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Motives as goals

One way motives vary is by the kind of goals that students set for themselves, and by how the goals support students’ academic achievement. As you mightsuspect, some goals encourage academic achievement more than others, but even motives that do not concern academics explicitly tend to affect learningindirectly.

Goals that contribute to achievement

What kinds of achievement goals do students hold? Imagine three individuals, Maria, Sara, and Lindsay, who are taking algebra together. Maria’s mainconcern is to learn the material as well as possible because she finds it interesting and because she believes it will be useful to her in later courses,perhaps at university. Hers is a mastery goal because she wants primarily to learn or master the material. Sara, however, is concerned less about algebrathan about getting top marks on the exams and in the course. Hers is a performance goal because she is focused primarily on looking successful;learning algebra is merely a vehicle for performing well in the eyes of peers and teachers. Lindsay, for her part, is primarily concerned about avoiding apoor or failing mark. Hers is a performance-avoidance goal because she is not really as concerned about learning algebra, as Maria is, or about competitive success, as Sara is; she is simply intending to avoidfailure.

As you might imagine, mastery and performance goals often are not experienced in pure form, but in combinations. If you play the clarinet in the school band,you might want to improve your technique simply because you enjoy playing as well as possible—essentially a mastery orientation. But you might alsowant to look talented in the eyes of classmates—a performance orientation. Another part of what you may wish, at least privately, is to avoidlooking like a complete failure at playing the clarinet. One of these motives may predominate over the others, but they all may be present.

Mastery goals tend to be associated with enjoyment of learning the material at hand, and in this sense represent an outcome that teachers often seek for students. Bydefinition therefore they are a form of intrinsic motivation. As such mastery goals have been found to be better than performance goals at sustaining students’ interest in a subject. In one review of researchabout learning goals, for example, students with primarily mastery orientations toward a course they were taking not only tended to express greater interest inthe course, but also continued to express interest well beyond the official end of the course, and to enroll in further courses in the same subject(Harackiewicz, et al., 2002; Wolters, 2004).

Performance goals , on the other hand, imply extrinsic motivation, and tend to show the mixed effects of this orientation. A positive effect is that students with a performance orientation do tend to get higher grades thanthose who express primarily a mastery orientation. The advantage in grades occurs both in the short term (with individual assignments) and in the longterm (with overall grade point average when graduating). But there is evidence that performance oriented students do not actually learn material as deeply orpermanently as students who are more mastery oriented (Midgley, Kaplan,&Middleton, 2001). A possible reason is that measures of performance—such as test scores—often reward relatively shallow memorization ofinformation and therefore guide performance-oriented students away from processing the information thoughtfully or deeply. Another possible reason isthat a performance orientation, by focusing on gaining recognition as the best among peers, encourages competition among peers. Giving and receiving help fromclassmates is thus not in the self-interest of a performance-oriented student, and the resulting isolation limits the student’s learning.

Questions & Answers

A golfer on a fairway is 70 m away from the green, which sits below the level of the fairway by 20 m. If the golfer hits the ball at an angle of 40° with an initial speed of 20 m/s, how close to the green does she come?
Aislinn Reply
cm
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Siyaka Reply
A mouse of mass 200 g falls 100 m down a vertical mine shaft and lands at the bottom with a speed of 8.0 m/s. During its fall, how much work is done on the mouse by air resistance
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Can you compute that for me. Ty
Jude
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David Reply
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emma Reply
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Youesf Reply
what is inorganic
emma
Chemistry is a branch of science that deals with the study of matter,it composition,it structure and the changes it undergoes
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Adjanou
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Pedro
A ball is thrown straight up.it passes a 2.0m high window 7.50 m off the ground on it path up and takes 1.30 s to go past the window.what was the ball initial velocity
Krampah Reply
2. A sled plus passenger with total mass 50 kg is pulled 20 m across the snow (0.20) at constant velocity by a force directed 25° above the horizontal. Calculate (a) the work of the applied force, (b) the work of friction, and (c) the total work.
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you have been hired as an espert witness in a court case involving an automobile accident. the accident involved car A of mass 1500kg which crashed into stationary car B of mass 1100kg. the driver of car A applied his brakes 15 m before he skidded and crashed into car B. after the collision, car A s
Samuel Reply
can someone explain to me, an ignorant high school student, why the trend of the graph doesn't follow the fact that the higher frequency a sound wave is, the more power it is, hence, making me think the phons output would follow this general trend?
Joseph Reply
Nevermind i just realied that the graph is the phons output for a person with normal hearing and not just the phons output of the sound waves power, I should read the entire thing next time
Joseph
Follow up question, does anyone know where I can find a graph that accuretly depicts the actual relative "power" output of sound over its frequency instead of just humans hearing
Joseph
"Generation of electrical energy from sound energy | IEEE Conference Publication | IEEE Xplore" ***ieeexplore.ieee.org/document/7150687?reload=true
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Maurice Reply
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answer
Magreth
progressive wave
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Mujahid
A string is 3.00 m long with a mass of 5.00 g. The string is held taut with a tension of 500.00 N applied to the string. A pulse is sent down the string. How long does it take the pulse to travel the 3.00 m of the string?
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Source:  OpenStax, Oneonta epsy 275. OpenStax CNX. Jun 11, 2013 Download for free at http://legacy.cnx.org/content/col11446/1.6
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