Showing posts with label project based learning. Show all posts
Showing posts with label project based learning. Show all posts

Monday, June 15, 2026

Tapping Into Young People's Innate Curiosity

Source: www.pexels.com

By Sam Piha

“Childhood curiosity is an innate, powerful internal drive to acquire new information, understand how the world works, and fill knowledge gaps. It acts as a primary motivator for learning, characterized by eager exploration, constant questioning, and a ‘Goldilocks’ desire for optimally challenging information.” [i] 

Afterschool youth programs should tap into young people’s innate curiosity. This involves assessing where the program is in engaging young people’s curiosity. This blog explores these issues and provides information related to youth curiosity, including ways afterschool programs can support curiosity. (We relied on articles and AI research to develop this blog.)

WHY CURIOSITY IS IMPORTANT
“Curiosity is one of the main ways children learn about the world. When kids ask ‘why?’ or ‘how does this work?’, they’re not just being playful—they’re actively building understanding, problem-solving skills, and creativity.” [ii]

According to Penn State Extension, “Curiosity is an important trait that leads to learning. When children are comfortable and feel safe, they are naturally able to explore their worlds. The more your child explores, the more he learns. Curiosity drives kids to try new things.



Strong curiosity gives children confidence to try new things. Trying new things opens up new worlds to your child. It brings excitement to life. Children who are curious enjoy their lives. They are less likely to get bored and find life dull or routine. They feel that there are always new, interesting things just around the corner. It can lead them to have adventurous and interesting lives.” [iii]

WHY DOES CURIOSITY MATTER?
CuriOdyssey
writes, “Curiosity is the desire to learn, to understand new things and to know how they work. ‘We can teach a new generation to observe patterns in our world and in science, technology, engineering and math by taking advantage of their natural tendency to be curious, thereby enhancing the likelihood of new discoveries and inventions,’ says CuriOdyssey Executive Director Rachel Meyer. ‘We need people who are curious and who feel free to tinker and explore without fear of failure. When curious people fail, they analyze their failure to understand it so they can do better the next time.’  

Curiosity is at the very root of the scientific process. After observation the first step is to ask, ‘Why?’ Supporting kids’ natural curiosity at an early age about what makes the world work is the best way to excite their interest in STEM. Whether kids aspire to become scientists or artists, science fluency, like being fluent in a language, will make them better at it. If we do not spark curiosity, future generations will not understand the benefits of being science-fluent. 

Curiosity is the mark of an active, open, observant mind and helps us see learning as fun, fueling imagination, creativity and innovation. It prepares the brain for learning and makes subsequent learning more rewarding. Research also shows that curiosity is just as important as intelligence in determining how well students do in school.” [iv] 

Source: Resilient Educator

CURIOSITY: SCHOOL AND AFTERSCHOOL
How Traditional Schooling Kills Curiosity  

“’Children enter school as question marks and leave as periods,’ so said educator and social critic Neil Postman.” [v] 

John Larmer writes, “You likely know that young children are intensely curious creatures who ask lots of questions, perhaps hundreds a day. But when a child starts school, the rate drops precipitously, nearing zero by the time they reach middle school. Some of this is due to brain development, and some to social factors; children in a large group in the school setting might feel inhibited from asking too many questions. A big part of the drop, though, is due to the nature of typical schooling today. 



Education researcher Susan Engel, in her paper Children’s Need to Know: Curiosity In Schools, reports on a remarkable observation she and her graduate students made when visiting K-5 school classrooms to study curiosity. They planned on examining individual differences between children, seeing whether specific places or activities in a classroom elicited more or less curiosity, and comparing classrooms to one another. However, they were shocked to find out that, “It turned out to be impossible to make the kinds of comparisons we wanted. Why? Because there was such an astonishingly low rate of curiosity in any of the classrooms we visited.” [vi] 

“If teachers are to promote curiosity, administrators and policy makers will need to emphasize its value. We need to imagine schools as places where curiosity not only survives but flourishes. If curiosity is understood as essential, no less so than solving a geometry problem or writing a good essay, we might see very different classrooms and very different graduates.”  [vii] - Susan Engel, Education Researcher  

John Larmer continues, “Similarly, after listing some ways teachers can nurture curiosity, Alfie Kohn notes, ‘Alas, these recommendations for teachers often run smack into structural constraints: an inflexible schedule that doesn’t leave time for exploration; a principal who insists on quiet, orderly classrooms; a central office that imposes a standardized curriculum; a school board that cares more about test scores than about meaningful learning... Much of the problem comes from construing learning as a list of facts to be memorized or discrete skills to be practiced. This premise tends to promote teacher-centered direct instruction, which is often scripted or otherwise tightly controlled.’

Warren Berger, author of A More Beautiful Question: The Power of Inquiry to Spark Breakthrough Ideas, agrees: ‘Our current system of education does not encourage, teach, or in some cases even tolerate questioning. Harvard’s Tony Wagner says: ‘Somehow, we’ve defined the goal of schooling as enabling you to have more ‘right answers’ than the person next to you. And we penalize incorrect answers. And we do this at a pace—especially now, in this highly-focused test prep universe—where we don’t have time for extraneous questions.’” [viii]

 

[vii] IBID.
[viii] IBID.


To learn more about tapping into young people's innate curiosity, check out our latest briefing paper on this topic here.



Monday, June 1, 2026

Another Argument for PBL: It Promotes Curiosity


Source: www.pexels.com

This is a guest blog. “Another Argument for PBL: It Promotes Curiosity” by John Larmer was originally published on PBLWorks

Should curiosity be the “5th C” of 21st Century Success Skills? You’re probably familiar with the “4 C’s” – the 21st century success skills of critical thinking, communication, collaboration, and creativity – and know that Project Based Learning is one of the best ways to build them in students. I’d like to propose a fifth “C” for consideration: curiosity. It’s important for success in school, in the world of work, and life in general. It’s not exactly a skill, but like creativity it’s a personal quality that can be cultivated. 

However, traditional schooling has the unfortunate tendency to kill students’ curiosity. PBL is the antidote. 

Why is Curiosity Important? 
First, to beat the drum I usually do when promoting PBL, most students are not as engaged in learning as they should be. This would change if their curiosity was honored in the classroom. Instead of marching through a curriculum that emphasizes standardized tests, mastering skills and facts, and moving at a preset pace, imagine how more engaging school would be if students were given opportunities to ask their own questions and explore answers.

Second, curiosity brings benefits in school and beyond. As progressive education advocate Alfie Kohn puts it, “Curiosity is valuable in its own right—and not just for children. It’s a passport to a richer, more fulfilling life.” Studies have shown that curiosity improves the quality of life in terms of intelligence and learning, social relationships, happiness and meaning, and brain health. Curiosity is “the heart of lifelong learning” says youth development expert and creator of The Compass Advantage Marilyn Price-Mitchell, who placed curiosity on her list of eight “internal abilities” that help children “develop into capable, caring, and engaged adults.” 

Education research confirms the value of curiosity. A 2018 study found that “greater curiosity was associated with greater kindergarten reading and math academic achievement...Curiosity may be an important, yet under- recognized contributor to academic achievement... especially for children with low SES.” The researchers defined curiosity as “characterized by the joy of discovery, and the motivation to seek answers to what is unknown.” Another study found that curiosity influenced academic performance: “In fact, it had quite a large effect, about the same as conscientiousness. When put together, conscientiousness and curiosity had as big an effect on performance as intelligence.”

Curiosity is valuable in the modern workplace, too. A 2024 article in Forbes, “Curiosity: The Superpower For Success In The Workplace And At Home,” makes the case: 

“In the workplace, curiosity acts as the fuel for innovation and creativity. It encourages individuals to question the status quo, explore new possibilities and think outside the box. This relentless pursuit of knowledge and understanding can lead to the discovery of unique solutions to complex problems and the development of groundbreaking products and services. Organizations that cultivate a culture of curiosity often find themselves at the forefront of their industries, leading the charge toward the future.” 

Finally, cultivating a sense of curiosity in its citizens is good for a democratic society. This is the message of Scott Shineoka, author of Seek: How Curiosity Can Transform Your Life and Change the World and keynote speaker at this year’s PBL World event. He argues for greater understanding as a healing process in a polarized nation: “curiosity can help us build relationships, even across differences, even across divides.”  

(The message about arriving at mutual understanding is also, btw, delivered by PBLWorks staffer Ryan Sprott in his 2024 book, Teaching Contentious Topics in a Divided Nation.)

How Traditional Schooling Kills Curiosity 
“Children enter school as question marks and leave as periods.” So said educator and social critic Neil Postman, paraphrasing progressive educator Lillian Weber. Why is that? 

You likely know, especially if you’re a parent, that very young children are intensely curious creatures who ask lots of questions, perhaps hundreds a day. But when a child starts school, the rate drops precipitously, nearing zero by the time they reach middle school. Some of this is due to brain development, and some to social factors; children in a large group in the school setting might feel inhibited from asking too many questions. A big part of the drop, though, is due to the nature of typical schooling today.  

Education researcher Susan Engel, in her paper Children’s Need to Know: Curiosity In Schools, reports on a remarkable observation she and her graduate students made when visiting K-5 school classrooms to study curiosity. They planned on examining individual differences between children, seeing whether specific places or activities in a classroom elicited more or less curiosity, and comparing classrooms to one another. However, they were shocked to find out that, “It turned out to be impossible to make the kinds of comparisons we wanted. Why? Because there was such an astonishingly low rate of curiosity in any of the classrooms we visited.”  

Engel continues, “If teachers are to promote curiosity, administrators and policy makers will need to emphasize its value. We need to imagine schools as places where curiosity not only survives but flourishes. If curiosity is understood as essential, no less so than solving a geometry problem or writing a good essay, we might see very different classrooms and very different graduates.” 

Similarly, after listing some ways teachers can nurture curiosity, Alfie Kohn notes, “Alas, these recommendations for teachers often run smack into structural constraints: an inflexible schedule that doesn’t leave time for exploration; a principal who insists on quiet, orderly classrooms; a central office that imposes a standardized curriculum; a school board that cares more about test scores than about meaningful learning... Much of the problem comes from construing learning as a list of facts to be memorized or discrete skills to be practiced. This premise tends to promote teacher-centered direct instruction, which is often scripted or otherwise tightly controlled.” 

Warren Berger, author of A More Beautiful Question: The Power of Inquiry to Spark Breakthrough Ideas, agrees: “...our current system of education does not encourage, teach, or in some cases even tolerate questioning. Harvard’s Tony Wagner says: “Somehow, we’ve defined the goal of schooling as enabling you to have more ‘right answers’ than the person next to you. And we penalize incorrect answers. And we do this at a pace—especially now, in this highly-focused test prep universe—where we don’t have time for extraneous questions.

Source: www.pexels.com

The Antidote: 5 Ways PBL Promotes Curiosity 
If you’re familiar with Project Based Learning, you’ve no doubt seen how it provokes curiosity in students. Not only does it provoke it–curiosity is baked into the design of a project and fertilized by the culture of a PBL classroom. Let’s look at five features of Gold Standard PBL that elicit, support, and encourage curiosity. 

1. Driving Questions 
The central question or challenge that frames a good project is open-ended; that’s the key to engaging students’ curiosity. There is no single ”right answer” students are supposed to arrive at; they cannot simply google it, as they can for a “closed” question with a specific answer. Even the teacher doesn’t know the answer, or at least acknowledges there is more than one good answer, so they approach the driving question with curiosity too. 

Take a look at these open-ended driving questions from projects designed by PBLWorks (from its project library or the TEACH app). If you were a student, wouldn’t these make you curious? 

In grades K-2: 

  • In case of a fire, what is the best way to safety?

  • How can we help new friends get to know our community?

  • How does our food connect us to places near and far? 

In grades 3-5: 

  • How can humans safely explore Mars?

  • How can we protect endangered species in our area? 
  • Did the American Revolution have more than two sides? 

In middle school: 

  • What should we do about cyberbullying?

  • What masks do we wear when we go about our daily lives? 
  • How can we increase access to fresh food in our community?

In high school: 
  • How can we influence the way A.I. is used in our school?

  • How can we help a local business make the most money? 
  • What does it mean to live well, and how do we do it? 

2. Entry Events 
The first thing that happens in a well-designed, well- implemented project is an event that engages students’ curiosity and sparks questions. The entry event can be anything that alerts students to the project’s topic and grabs their interest–from a live speaker to a field trip to a film clip to a class activity. Along with the driving question, the entry event could connect the project to students’ lived experiences or culture, and/or it might introduce them to a real-world issue or problem to address. 

3. Students’ Need to Know Questions 
After the entry event and the introduction of the driving question, students generate a list of their own questions to investigate. These questions form the backbone of the inquiry process that is at the heart of PBL. Facilitated by the teacher, students are prompted to ask both process questions about completing the project and more open- ended questions based on curiosity about the topic or problem at hand. Sometimes this is framed as a “Wonder” list. As they dig deeper into the project, students’ add more questions to their list. 

4. Student Choice 
Because students are given various opportunities to make their own choices in PBL, they need to activate their curiosity: What resources might I use to answer my need to know questions? How can our team work well together? What do I think is the best answer to the driving question? What product or performance could I create? What is my audience or intended stakeholder like? 

5. Classroom Culture 
One of the Project Based Teaching Practices in PBLWorks’s model for Gold Standard PBL promotes curiosity: Build the Culture, and so does a related Practice, Engage and Coach. A classroom culture that supports PBL, and curiosity, includes a sense of safety; it’s OK to share your ideas and you won’t be put down for it. Your questions matter and will be honored. Think out of the box. The teacher coaches students to surface their questions and be curious about the project’s topic. The teacher also models how to approach the project with curiosity by doing think-alouds–about the driving question, what resources to use, new need to know questions, how to create a product, or the needs of an audience. 

There’s a reason why curiosity appears on many "Portraits of a Graduate” being created by school districts today: school communities and stakeholders recognize its importance. It’s often linked to lifelong learning, innovative thinking, resilience, growth mindset, and being self-directed learner. PBL can help these districts move “from poster to practice” and make sure their lofty goals for graduates are reflected in their instructional practices.  

And, it’s worth repeating in these times... Curiosity can help a divided nation move from conflict to understanding. Let’s keep our children curious in their school years, so they’ll continue to flex that muscle as adult citizens! 

MORE ABOUT… 

John Larmer
John Larmer is a key builder of PBLWorks (Buck Institute for Education), having served as editor in chief, director of publications, and director of product development. He co-developed the model for Gold Standard PBL, which is the foundation of PBLWorks’s products and services. He is currently involved the development of project-based curriculum units and professional learning resources, and general editing and writing duties.

John is the author of several books and articles for K-12 teachers, school leaders, and parents, as well as many PBLWorks blog posts. He wrote widely-used rubrics for 21st century success skills, and problem-based curriculum units for high school government and economics. He contributed to PBLWorks’ research, online project library, and in-person and online professional development programs, including the flagship PBL 101 workshop and workbook. 


PBL Works’ exclusive focus is Project Based Learning. Why? Because PBL advances educational equity and empowers youth furthest from opportunity. They believe PBL is transformative for all kids. Through PBL, students engage in learning that is deep, long-lasting, and relevant to the challenges of their lives and the world they will inherit. Research confirms this.

Their services, tools, and research are designed to build the capacity of K-12 teachers to design and facilitate quality Project Based Learning, and the capacity of school leaders to create a culture for teachers to implement great projects with all students.


Monday, March 23, 2026

Voices from the Field: SF STEAM Academy

Source: www.pexels.com

By Sam Piha

There’s been a big push for incorporating lessons and activities that use STEAM: science, technology, engineering, art, and math. There are schools and afterschool programs that are dedicated to STEAM frameworks and also many that are working to incorporate individual STEAM activities. Below we offer an interview with Dr. Rebecca Hawley, Executive Director of San Francisco STEAM Academy. (We are developing future blogs and papers on this topic.)

Q: What is STEAM?

A: STEAM stands for Science, Technology, Engineering, Arts, and Mathematics. It is an interdisciplinary approach to learning that integrates these subjects through hands-on, real-world projects. Rather than teaching subjects in isolation, STEAM encourages students to ask questions, design solutions, build, test ideas, and think creatively.

Q: Why is STEAM Important?

A: STEAM prepares students for the future by developing critical thinking, creative problem solving, collaboration, communication, innovation, and resilience. It increases engagement by making learning fun, meaningful, and connected to real-world challenges.

Q: What Does It Mean to Be a STEAM School?

A: A STEAM School integrates science, technology, engineering, arts, and mathematics across the curriculum while maintaining strong foundational academics. At SF STEAM Academy, we combine innovation with research-based curriculum.

Q: Do You Use Established Curriculums at SF STEAM Academy? 

A: Yes, some of these are listed below:

  • Mathematics: Bridges in Mathematics (The Math Learning Center)

  • Language Arts & Social Studies: Arts & Letters

  • Science: Mystery Science

  • Social-Emotional Learning: Conscious Discipline and Wayfinder 



These programs provide academic rigor, while our STEAM framework brings learning to life through projects, inquiry, and design challenges, using a whole-child approach and universal design for learning.

Source: www.pexels.com

Q: Are There Any Frameworks That You Rely On? 

A: Guiding Principles & Frameworks:

  • Project-Based Learning (PBL)

  • Engineering Design Process

  • Inquiry-Based Instruction

  • Universal Design for Learning (UDL)

  • Whole-child development through Conscious Discipline

Q: What Do You Look for in a STEAM Teacher:

  • A: Strong knowledge of child development and different learning styles,

  • Ability to teach foundational academics using a project-based and transdisciplinary approach to teaching and learning,

  • Skill in facilitating inquiry and hands-on learning,

  • Collaborative and reflective practice,

  • Commitment to equity and inclusive classrooms,

  • Alignment with positive classroom management practices.

Q: Is STEAM Used in All Subjects?

A: Yes. STEAM thinking strengthens our core curriculum. Students apply mathematical reasoning in real-world design challenges, integrate literacy with research and presentation, conduct scientific investigations, use the arts, and build collaboration and emotional regulation skills throughout the day.

Q: Do You Offer Dedicated STEAM Experiences?

A: Yes. In addition to integrated classroom instruction, students participate in STEAM lab experiences, engineering and robotics projects, maker challenges, and technology integration opportunities during the school day and through our after-school and camp programs. 

Q: Is STEAM Appropriate for Afterschool Programs?

A: Absolutely. STEAM enrichment in after-school settings—such as robotics, coding, LEGO engineering, and design labs, backyard sciences, gardening, and arts activities —provides extended time for exploration, creativity, and collaborative innovation. 

MORE ABOUT...

Dr. Rebecca Hawley is an accomplished leader in Education, Early Intervention, Special Education, and Family Support Services with 25 years of experience across the Bay Area, nationally, and internationally. Her career centers on advancing equitable, developmentally informed, and individualized access to education and related services for children and adolescents ages 2–21.

As an expert in child development, Dr. Hawley integrates research-based developmental frameworks with practical, school-based application, ensuring that instructional decisions, intervention plans, and service delivery models are grounded in evidence and tailored to the whole child. Her work spans early childhood programs, elementary and middle school settings, and specialized environments serving neurodiverse learners, multilingual students, and students facing mental health challenges.

Dr. Hawley provides direct support, strategic leadership, and programmatic oversight to non-profit organizations, state and federal agencies, and independent schools. She is highly regarded for her ability to build and strengthen multidisciplinary teams, coach and mentor teachers, and develop systems that support instructional excellence, inclusive learning environments, and culturally responsive practice. Her mentorship emphasizes reflective teaching, collaborative problem-solving, and data-informed decision-making to improve student outcomes and elevate teacher confidence.

San Francisco STEAM Academy
 is an innovative elementary school that nurtures children’s intrinsic motivation, creativity, and real-world problem-solving skills.

Their research-backed, student-centered approach embraces hands-on, interdisciplinary learning: core academics enriched with arts, movement, and life skills such as cooking, gardening, and crafting. Authentic, real-world problem-solving fosters confidence and creativity. A connected, thriving learning community where children feel valued and inspired. Education should be transformative—a launchpad for every child’s future possibilities.

At SF S.T.E.A.M. Academy, learning is active, engaging, and meaningful, equipping students to think analytically, innovate boldly, and thrive in an ever-changing world. They nurture the next generation of problem-solvers, creative thinkers, and compassionate leaders. 

Dolly Parton- Never Apolitical

Source: BBC.com By Sam Piha Dolly Parton grew up in abject poverty, raised in a one-bedroom log cabin alongside 11 siblings. After her passi...