The statement that is false is:
"if a positively charged particle is placed at a location where the electric field is directed due north, it will be accelerated due north."
A charged particle will experience a force in the direction of the electric field, but it may not necessarily be accelerated in the same direction. The acceleration of a charged particle depends on other factors such as the mass of the particle, the strength of the electric field, and any other forces acting on the particle. So, a positively charged particle may not be accelerated due north, even if the electric field is directed due north. The electric field is a fundamental concept in physics and is used to describe the force that a charged particle experiences in a given electric field. It is a vector quantity that represents the force per unit charge and is defined as the force that a charged particle would experience if placed at a given point in space.
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Give three examples where an object's average speed is the same as its average velocity, and three where the two are different.
Velocity is a vector quantity and speed is a scalar quatity. This means that velocity changes with direction and speed does not.
What is speed and velocity?
Velocity is the pace and direction of an object's movement, whereas speed is the time rate at which an object is travelling along a path. In other words, velocity is a vector, whereas speed is a scalar value.
Three examples were velocity and speed are same:
A car moving in a straight line with constant speed will also have same velocity. A runner running in the straight track with constant speed will also have same velocity. A truck on a straight highway will have same average velocity and speed.Three examples were velocity and speed are different:
A car moving in a round road with constant speed will not have same velocity. A runner running in one round track with constant speed will not have same velocity. A truck going on a mountain will not have same average velocity and speed.To learn more about velocity, here
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The photograph below shows a girl pushing on a large stone sphere. The sphere has a mass of 8200 kg and a radius of 90 cm and floats with nearly zero friction on a thin layer of pressurized water. Suppose that she pushes on the sphere tangent to its surface with a steady force of F = 25 N and that the pressured water provides a frictionless support. How long will it take her to rotate the sphere one time, starting from rest?
The time required for a girl to rotate the sphere one time, starting from rest, is 19.256 s.
A measure of an object's resistance to changes in its rotating motion, the moment of inertia, is used in physics. It measures the amount of mass disposed about a rotational axis. The equivalent of mass in linear motion is the moment of inertia in rotational motion.
The inertia is given by:
I = (2/5)m×r²
I = (2/5) × 8200 kg × (0.9m)²
I = 2657 kg·m²
The torque is given by:
τ = I×α
25 × 0.9 = 2657 × α
α = 0.00846 rad/s²
The angular displacement is:
Θ = ½α×t²
2π rads = ½ × 0.00846 × t²
t =√(4π rads/0.0106rad/s²)
t = 19.256 s
Hence, the time required for a girl to rotate the sphere one time, starting from rest, is 19.256 s.
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after landing on an unfamiliar planet, a space explorer constructs a simple pendulum of length 51.0 cmcm . the explorer finds that the pendulum completes 101 full swing cycles in a time of 136 ss .part awhat is the magnitude of the gravitational acceleration on this planet?express your answer in meters per second per second.view available hint(s)for part aactivate to select the appropriates template from the following choices. operate up and down arrow for selection and press enter to choose the input value typeactivate to select the appropriates symbol from the following choices. operate up and down arrow for selection and press enter to choose the input value typegplanetgplanet
The magnitude of the acceleration due to gravity of the planet is 11.06 m/s², if the pendulum completes 101 full swing cycles in 136 seconds.
Length of the pendulum, l = 51.0 cm = 0.51 m
Time taken to complete 101 full swings cycle is 136 seconds, so
Time period of the pendulum, T = 136/101 = 1.35 sec
Let the value of gravitational acceleration on the planet, = gₓ
We know the equation of simple pendulum is: T = 2π√(l/g)
1.35 = 2π√(0.51/g)
Squaring of both sides,
1.35² = (2π)²×(0.51/gₓ)
1.82 = 20.13/gₓ
gₓ = 20.13/1.82
gₓ = 11.06 m/s²
--The given question is incorrect, the correct question is:
"after landing on an unfamiliar planet, a space explorer constructs a simple pendulum of length 51.0 cm . the explorer finds that the pendulum completes 101 full swing cycles in a time of 136 s. What is the magnitude of the gravitational acceleration on this planet? Express your answer in meters per second per second."--
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The arm of a crane at a construction site is
18.0 m long, and it makes an angle of 13.5
◦
with the horizontal. Assume that the maximum load the crane can handle is limited
by the amount of torque the load produces
around the base of the arm.
What maximum torque can the crane withstand if the maximum load the crane can
handle is 521 N?
Answer in units of N · m.
002 (part 2 of 2) 10.0 points
What is the maximum load for this crane at
an angle of 25.8
◦ with the horizontal?
Answer in units of N.
Maximum torque can the crane withstand is 6603.8 N·m. The maximum load for this crane at an angle of 25.8 with the horizontal is 461.5 N
What is the crane's maximum load and torque?The link between torque, force, and angle serves as the theoretical foundation for this inquiry.
The sine of the angle formed by the force and the lever arm and the product of the force times the length of the lever arm are used to calculate torque. This means that the length of the lever arm and the angle at which the force is applied can both affect how much torque is generated.
The steps are as follows to get the answer:
Calculate the maximum torque that the crane can withstand in step 1.
This can be done by adding the sine of the angle the arm makes with the horizontal (13.5°) to the length of the arm (18.0 m) and the maximum load (521 N).
Torque is defined as: 521 N x 18.0 m x sin (13.5°) = 6603.8 N m.
Step 2: Determine the crane's maximum load at a 25.8-degree angle to the horizontal.
The maximum load (521 N) multiplied by the sine of the angle (25.8°) will achieve this.
The maximum load is equal to 521 N * sin (25.8°) = 461.5 N.
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a parallel-plate capacitor is connected to a battery. the energy of the capacitor is U. the capacitor is then disconnected from the battery and the plates are slowly pulled apart until the plate separation doubles. the new energy of the capacitor is U. find the ratio U/U.
For the given set of information the value of U/U' ratio will be 4
When two parallel plates are placed over a battery and separated by a certain distance, the given plates begin to charge progressively and an electric field is created between them.
The energy stored in a parallel-plate capacitor is given by the formula:
U = 0.5 * C * V^2
where C is the capacitance of the capacitor and
V is the voltage across the capacitor.
When the plate separation doubles, the capacitance of the capacitor is reduced to one-quarter of its original value.
Since the voltage across the capacitor remains constant, the new energy stored in the capacitor becomes:
U' = 0.5 * (C/4) * V^2
= 0.5 * C * V^2 / 4
= U / 4
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choose the correct explanation why does the statement make sense (or is clearly true) or does not make sense (or is clearly false): nasa will soon launch a spaceship that will photograph our milky way galaxy from beyond its halo. choose
The statement doesn't make sense. Even if NASA could build a spaceship that traveled close to the speed of light, it would take tens of thousands of years to get into the halo and then the same time for image to get back to Earth. Option C is the correct answer.
For a spaceship to the milky way galaxy, it should travel with the speed of light.
And even if we could build a spaceship that traveled close to the speed of light, it would take tens of thousands of years to reach into the halo to photograph the disk, and then tens of thousands of years more for the picture to be transmitted back to Earth.
Therefore, Option C is the correct explanation.
---The complete question is,
Choose the correct explanation why does the statement make sense (or is clearly true) or does not make sense (or is clearly false):
NASA will soon launch a spaceship that will photograph our Milky Way Galaxy from beyond its halo.
A) The statement makes sense. If NASA can build a spaceship that will travel close the speed of light, it would take reasonable time, such as hundred years, to get into the halo to photograph the disk, and the same time for image to get back to Earth.
B) The statement doesn't make sense. At the speed of the current spaceships, it would take tens of thousands of years to get into the halo of Milky Way, though reasonable time, such as hundred years, is needed for image to get back to Earth.
C) The statement doesn't make sense. Even if NASA could build a spaceship that traveled close to the speed of light, it would take tens of thousands of years to get into the halo and then the same time for image to get back to Earth.
D) The statement doesn't make sense. NASA need to build a spaceship that able to travel close to the speed of light to get into the halo of Milky Way in reasonable time, such as hundred years. it's well beyond the current technology. ---
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Sam walks 200M North it takes him 5 minutes what was his velocity
The velocity of Sam can be calculated by dividing the distance he covered by the time it took to cover the distance:
v = d / t
where d = 200m, t = 5 minutes = 5 * 60 = 300 seconds
v = 200 / 300 = 0.67 m/s
So Sam's velocity was 0.67 m/s North.
True or False : The sketch of the millimeter scale as it appears using the low-power objective would appear larger than when using the scanning objective magnification.
True. The sketch of the millimetre scale as it appears using the low-power objective would appear larger than when using the scanning objective magnification.
What is magnification?Magnification is the process of enlarging something's apparent size—not its actual size. A calculated number, also known as "magnification," is used to measure this enlargement. When this number is less than one, it refers to a reduction in size, also known as magnification or de-magnification.
Magnification typically refers to enlarging visuals or images in order to see more detail, boosting resolution, using a microscope, printing methods, or digital processing. The perspective of the image is unaffected by magnification in every situation.
Optical magnification is a dimensionless number because it measures how an object's apparent size (or size in an image) compares to its actual size.
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A ball is thrown straight up into the air, it falls back down, bounces off the floor and is caught at the same height it was released from. A. Draw the motion diagram. B. What is the velocity at the highest point? How do you know? (This is not a calculation. This is a concept question.)
A motion diagram of this scenario would show a ball being thrown upward and then falling back down, bouncing off the floor before being caught at the same height it was released from.
At the highest point, the ball would have a velocity of 0 m/s, since it has reached its maximum height and its velocity has changed from positive to negative.
This can be determined by the fact that the ball is momentarily at rest at the highest point, and the concept of conservation of energy, since the total energy of the ball must be conserved throughout the entire motion.
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on earth, with its atmosphere, which of these parts of the spectrum can astronomers view from the ground?
Astronomers can view the optical (visible light) portion of the spectrum from the ground.
Which of these spectrum regions can observers on the ground see?
Observers on the ground can see a range of different parts of the electromagnetic spectrum, including visible light, ultraviolet, infrared, and radio waves. Visible light is the light that human eyes are able to detect, and it is made up of the colors of the rainbow.
Ultraviolet light has a higher frequency than visible light, and it is sometimes referred to as "black light." Infrared radiation has a lower frequency than visible light, and it is responsible for making objects appear warm.
Finally, radio waves have the lowest frequency of all, and they are used to transmit data from place to place. All of these different parts of the electromagnetic spectrum can be observed by observers on the ground.
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From what height h above the bottom of your window was the flower pot dropped? express your answer in terms of lw , t , and g .
The height h above the bottom of the window can be expressed as h = (1/2)gt² + lw, where g is the acceleration due to gravity, t is the time the flower pot was in the air, and lw is the length from the bottom of the window to the top of the windowsill.
In order to determine the height from which a flower pot was dropped, information about the length of the window (lw), the time it took for the flower pot to fall (t), and the acceleration due to gravity (g) would be needed.
The formula for determining the height from which an object was dropped is given by h = (1/2)gt², where h is the height, g is the acceleration due to gravity, and t is the time it took for the object to fall.
Using the values for lw, t, and g, the height from which the flower pot was dropped can be calculated. The height will be expressed in terms of lw, t, and g.
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reckless rick is driving along the road at 80 km/h and bumps into hapless harry, who is directly in front of him and is driving at 88 km/h. what is the speed of the collision?
Answer:
hdiszvkebxobezuwkwhdkd
Explanation:
csiejusjixjdabsijzjeod
the small piston of a hydraulic lift has a crosssectional area of 2.4 cm2 and the large piston 276 cm2 . what force must be applied to the small piston for the lift to raise a load of 2.4 kn? (in service stations, this force is usually exerted by compressed air.) answer in units of n.
The force applied to the small piston should be 2400 N.
The force applied to the small piston is related to the force applied to the large piston by the ratio of their cross-sectional areas. This is known as Pascal's law, which states that pressure applied to a confined fluid is transmitted similarly this way and that.
The equation for the force applied to the large piston (F2) can be determined from the pressure applied to the small piston (F1) and their particular cross-sectional areas (A1 and A2):
F2 = (F1 * A2)/A1
We are given that F1 should be equivalent to the force required to raise a load of 2.4 kN, or 2400 N.
F2 = (2400 N * 276 cm^2)/(2.4 cm^2) = 240000 N
Hence, the force applied to the small piston should be 2400 N.
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a stationary golf ball is hit by a club. while the club is in contact with the ball, the ball compresses, the club exerts maximum force when the ball is at maximum compression, and then the ball expands. the momentum of the golf ball after contact with the club is represented by the vector above. which of the following groups of vectors could represent the force exerted on the ball at the three moments described?
The momentum of the gold ball that represents the force exerted on the ball at the three moments described is vector B.
Momentum is a vector quantity resulted from the mass of a particle and its velocity. Momentum represents the force acting on the particle. Momentum is the implication of Newton's Second Law. Momentum can be formulated as:
P = m.v
where:
P = momentum
m = mass
v = velocity
Following the three moments, we can identify the vector that represent the force exerted on each moment. Let's discuss them further.
Once the golf ball is hit by a club from its stationary position, the force exerted on the golf ball will be in the same direction to the club movement. We assume in this case that the club hits the ball from the left to right. The force will move the ball from its stationary position to the right.
Once the ball is at maximum compression, the force is also at its maximum point. The direction of the force remains as the previous moment.
Lastly, once the ball starts to expand, the force declines. The ball will come to its end position once the momentum of the force becomes zero (0). The momentum of the force will decline since the force direction changes to the left as resulted of the frictional force from the air.
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Complete Question:
A stationary golf ball is hit by a club. while the club is in contact with the ball, the ball compresses, the club exerts maximum force when the ball is at maximum compression, and then the ball expands. the momentum of the golf ball after contact with the club is represented by the vector above. which of the following groups of vectors could represent the force exerted on the ball at the three moments described?
(Please refer to the picture attached below)
Consistent with the principle of neural representation, which of the following factors would be LEAST consequential in understanding our experience of seeing another person? a. electrical signals in one's optic nerve
b. electrical signals in one's brain
c. the image on one's retina
d. the light reflected from the other person
'Electrical signals in one's optic nerve' would be least consequential in understanding our experience of seeing another person.
What exactly do you mean by optic nerve?
The optic nerve is a bundle of nerve fibers that carries visual information from the retina to the brain. It is responsible for vision and is the nerve that connects the eye to the brain.
Electrical signals in one's optic nerve are the physical basis of vision, but they do not provide any information about the person being seen. This is because an electrical signal is just a representation of the light that hits the eye and does not provide any information about the person being seen. The actual experience of seeing another person is determined by a combination of factors, including the person's facial features, body language, and other visual cues.
Hence, option A is correct.
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What does an object with more mass require, according to Newton's second law of motion?
O more distance to accelerate
Oless speed to accelerate
O more force to accelerate
Oless force to accelerate
Thus according Newton's 2nd law of motion, heavier objects require more force to accelerate.
Describe a force.At this point, it's appropriate to refer to a force as a push or a pull. The idea of a force encompasses both living and non-living phenomena. Large particles are always in motion thanks to electrostatic and electric and magnetic forces, while the perturbation theory is always moving thanks to the weak and powerful nuclear forces.
In what ways does force combine?Given that it has both orientations and magnitude, a vector quantity describes a force. It is calculated and use the newton SI unit (N). F is the symbol for force (formerly P). In no particular sequence, the list includes gravity, electromagnetics, the moderate nuclear force, and in fact, the greater nuclear force.
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what, in general, does the thickness of sound absorbing material have to do with the material's ability to absorb particular sound frequencies? only one of these answers is completely true. group of answer choices the thicker the material, the more db of sound reduction happens, the same at all frequencies.
As with density, an increase in thickness improved the absorption of samples at low and medium frequencies. As thickness increased, the frequency of the maximum absorption coefficient shifted to lower frequencies, and the maximum absorption coefficient value decreased.
What is AbsorptionAbsorption refers to the process by which a material, structure, or object picks up energy when a wave is encountered, as opposed to reflecting the energy. Part of the absorbed energy is converted into heat and part is transmitted through the absorbing body. The energy that is converted to heat is said to have been 'lost'. (e.g. springs, dampers, etc.)
What is Sound AbsorptionWhen a sound wave hits the surface of a material: some of it reflects; some of them penetrate, and the rest are absorbed by the matter itself.
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An orifice meter with orifice diameter 15cm is inserted in a pipe of 30 cm
diameter. The pressure difference measured by a mercury oil differential
manometer on the two sided of the orifice meter gives a reading of 50 cm of
mercury. Find the rate of flow of oil of specific gravity 0.9 when the coefficient
of discharge of the meter is 0.64.
A particular gravity oil will flow at a rate of 137.4 liters per minute.
Given that the pipe's diameter is 30 cm, the orifice's diameter is 15 cm, and their combined diameters are 0.15 and 0.32, respectively, Area A1 will be r2 = / 4 x (0.15)2 = 0.0176625.
Why is gravity a force, exactly?Gravity is a force in the broadest sense since it defines the resulting interaction between two masses. The stretching of spacetime and/or the movement of objects through it are the main origins of gravitational effects.
Is gravity based on actual events?Alfonso Cuarón, the director, declared, "This is not a documentary." It is a work of fiction. As a result, some aspects of the movie, such the Shuttle flights and Tiangong station, were purely artistic licenses.
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Let Q represent a mass of radioactive plutonium (239Pu) (in grams), whose half-life is 24,100 years. The quantity of plutonium present after t years is Q = 16(1/2)^t/24100 Determine the initial quantity (when t = 0)
The mass of the plutonium at the beginning is 16 g.
What is the initial quantity of the plutonium?We have to note that the element that we call plutonium is radioactive and the implication of that is that the element would be able to decompose with time and then the amount of the plutonium would reduce.
Now we have that;
Q = 16(1/2)^t/24100
Q = Amount of the plutonium
t = The time that is taken.
We have been told in the question that t =0 Hence;
Q = 16(1/2)^0/24100
Q = 16 * 1
Q = 16 g
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a piece of iodine is heated from 50 celcius to 197 celcius. what state of matter would we expect it to be in
Answer:
liquid
Explanation:
if an external force rotates the dipole from position b to position a, what happens to the pe of the dipole?
If an external force rotates the dipole from position b to position a, the pe of the dipole is said to be in stable equilibrium.
What is a dipole?A dipole in physics is an electromagnetic phenomenon that can happen in one of two ways:
An electric dipole separates the positive and negative electric charges that can be found in any electromagnetic system. A pair of charges with the same magnitude but a different sign separated by a typically small distance serve as a straightforward illustration of this system. (An electret is a permanently erected electric dipole.)The closed circulation of an electric current system creates a magnetic dipole. A single loop of wire carrying a steady current is a straightforward illustration. A magnet with a permanent magnetic dipole moment is a bar magnet, for instance.Let the dipole is kept in two positions (a) and (b) in constant electric field Eo.
Case (a) : Angle between dipole and the electric field θ=0o
Potential energy of dipole U=−PEo cosθ
∴ U=−PEo cos0o =−PEo
Thus the dipole is said to be in stable equilibrium.
Torque τ=PEo sinθ
∴ τ=PEo sin0o = 0
Thus, if an external force rotates the dipole from position b to position a, the pe of the dipole is said to be in stable equilibrium.
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Which color of visible light has a shorter wavelength than blue light? O A. Red O B. Green O C. Violet OD. Orange A
Answer:
Violet
Explanation:
ROY G BIV
Astronauts collected a lunar rock with a mass of 73 grams. What was the rock’s weight when they brought it back to Earth?
Answer: approximately 0.7154 Newtons.
The weight of an object can vary depending on the gravitational force acting upon it. On the moon, the gravitational force is about 1/6th of the Earth's gravity. To find the weight of the lunar rock when brought back to Earth, we need to consider Earth's gravity.
To calculate the weight of an object, we use the formula:
Weight = mass × gravity
Given that the mass of the lunar rock is 73 grams, we need to convert it to kilograms by dividing it by 1000:
Mass in kilograms = 73 grams ÷ 1000 = 0.073 kg
Now we can calculate the weight of the lunar rock on Earth. Earth's gravity is approximately 9.8 m/s².
Weight on Earth = 0.073 kg × 9.8 m/s² = 0.7154 Newtons (N)
a light bulb connected to a battery is interrupted by a substance, which when dissolved has a molar smth of 1.0, all these substances work except for
A light bulb connected to a battery is interrupted by a substance, which when dissolved has a molar smth of 1.0, all these substances work except for electrolyte solution.
What is electrolyte solution?Electrolyte, in chemistry and physics, substance that conducts electric current as a result of a dissociation into positively and negatively charged particles called ions, which migrate toward and ordinarily are discharged at the negative and positive terminals (cathode and anode) of an electric circuit, respectively.
The most familiar electrolytes are acids, bases, and salts, which ionize when dissolved in such solvents as water or alcohol. Many salts, such as sodium chloride, behave as electrolytes when melted in the absence of any solvent; and some, such as silver iodide, are electrolytes even in the solid state.
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Analyzing Gravitational Data Quick Check
Students want to design an experiment to study gravity. They decide they will drop four objects with the same mass from
the top of their school's bleachers. They will time how long each object takes to reach the ground. How can they improve
confidence in the experiment's results? (1 point)
O Randomly select the order in which the objects are dropped.
O Drop each object 10 times and use the average of each object's fall times.
O Let a different student time the drop of each object.
O Drop all four objects at once.
The confidence level can be improved by; Drop each object 10 times and use the average of each object's fall times. Option B
How does gravity affect a falling body?Gravity affects a falling body by accelerating it towards the ground at a rate of 9.8 m/s^2 (on Earth's surface). The force of gravity is proportional to the mass of the body and the acceleration due to gravity, and it acts in the direction of the center of the Earth.
Hence the acceleration due to gravity is the acceleration that have been imparted to an object dur to the gravitational pull on the object.
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A baseball pitcher throws the ball in a motion where there is rotation of the forearm about the elbow joint as well as other movements. If the linear velocity of the ball relative to the elbow joint is 20.0 m/s at a distance of 0.480 m from the joint and the moment of inertia of the forearm is 0.500 kg ⋅ m2 , what is the rotational kinetic energy of the forearm?
The rotational kinetic energy of the forearm is 41.7 J.
What is kinetic energy?Kinetic energy is a form of energy that is associated with the motion of an object. It is the energy that an object has due to its motion. Kinetic energy can be calculated by multiplying half of the object’s mass with the square of its velocity. The SI unit of kinetic energy is Joules (J). Kinetic energy is used in many different fields such as physics, engineering, and thermodynamics.
The rotational kinetic energy of the forearm can be calculated using the equation KErot = (Iω^2) / 2, where I is the moment of inertia and ω is the angular velocity.
The angular velocity can be calculated by dividing the linear velocity (v) by the radius (r): ω = v/r.
Therefore, the rotational kinetic energy of the forearm is:
KErot = (Iω^2) / 2 = (0.500 kg ⋅ m2) * ((20.0 m/s) / (0.480 m))^2 / 2 = 41.7 J
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sodium phosphate, can be found in fast food, baked goods, processed meat, and other manufactured foods. Which element has the percentage composition of 39%?
Answer: Sodium phosphate is a chemical compound made up of the elements sodium, phosphorus, and oxygen. The percentage composition of each element can be found by determining the mass of each element in the compound and dividing it by the total mass of the compound.
In sodium phosphate, the percentage composition of sodium is 39%. This means that out of the total mass of the compound, 39% of it is made up of sodium atoms. The other elements, phosphorus and oxygen, make up the remaining 61% of the compound.
A student at the top of a building throws a red ball upward with speed v0 and then throws a blue ball downward with the same initial speed v0. Immediately before the two balls reach the ground, which of the following statements are true? (Choose all correct statements; neglect air friction.) (a) The speed of the red ball is less than that of the blue ball. (b) The speed of the red ball is greater than that of the blue ball. (c) Their velocities are equal.
(d) The speed of each ball is greater than v0. (e) The acceleration of the blue ball is greater than that of the red ball.
A student at the top of a building throws a red ball upward with speed v0 and then throws a blue ball downward with the same initial speed v0. Immediately before the two balls reach the ground. The true statement is (c) Their velocities are equal.
SPEED AND VELOCITY(Velocity) is a vector quantity that is a quantity that has a direction of motion while speed is a scalar quantity that is without considering the direction of motion.
Both speed and speed are measured in m/s, km/hour or miles/hour.
In daily application and use Speed is used to estimate the time needed by an object such as a vehicle to reach a certain distance while driving which can be observed in the movement of the speedometer. Whereas the Velocity scale is usually used to calculate the time needed by a storm to reach the coastline or other applications can be used to calculate the time needed for a rocket to reach the moon.
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A student throws a water balloon vertically downward from the top of a building. The balloon leaves the thrower's hand with a speed of 5.70 m/s. Air resistance may be ignored, so the water balloon is in free fall after it leaves the thrower's hand.a) What is its speed after falling for 2.00 s?b) How far does it fall in 2.00 s?c) What is the magnitude of its velocity after falling 10.0 m?How do I sketch a-1, V-t, and yet graphs for the motion of the balloon?
Speed after falling for 2.30 seconds = 37.74 m/s. The water balloon drops 60.88 meters in 2.3 seconds. The speed following an 11.0 m fall is 21.13 m/s
Find the velocity?Using the motion equations
g = 9.8 m/s²
Initially moving at 15.2 m/s
velocity at t = 2.3 seconds.
a) v = u + gt
v = 15.2 + 9.8×2.3
v = 37.74 m/s
y = ut + gt2/2 (b)
y = (15.2×2.3) + 9.8(2.3²)/2
y = 60.88 m
c) v² = u² + 2g
v² = 15.2² + (2×9.8×11)
v = 21.13 m/s
Speed after falling for 2.30 seconds = 37.74 m/s. The water balloon drops 60.88 meters in 2.3 seconds. The speed following an 11.0 m fall is 21.13 m/s
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Two nuclei each contain two protons and exert a force 4 N on each other. If we transfer a proton from one of these nuclei to the other, the force on each nucleus is now reduced to 3 N. True or False? Why?
Answer:
True
Explanation:
Using Coulomb's Law:
[tex]4 Newtons = Force = k*q_1*q_2/r^2.[/tex]
Plug in the values for the original charges and you get
[tex]4 Newtons = F = 4 *k*e^2/r^2[/tex] where a proton as a charge +e.
Dividing both sides by 4 you get that k*e^2/r^2 = 1 newton.
Now plugging in the new charges after moving the proton around:
[tex]F = 3*k*e^2/r^2.[/tex]
We know that k*e^2/r^2 = 1 newton so the net force that each nuclei has on each other is 3 Newtons.