Talia loves to jump rope. she jumps 879 times in 403 seconds. at what speed is she jumping.

Answers

Answer 1
2.2 jumps per second
Answer 2
Final answer:

Talia's jumping speed is calculated by dividing her total number of jumps (879) by the total time taken (403 seconds), which equals approximately 2.18 jumps per second.

Explanation:

The student asks about the speed at which Talia is jumping rope. To find the speed, we need to divide the total number of jumps by the total time.


Talia jumps 879 times in 403 seconds. To find her jumping speed, we do the following calculation:


Speed = Total jumps ÷ Total time = 879 jumps ÷ 403 seconds ≈ 2.18 jumps per second.


So Talia is jumping at an approximate speed of 2.18 jumps per second.


Related Questions

What do the yellow arrows in this illustration represent?

  




 
A.
movement of earth’s tectonic plates


 
B.
convection in the asthenosphere


 
C.
convection in the lithosphere


 
D.
direction of earth's magnetic field

Answers

a. movement of earths tectonic plates. I'm pretty sure

The yellow arrows in this illustration represent movement of earth’s tectonic plates.

What is tectonic plate?

A tectonic plate (also called lithospheric plate) is a massive, irregularly shaped slab of solid rock, generally composed of both continental and oceanic lithosphere.

Plate size can vary greatly, from a few hundred to thousands of kilometers across; the Pacific and Antarctic Plates are among the largest. Plate thickness also varies greatly,

ranging from less than 15 km for young oceanic lithosphere to about 200 km or more for ancient continental lithosphere (for example, the interior parts of North and South America).

How do these massive slabs of solid rock float despite their tremendous weight? The answer lies in the composition of the rocks.

Continental crust is composed of granitic rocks which are made up of relatively lightweight minerals such as quartz and feldspar. By contrast, oceanic crust is composed of basaltic rocks,

which are much denser and heavier. The variations in plate thickness are nature's way of partly compensating for the imbalance in the weight and density of the two types of crust.

Because continental rocks are much lighter, the crust under the continents is much thicker (as much as 100 km) whereas the crust under the oceans is generally only about 5 km thick.

Like icebergs, only the tips of which are visible above water, continents have deep "roots" to support their elevations.

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What is one difference between a window, a leaf, and a metal spoon?

Answers

They are all made up of at least one different element
The leaf is alive while the others are not.You can see out of a window but with a leaf and a metal spoon you can't.

red fox
sage shrub
fence lizard
grasshopper
If these organisms were arranged in a food pyramid, which organism would have the LEAST amount of total energy available?
A. red fox
B. sage shrub
C. grasshopper
D. fence lizard

Answers

In a food pyramid, the organism that has the least amount of total energy available is the one that is in the bottom or last. In this case, given the list of organisms above, the organism that would have the least amount of total energy available would be the RED FOX. The answer is option A. Hope this answer helps.

Answer:

The answer is A: red fox

Explanation:

Explain how the first three steps of scientific inquiry are related.

Answers

The first three steps in scientific inquiry are related in that they are all equivalent to being on a fact finding mission. The three steps are to find or develop the question that must be answered, to study all related academic literature on the subject, and then to make a guess as to what the answer is.
I hoped I helped!

Answer:

Explanation:

The scientific inquiry is a fact finding inquiry for determining the cause or occurrence of the natural processes, events or phenomena. The three steps of the scientific inquiry are related such a making a background research for the desired topic, observation of the natural process, and making hypothesis based on the observation. These three steps are basic for conducting a research and for finding the facts associated with the research.

what are some non examples of proton

Answers

An example of something that is not a proton would be an electron. It has a negative charge and has a charge of 1.6X10^-19 Coulombs.

Roseanne heated a solution in a beaker as part of a laboratory experiment on energy transfer. After a while, she noticed the liquid solution began to circulate within the beaker. What process involving heat transfer did Roseanne observe inside the beaker?

Answers

I think it is convection hope I could help.

who participates in sport more? women or men and why?

Answers

More women ...........I'm not sure why
Men play more sports than women, considering that men began sports and games before women were able to play anything at all......hopefully i helped and if i gave best answer plzz give brainliest!! Have a great day!!

Which BEST describes the difference between speed and velocity?
A) Velocity is instantaneous.
B) Speed is a vector quantity.
C) Speed includes rate of change and direction.
D) Velocity includes rate of change and direction.

Answers

Answer : The correct option is, (D) Velocity includes rate of change and direction.

Explanation :

Speed : Speed is defined as the distance traveled by an object with respect to the time taken. It is a scalar quantity that means it tell us about the magnitude of an object not direction.

Velocity : Velocity is defined as the rate of change of position of an object with respect to the time. It is a vector quantity that means it tell us about the magnitude and direction of an object.

The only difference between the speed and the velocity is that the velocity tell us about magnitude and direction but speed tell us about magnitude only.

Hence, the correct option is, (D) Velocity includes rate of change and direction.


Final answer:

Speed is a scalar quantity that only considers the magnitude of movement, while velocity is a vector quantity that includes both the magnitude and direction of movement.

Explanation:

D) Velocity includes rate of change and direction.

Speed and velocity are both terms used to describe how fast an object is moving. However, there is a key difference between the two. Speed is a scalar quantity, meaning it only considers the magnitude or size of the movement. Velocity, on the other hand, is a vector quantity. This means it includes both the magnitude and direction of the movement.

For example, if a car is traveling at a speed of 60 miles per hour, that only tells us how fast it is going. However, if we say the car is traveling at a velocity of 60 miles per hour northeast, that tells us both the speed and the direction.

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Write the law of conservation of energy. How does it apply to eating and exercising?

Answers

The Law of Conservation of energy states that the total energy of an isolated system remains constant-it is said to be the conserved over time. It applies by us burning calories because humans can lose or gain weight.
Final answer:

The law of conservation of energy asserts that energy cannot be created or destroyed, only transformed. This principle applies to eating and exercising by showing that food energy is converted into physical activity and stored fat, highlighting the importance of balancing energy intake with expenditure to manage weight.

Explanation:Law of Conservation of Energy

The law of conservation of energy states that energy can be neither created nor destroyed, only transferred or transformed from one form to another. In the context of eating and exercising, this principle indicates that the chemical energy from food is converted into various forms such as work (physical activity), thermal energy (heat), and chemical energy stored in body fat. Diets and exercise plans making extraordinary claims should be evaluated for their truthfulness based on this law. If a diet or exercise plan claims to 'destroy' energy or cause weight loss without considering energy intake and expenditure, it is likely not aligned with this fundamental law.

When discussing energy conservation, we can look at our own bodies as energy systems that convert the energy from food into necessary bodily functions and stored energy. If more energy is consumed than what is used for activity and maintaining body temperature, the excess energy is stored as fat. Conversely, if we consume less energy than we use, we tap into these fat reserves to maintain energy balance. Therefore, distinguishing between possible and impossible outcomes when considering exercise and dietary choices becomes clearer under the lens of energy conservation.

To perform a laboratory test of energy conservation, one might set up an experiment to measure the energy input and output in a system to confirm that, despite transformations, the total amount of available energy remains the same. This idea also broadly connects to understanding various forms of energy, such as calories in food, batteries, and heat, illustrating the interconnectedness of physical phenomena.

Can you tell me at least three states of matter that are fluids?

Answers

Liquid, Gases, and plasmas.

what organism has ribosomes,mitochondria,and lysosomes but does not have a cell wall

Answers

Animal cell has mitochondria and lysosomes but i dont know if there's ribosomes soryy 

Sort the energy spectrum from shortest to longest wavelength (short at top, long at bottom).

light
heat
radio
x-rays
cosmic

Answers

It would be in the order: (From short to long wavelength)
Cosmic
x-rays
light
heat
radio

Hope this helps!

Answer:

Cosmic

x-rays

light

heat

radio

John and Daniel are playing tug-of-war together. John is exerting 10 N of force. Daniel is exerting 12 N of force. What is their net force

Answers

We assume that they're pulling in opposite directions ...
that's how this game works.

Daniel completely cancels out John's whole 10N, and he
still has 2N left over.

The NET force on the rope is 2N in the direction of Daniel.
So the rope accelerates in Daniel's direction.

an unbalanced force moving everyone in Daniel and Maria's direction

1. A student studying a circuit diagram of a lightbulb, battery, and a switch correctly identifies it as a closer circuit. In this diagram, The lightbulb would be
a. an insulator
b. on
c. disconnected
d. off

2. The force of gravity on an object on the surface of Mars is less than the force of gravity on an identical object on the surface of earth. Which of the following is a example why this is true?
a. Mars has more volume than earth
b. Earth has more volume then mars
c. Mars has less mass than earth
d. Earth has less mass then mars

Answers

a. an insulator


c. Mars has less mass than earth

which of the following accurately shows how to calculate the weight of a 20kg object
20kgx9.8m/s
20kg/mass of the earth
20kg/9.8m/s
20kgxmass of the earth

Answers

The answer to your question is "20kgx9.8m/s" because weight is the force an object is exerting on another object, and the formula used to calculate force is Force = Mass * Acceleration.

Answer:

[tex]\Huge \boxed{\mathrm{20\ kg \cdot 9.8\ m/s^2}}[/tex]

Explanation:

[tex]\sf Weight \ (N)= mass \ (kg) \times acceleration \ of \ gravity \ (m/s^2)[/tex]

[tex]W=mg[/tex]

The mass of the object is 20 kg.

The acceleration of gravity is approximately 10 m/s².

[tex]W=20 \times 10[/tex]

[tex]W=200[/tex]

The weight of the object is 200 N.

what is friction. what does friction do as an ice skater slide across the ice?

Answers

Friction - force resisting the motion. 
This force will finally stop him (change his initial velocity to zero)

Final answer:

Friction is a force that opposes motion between surfaces in contact. When an ice skater slides across the ice, friction between the skates and the ice slows them down and eventually brings them to a stop.

Explanation:

Friction is a force that opposes relative motion between surfaces in contact. When an ice skater slides across the ice, friction between the skates and the ice slows down the skater and eventually brings them to a stop. The ice skates exert a force on the ice, and the ice exerts an equal and opposite force on the skates, creating friction.

Which BEST describes the difference between speed and velocity? A) Velocity is instantaneous. B) Speed is a vector quantity. C) Speed includes rate of change and direction. D) Velocity includes rate of change and direction.

Answers

the answer is....        d!



Answer:

Option (d) is correct.

Explanation:

Speed is defined as the ratio of distance traveled to the time taken.

As distance is scalar quantity, time is also scalar, so the speed is a scalar quantity.

Velocity is defined as the ratio of change in displacement to the time take.

Here displacement is a vector quantity, so velocity is a vector quantity.

So, velocity includes the rate of change of displacement and the direction.

a spacecraft is flying away from the moon toward the earth. the moons gravitational pull on the spacecraft will_______.

A. Repel the spacecraft

B. Decrease

C. Increase

D. Remain the same

Answers

The gravitational pull will decrease.

Answer:

B. Decrease

Explanation: When an spacecraft is flying away from the moon, the moons gravitational pull on the spacecraft will decrease because gravitational force is directly proportional to the mass of the moon and mass of the spacecraft while inversely proportional to the square of the distance between them. So as the spacecraft moves away from the moon, gravitational pull will decrease.

a 6 pack of undershirts cost 13.98. This is 3.96 less than the cost of buyng 6 individual shirts if each undershirt cost the same amount , how much does each undershirt cost when purchased individually.

Answers

So you know the pack is 13.98 and is 3.96 less that 6 shirts individually. So you add 13.98 and 3.96 together and then divide that by 6 which will give you the individual shirt amount. The answer will be 2.99 per shirt.

A car is traveling at a constant velocity of 60 km/h for 4 hours. Choose the correct statement about the acceleration of the car. A) The acceleration of this car is zero. B) The acceleration of this car is positive. C) The acceleration of this car is negative. D) The acceleration of this car is 15 m s .

Answers

You really need to learn the definition for acceleration. That's where one begins in learning physics, the definitions. 

In this case, acceleration is defined to be the change in velocity over an interval of time. 

You have an interval of time dT = 4 hrs, but do you have a change in velocity, dV? No. Why? Because you have "a constant velocity" which means no change. In math talk that's dV = 0. 

So by definition and in math talk, A = dV/dT = 0/4 = 0 acceleration. ANS. A
The best we can say about this question is that it's ambiguous ...
we can't be sure that it gives us enough information to answer it.

You start by saying that the car's velocity is constant.  But then you
seemingly illustrate that by telling us only its speed, and nothing about
the direction it's driving. 

'Velocity' means its speed AND direction.  (You and I need to tell Mr. Plz
below that he should focus more attention on learning his definitions.)

If velocity is constant, then speed AND DIRECTION are constant. 
'Acceleration' means ANY change in speed OR direction.  That's right ! 
Going around a curve at constant speed is accelerated motion.

We know that the car in the question never changes its speed for 4 hours.

If its DIRECTION never changes during the same time, then there has been
no acceleration.

If it ever changes direction ... turns a corner or goes around a curve in the
road ... then there has been acceleration, during the time its direction was
changing.

Which of the following is NOT a developer of an atomic model?
A- Dalton
B- Planck
C- Rutherford

Answers

Planck is the only one that is not a developer of the atomic model

the 20 or so minerals that make up most of the rocks of earth's crust are known as?

Answers

 quartz, feldspar,hornblende, and mica. theres your anwser 

The 20 or so minerals that predominantly compose Earth's crust are called rock-forming minerals, including silicates like quartz and feldspar, which account for over 90% of the crust.

The approximately 20 or so minerals that make up the bulk of Earth's crust are commonly referred to as rock-forming minerals. Most rocks are composed of these common minerals, and they include silicates such as quartz, feldspar, mica, amphibole, pyroxene, olivine, and various clay minerals. Silicates form over 90 percent of the Earth's crust because the building block of these minerals, the silica tetrahedron, combines one silicon atom with four oxygen atoms.

These rock-forming minerals are significant due to the high abundance of a few key elements in the crust, including oxygen and silicon, which make up about 75% of the Earth's crust by weight. The importance of managing these mineral resources sustainably is also highlighted, as they serve as essential resources for both plant growth and industrial applications.

what happens when you shuffle your feet across a carpet

Answers

You create static electricity.
When we shuffle our feet across a carpet, our feet get electrons from the substance of the carpet which produces electricity.

Hope this helps!

All of the following are possible sources of error in a scientific investigation except for
A. Measuring the change in temperature incorrectly
B. Manipulating the wrong variables in the experiment
C. Reviewing previously published studies before the experiment
D. Completing only one trial in the experiment

Answers

"c" reviewing previously published studies before the experiment

Your answer would be C my friend

You exert a force of 15 newtons while you move a rock 2 meters. How much work did you perform?


a) 17 n-m


b) 30 meters


c) 7 1/2 newtons


d) 30 n-m

Answers

The formula to find work is [tex]Work = Force * Distance[/tex]. In this case, the force exerted on the rock is 15 Newtons and the distance the rock moved was 2 meters, so 15 * 2 = 30. The answer to your question is D) 30 n-m.

compare the life cycles of flower less seed plant and flowering seed plants

Answers

Flower seeds go through germination

The life cycles of gymnosperms and angiosperms include seed germination and development stages; however, angiosperms are unique in their production of flowers and fruit-enclosed seeds, which distinguishes them from gymnosperms with exposed seeds on cones.

The life cycles of both non-flowering seed plants, like gymnosperms, and flowering seed plants, known as angiosperms, are characterized by a sequence of developmental stages from seed germination to the production of new seeds. However, there are fundamental differences between these two groups of plants. In the life cycle of a gymnosperm, seeds are not enclosed within a fruit but are often found on the scales of cones. In contrast, angiosperms produce seeds within a fruit, which develops from the flower.

The flower is the reproductive structure that typically includes petals, stamens, pistils, and is responsible for the sexual reproduction of these plants. Angiosperms are divided into two main groups: monocots and dicots. Basal angiosperms differ from other flowering plants in having traits that are more ancestral or less derived. The life cycle of an angiosperm involves alternating generations, with the sporophyte phase being the dominant generation.

The process of seed development in angiosperms is often characterized by the acronym RRAPP, signifying Reduction of the gametophyte, Retention of the gametophyte within the tissues of the parent plant, Arrested development of the seed until favorable conditions, Provisioning of the embryo with nutritive tissue, and Packaging of the seed with a protective coat.

Summarily, the distinctive flower structure and the protected seed development are key differentiators of angiosperms when compared with gymnosperms. Both life cycles show reduction in the haploid stage and growing complexity over time, but angiosperms have advanced further by incorporating flowers and encased seeds into their reproductive strategy.

List at least three things that can happen as plate spread apart.
b. Place these events in order by numbering them

Answers

Centre of Mass then axis of rotation and then moment of inertia. This was the toughest question for your level... happy to help ^_^. It was purely experimental question.

find the pressure exerted by a 3000 N crate that has an area of 2m squared

Answers

Pressure = Force/ Area = 3000/2 = 1500 pascal.

Can someone PLEASE HELP ME!!!!! A chemical sequence of DNA, or ____, determines a trait of an organism.

Answers

All living things have DNA. The thing that determines the trait of an organism is simply the sequence of their bases which is made of amino acids. These bases are called Adenine, Thymine, Cytosine and Guanine. OR short for A, T, C and G. 

In humans, A only pair with T and C only pairs with G. The sequence determines our trait.

to keepa sled accerlation downhill the force of gravity must be greater that the ___________ force

Answers

To keep a sled accelerating down fill the Force of gravity must be greater than the Frictional force, I believe.

To keep a sled accelerating downhill, the force of gravity must be greater than the frictional force.

When analyzing the motion of a sled sliding downhill, it's important to understand the forces acting on it and how they contribute to acceleration. Here’s a detailed explanation:

Forces Acting on the Sled

1. Force of Gravity:

  - Gravity: The force of gravity acts vertically downward with a magnitude of ( mg ), where ( m ) is the mass of the sled and ( g ) is the acceleration due to gravity (approximately [tex]\( 9.81 \, \text{m/s}^2 \))[/tex].

  - Component Parallel to the Slope: When the sled is on a slope, only a component of the gravitational force contributes to the sled's motion down the slope. This component is calculated as [tex]\( mg \sin(\theta) \), where \( \theta \)[/tex] is the angle of the slope. This component pulls the sled downhill.

2. Frictional Force:

  - Friction: Friction opposes the motion of the sled. On a slope, this force acts up the slope and is given by [tex]\( f_{\text{friction}} = \mu N \)[/tex], where ( mu ) is the coefficient of friction and ( N ) is the normal force.

  - Normal Force: The normal force is the component of the gravitational force perpendicular to the slope. It is given by [tex]\( N = mg \cos(\theta) \).[/tex]

Conditions for Acceleration

For the sled to accelerate downhill, the net force acting in the direction of the slope must be positive. This requires:

[tex]\[ F_{\text{net}} = F_{\text{gravity parallel}} - F_{\text{friction}} \][/tex]

Where:

- [tex]\( F_{\text{gravity parallel}} = mg \sin(\theta) \)[/tex]

- [tex]\( F_{\text{friction}} = \mu mg \cos(\theta) \)[/tex]

Thus:

[tex]\[ F_{\text{net}} = mg \sin(\theta) - \mu mg \cos(\theta) \][/tex]

For the sled to accelerate downhill:

[tex]\[ mg \sin(\theta) > \mu mg \cos(\theta) \][/tex]

Simplifying this, we get:

[tex]\[ \sin(\theta) > \mu \cos(\theta) \][/tex]

In other words, the force of gravity acting parallel to the slope must be greater than the frictional force resisting the motion. If this condition is met, the sled will accelerate downhill. If not, the sled might move at a constant speed or even slide up the slope if the frictional force is greater than or equal to the component of gravity pulling it down.

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