shared pair of electrons towards itself in a covalent bond. It is influenced by factors such as the number of protons in the nucleus and the distance between the nucleus and the outermost electrons.
For example, in a molecule of water (H2O), oxygen (O) has a higher electronegativity than hydrogen (H), resulting in a polar covalent bond where oxygen attracts the shared pair of electrons more strongly.
Electronegativity is an important concept in predicting the types of chemical bonds (such as ionic or covalent) and the polarity of molecules, which in turn influences their physical and chemical properties.
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Which of the following would best model the Doppler effect?
A. A toy boat moves through a small pool. The water waves around the boat appear to bunch together in front of the boat and spread further
apart behind the boat.
B. A strobe light flickers on and off in a room, causing people to appear to move more slowly.
C. A pencil is held loosely at one end and is moved up and down. This motion creates the illusion that the pencil is made of rubber.
D. A person on a moving train observes that a book is at rest, but a person observing the train from a stationary platform observes that the book
is in motion.
Answer:
A?
Explanation:
The best model which can follow the Doppler effect is a pencil which is held loosely at one end and is moved in the direction of up and down. This motion of the pencil creates the illusion that the pencil is made of rubber. Thus, the correct option is C.
What is Doppler effect?The Doppler effect is also called as the Doppler shift. This type of effect can be described through the changes in the frequency of any kind of the sound wave or the light wave which is produced through a moving source with respect to an observer.
Waves have been found to be emitted by an object which are traveling towards an observer when they get compressed and are prompting a higher frequency of wave as the source approaches the observer.
A model of the Doppler effect is a pencil which is held loosely at its one end and is moved in the up and down directions. This motion has been found to create the illusion which the pencil is made of rubber.
Therefore, the correct option is C.
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What type of heat transfer occurs in solids?
Answer: Conduction
Explanation:
The atoms in the solid move together and create heat
Answer:
conduction
Explanation:
It was right on my quiz please mark brainliest
Directions: Consider a 2-kg bowling ball sits on top of a building that is 40 meters tall. It falls to the ground. Think about the amounts of potential and kinetic energy the bowling ball has:
• as it sits on top of a building that is 40 meters tall.
• as it is half way through a fall off a building that is 40 meters tall and travelling 19.8 meters per second.
• as it is just about to hit the ground from a fall off a building that is 40 meters tall and travelling 28 meters per second.
---------------------------------------------------------------------------------------------------------------------------
4. What is the potential energy of the bowling ball as it sits on top of the building?
5. What is the potential energy of the ball as it is half way through the fall, 20 meters high?
4) Potential energy: 784 J
5) Potential energy: 392 J
Explanation:
4)
The potential energy of an object is the energy possessed by the object due to its position in the gravitational field. It is given by
[tex]PE=mgh[/tex]
where
m is the mass of the object
g is the acceleration of gravity
h is the height of the object from the ground
Here, for the ball sitting on top of the building, we have:
m = 2 kg (mass)
[tex]g=9.8 m/s^2[/tex] (acceleration of gravity)
h = 40 m (height of the builiding)
So, the potential energy is
[tex]PE=(2)(9.8)(40)=784 J[/tex]
5)
As the ball is half way through the fall, the height of the ball is
h = 20 m
The potential energy of the ball now is
[tex]PE = mgh[/tex]
where
m = 2 kg is the mass of the ball
[tex]g=9.8 m/s^2[/tex] is the acceleration of gravity
Therefore, the potential energy now is
[tex]PE=(2)(9.8)(20)=392 J[/tex]
And we see that the potential energy has halved: this is because part of the potential energy, during the fall, has been converted into kinetic energy, increasing the speed of the ball (which is in fact accelerating).
definition of motion?
Answer:
the action or process of moving or being moved
Explanation:
Answer:
Motion is simply the change of position of an object with time
Explanation:
How do you make an electromagnet
Answer:
The correct answer is D. wrapping an insulated wire around a metal with ferromagnetic properties and applying an electric current.
Explanation:
10,500 J of GPE, weight 539 N, how tall is the hill you are sitting on?
To calculate the height of the hill, use the formula h = GPE/Weight with the provided gravitational potential energy (10,500 J) and weight (539 N) of the object. The height equals the GPE divided by the weight, which, upon calculation, gives the height of the hill in meters.
The student is asking how to calculate the height of the hill, given the gravitational potential energy (GPE) and the weight of an object. In physics, the formula to calculate GPE is GPE = mgh, where m is the mass of the object, g is the acceleration due to gravity (approximately 9.8 m/s2 on Earth or 10 m/s2 for simplified calculations), and h is the height.
To find the height, one can rearrange the GPE formula to solve for h, which gives us h = GPE/(mg). The weight of an object is the force due to gravity acting on it, which can be calculated by multiplying the mass by the acceleration due to gravity (Weight = mg). Given that the weight (Weight) of the object is known, we can simplify the formula for height to h = GPE/Weight.
Using the information provided by the student, the GPE is 10,500 J, and the weight is 539 N. Substituting these values into our height formula gives us h = 10,500 J / 539 N, which results in an answer after calculation.
Let's calculate the height:
GPE = 10,500 J
Weight = 539 N
Height h = GPE / Weight = 10,500 J / 539 N
=19.48
Explain in detail what information can be learn about atoms of different elements by examining the periodic table . For the Maximum Points Earned, You Should Include the visible information on the periodic table as well as trends of the Atoms (size, energy level, valence electrons, etc)
Answer:
We know the information about atomic size, energy, electronic configuration etc. of atom from the periodic table.
Explanation:
Periodic table is the arrangement of elements that are arranged according to their properties and electronic configuration.In periodic table, on furthest right side of the periodic table, noble gases like He, Ne, Ar etc are arranged.The atomic number of element increases while moving from left towards right in the periodic table.The metallic character of element decreases as we proceed the table towards right.They readily accept electron to fill the valence shell hence becoming more metallic in character.The table below shows two types of electromagnetic waves and three random applications of electromagnetic waves.
Type of Wave Application of Waves
Microwaves 1. Show the heat released by astronomical objects
Infrared waves 2. Study stars having high temperature
3. Measure temperature differences in space
Which of these best matches the waves with their applications?
Select one:
a. Microwaves—3 and infrared waves—1
b. Microwaves—1 and infrared waves—3
c. Microwaves—1 and infrared waves—2
d. Microwaves—2 and infrared waves—1
Answer:
a. Microwaves—3 and infrared waves—1
Explanation:
Microwaves and infrared waves are both part of the electromagnetic spectrum, but they have different frequency and wavelength.
In particular:
- Microwaves are long-wavelength electromagnetic waves, with wavelength between 1 mm and 1 m. Their wavelength is longer than visible light
- Infrared waves are also long-wavelength electromagnetic waves, but their wavelength is shorter than microwaves: between 700 nm and 1 mm. Their wavelength is also longer than visible light.
The two types of waves are also used for different purposes. In particular:
- Infrared waves are emitted by any hot object, and their intensity depends on the temperature of the object. Therefore, they are used in astronomy to show the heat released by astronomical objects (option 1)
- Microwaves are used to study the Cosmic Microwave Background (CMB). This is electromagnetic radiation that permeates the whole universe, and its wavelength depends inversely on the local temperature. Therefore, areas with longer wavelength have lower temperature, and viceversa. Therefore, microwaves are used to measure temperature differences in space (option 3).
She sights two sailboats going due east from the tower. The angles of depression to the two boats are 42o and 29o. If the observation deck is 1,353 feet high, how far apart are the boats?
Answer:
The boats are 934.65 feet apart
Explanation:
Given:
The angles of depression to the two boats are 42 degrees and 29 degrees
Height of the observation deck i = 1,353 feet
To Find:
How far apart are the boats (y )= ?
Solution:
Step 1 : Finding the value of x(Refer the figure attached)
We can use the tangent ratio to find the x value
[tex]tan(42^{\circ}) = \frac{1353}{x}[/tex]
[tex]x = \frac{1353}{tan(42^{\circ}) }[/tex]
x = 590.47 feet
Step 2 : Finding the value of z (Refer the figure attached)
[tex]tan(29^{\circ}) = \frac{1353}{z }[/tex]
[tex]z = \frac{1353}{tan(29^{\circ})}[/tex]
z = 1525.12 feet
Step 3 : Finding the value of y (Refer the figure attached)
y = z -x
y = 1525.12 - 590.47
y = 934.65 feet
Thus the two boats are 934.65 feet apart
What is the area of shore between high and low tides called
Its is called intertidal zone
Explanation:
The earth rotation and the moon's pull of gravity causes the tides to rise and fall.High tides occur when the water advances to the furthers point of a shoreline where as low tides happen when the water recedes to the lowest point of the shoreline.Some kinds of animal and plants survive in the ecosystem present between the area of high tides and low tides refered to as the intertidal zone.This area is sometimes covered or uncovered by ocean waters.
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Imagine that Kevin can instantly transport himself between Planet X and Planet Y. Which statement could be said about Kevin in this situation?
Kevin’s weight may change between Planet X and Planet Y.
Kevin’s volume may change between Planet X and Planet Y.
Kevin’s mass may change between Planet X and Planet Y.
Kevin’s matter may change between Planet X and Planet Y.
The answer is Kevin's weight may change between Planet X and Planet Y.
Explanation:
The mass is the amount of matter contained in our body and it does not vary with other planets (remains constant). But the weight on the planet is the strength of gravity on the planet and result of mass which will vary with different planets. Your weight is a measure of the pull of gravity between the person and the planet.Every object in the universe will attract each other object with the same mass. When the gravity is high, your weight will be high because your weight will be depending on the gravitational pull of planets.For example, if an astronaut travels from Earth to Mars, his mass remains unchanged and he floats with the same size and mass but his weight will vary due to varying gravity. Thus your mass doesn't affect other planets it's only the weight that may change due to the varying gravitational pull or no gravity.Answer:
the answer is A
Explanation:
A boy that has a mass of 40 kilograms is walking at a speed of 2m/s. What is the boys momentum?
Answer:
The boy's momentum = 80kgm/s
Explanation:
Momentum (P) =mass x velocity
Where, velocity(speed) =2m/s
Mass of the boy=40Kg
Momentum (P)=(40kg) x (2m/s) = 80kgm/s.
Place the two thermometers outdoors in different locations. Place one in direct sunlight and the other in shade. Make sure that the thermometers are in a secure location so they will not fall or blow away. Do you think that there will be a difference in temperature between these two locations over a period of one week? Write down your prediction.
Answer:
YES THERE WILL BE A DIFFERENCE
Explanation:
THE THERMOMETER WHICH IS KEPT UNDER SUNLIGHT WILL BREAK DUE TO THE HEAT OF THE SUN
AND THE ONE KEPT UNDER SHADE WILL BE SAFE.
Final answer:
Yes, there will likely be a difference in temperature between a thermometer placed in direct sunlight and one placed in the shade due to the energy carried by sunlight that converts to heat when absorbed.
Explanation:
If a student places one thermometer in direct sunlight and another in the shade and records the temperatures over a period of one week, yes, there will likely be a difference in temperature readings between the two locations. Direct sunlight warms the surface it strikes more than an area in the shade does. This is due to the fact that sunlight carries energy which converts to heat when it is absorbed by objects, including thermometers. If the thermometer in the shade is shielded from this direct infusion of solar energy, it will generally record a lower temperature.
Several experiments suggested, such as shielding a thermometer with aluminum foil, wrapping it with a handkerchief soaked in nail polish remover, or simply measuring the air temperature in a sunny spot, all showcase the effects of sunlight on temperature readings. It is important to use an appropriate laboratory thermometer that can handle specific temperature ranges to avoid breakage and ensure accurate results. Additionally, when conducting the experiment, it is vital to ensure that the thermometer is upright to avoid incorrect readings.
A jet plane manages to go forward by sucking in_____
through the_______
and shooting it out again at the back. (Note: one word for each field)
QUESTION 3
In terms of the action-reaction law, what is the reason why firemen have difficulty holding on to the nozzle of a fire
hose when water is gushing out at high speeds?
The hose's material contracts (action) resulting in a recoil (reaction)
It is an electrically regulated jolt (action) as a build-in feature for safety purposes, so that firemen recoil back
(reaction) from potential flares
The force by which the water is shot out (action) results in an equal counter-force by the water (reaction)
The water hitting on a heavy object or surface (action) results in a counterforce from the object or surface
conducted through the water to the firemen (reaction)
The push-back is only a perceptional effect from the stress which the firemen experience
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Answer:
sucking in air through the turbine.
Explanation:
When an airplane turbine operates, it sucks air through it, compresses the air, causes its pressure to increase in the same way as its temperature and ejects it at high speed through the nozzle-shaped output, creating a high output speed and push force capable of moving the plane horizontally.
Vehicles of the fire department are equipped with water pumps of high pressure, in such a way that, when operating, send a flow of water with high pressure and speed through the hose, this force output of the water is sometimes much greater than the force with which the fireman holds the hose, and hence the difficulty to maneuver the hose.
Now when the fireman points the hose with the water at high pressure and speed coming out of it, into a wall close enough. The Fireman will experience newton's third law in all its splendor, which says that every force of action leads to a reaction, so that the reaction could hurt the fireman operating the hose.
How is instantaneous speed calculated?
Answer:
Explanation:
Instantaneous speed is the speed of an object at a given point of time. While the speed we usually calculate is the average speed of the object throughout its journey, instantaneous speed can be determined by calculating the derivative of the average velocity of the object in question.
And the formula for average velocity is
V(avg)= Metre/ second, which is distance/time
Hence its derivative would be
dV(avg)=d(Distance)/d(time) which is the instantaneous speed of the object
Final answer:
Instantaneous speed is calculated by taking the absolute value of instantaneous velocity, which is the magnitude of velocity at a specific moment in time, without considering direction.
Explanation:
The calculation of instantaneous speed requires understanding that it is the magnitude of instantaneous velocity. Instantaneous velocity is a vector quantity that has both magnitude and direction, but when we are interested in the speed at an exact moment in time, we disregard the direction. To calculate the instantaneous speed, one typically takes the absolute value of the instantaneous velocity. For instance, if an object has an instantaneous velocity of -3.0 m/s, indicating motion towards the rear of a plane, its instantaneous speed is 3.0 m/s. Unlike average speed, which is calculated by dividing the total distance traveled by the total time taken, instantaneous speed is concerned solely with the rate of motion at a particular instant.
Instantaneous speed is a scalar quantity and, unlike velocity, does not include any directional information. The instantaneous speed can be determined from the instantaneous velocity by simply looking at its magnitude, without regard for its direction.
24 grams of magnesium metal reacts with 16 grams of oxygen gas to form magnesium oxide. according to the law of conservation of mass, how much magnesium oxide will there be after the chemical change is complete?
The mass of magnesium oxide must be 40 grams
Explanation:
The law of conservation of mass states that the total mass of the reactant in a chemical reaction must be equal to the total mass of the products after the reaction has completed.
In this problem, we have:
Reactants:
Magnesium metal (mass: 24 grams)
Oxygen gas (mass: 16 grams)
Products:
Magnesium oxide (mass: ?)
According to the law of conservation of mass, the mass of the magnesium oxide must be equal to the sum of the mass of the magnesium metal and the oxygen gass. Therefore:
Mass (magnesium oxide) = 24 g + 16 g = 40 g
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2. A ball tied to a pole by a rope swings in a circular path with a centripetal acceleration of 2.7 m/s. If the ball has a
tangential speed of 2.0 m/s, what is the diameter of the circular path in which it travels?
Answer: The diameter of the circular path is 2.96m
Explanation: centripetal acceleration = tangential speed^2 / radius of the circular path.
Centripetal acceleration = 2.7m/s^2
Tangential speed = 2.0m/s
Radius = 2.0^2 / 2.7 = 4/2.7
= 1.48m
Diameter = radius*2
= 1.48*2 = 2.96m.
If basketball travels a distance of 4 meters in 5 seconds what is the average speed
Answer:
The average speed is 0.8 meters per second.
Explanation:
Which two statements about composite materials are true?
They're made up of more than one substance.
They have the same or similar properties as the materials used to make them.
They're always made of metal.
They're readily available in nature.
Reset
Next
Answer:
They have the same or similar properties as the materials used to make them.
Explanation:
if it takes 3.5 hours for the hogwarts express moving at a speed of 120 mi/hr to make it from platform 9 and 3/4 to hogwarts how far apart are they?
The distance travelled by the Hogwarts express is 420 miles. So, they are 420 miles apart by the Hogwarts express .
What is speed?Speed is characterized as the rate at which an object's position changes in any direction. The distance travelled in relation to the time it took to travel that distance is how speed is defined.
Speed is distance travelled by the object per unit time. Due to having no direction and only having magnitude, speed is a scalar quantity With SI unit meter/second.
Speed of the Hogwarts express is = 120 mi/hr.
Time interval the Hogwarts moves = 3.5 hours
Hence, The distance travelled by the Hogwarts express is = speed of the Hogwarts express × time interval the Hogwarts moves
= 120 mi/hr × 3.5 hr
= 420 miles.
So, they are 420 miles apart by the Hogwarts express .
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The distance between platform 9 and 3/4 and Hogwarts is 420 miles.
Explanation:To determine the distance between platform 9 and 3/4 and Hogwarts, we can use the formula distance = speed × time.
Given that the Hogwarts Express is moving at a speed of 120 mi/hr and takes 3.5 hours to reach Hogwarts, we can calculate the distance as follows: distance = 120 mi/hr × 3.5 hours = 420 miles.
Therefore, the distance between platform 9 and 3/4 and Hogwarts is 420 miles.
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a 3kg has 9 joules of kinetic energy how fast is it flying
Answer: 2.4 m/s
Explanation:use KE= 1/2 mv²
Derive to find v:
v = √ 2KE / m
= √ 2 ( 9 J ) / 3 kg
= 2.4 m/s
Electronegativity is
____ at the top of the periodic table.
Answer:
highest is correct word
Explanation:
Final answer:
Electronegativity increases at the top of the periodic table, with the highest values found in the upper right corner, corresponding to elements like fluorine.
Explanation:
Electronegativity is a measure of how strongly an atom attracts electrons when it forms a covalent bond. This tendency of an atom to attract electrons determines a lot in its chemical behavior. Electronegativity values, which can range from about 0.7 for elements like Francium (Fr) up to 4.0 for Fluorine (F), show a clear trend in the periodic table. They generally increase from left to right across the periodic table and are higher at the top of the periodic table. The elements with the highest electronegativity are found in the upper right corner of the periodic table, such as the nonmetals oxygen and fluorine, while those with low electronegativities are found in the lower left corner, such as the alkali metals.
you are riding on a train traveling 80 km/h. if you walk toward the back of the train at a speed of 1.2 km/h relative to the train, what is your velocity relative to the ground?
Answer:
Velocity of the passenger = 78.8[km/h]
Explanation:
In order to solve this problem, we must observe the train from a distant point of the train. In this way we can observe that the train moves at 80[km/h] relative to the ground.
In such a way that the passenger moves in a direction contrary to the movement of the train.
[tex]v_{pass}=80-1.2\\ v_{pass}=78.8[km/h][/tex]
The Observer located outside the train will see how the passenger moves away at 78.8 [km / h] and not at 80[km/h] which is the speed of the train.